IntechOpen Book Series will also publish a program of research-driven Thematic Edited Volumes that focus on specific areas and allow for a more in-depth overview of a particular subject.
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IntechOpen Book Series will be launching regularly to offer our authors and editors exciting opportunities to publish their research Open Access. We will begin by relaunching some of our existing Book Series in this innovative book format, and will expand in 2022 into rapidly growing research fields that are driving and advancing society.
With the desire to make book publishing more relevant for the digital age and offer innovative Open Access publishing options, we are thrilled to announce the launch of our new publishing format: IntechOpen Book Series.
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Designed to cover fast-moving research fields in rapidly expanding areas, our Book Series feature a Topic structure allowing us to present the most relevant sub-disciplines. Book Series are headed by Series Editors, and a team of Topic Editors supported by international Editorial Board members. Topics are always open for submissions, with an Annual Volume published each calendar year.
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After a robust peer-review process, accepted works are published quickly, thanks to Online First, ensuring research is made available to the scientific community without delay.
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Our innovative Book Series format brings you:
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\n\t
Topic Focused Publications - Each topic showcases high impact subject areas
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Renowned Editorial Expertise - Series Editors, Topic Editors, and a team of international Board Members that permanently support each Book Series
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Fast Publishing - quick turnaround which is unique for book publishing
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The benefit of ISSN and ISBN for increased citation and indexing possibilities
\n
\n\n\n\n
IntechOpen Book Series will also publish a program of research-driven Thematic Edited Volumes that focus on specific areas and allow for a more in-depth overview of a particular subject.
\n\n
IntechOpen Book Series will be launching regularly to offer our authors and editors exciting opportunities to publish their research Open Access. We will begin by relaunching some of our existing Book Series in this innovative book format, and will expand in 2022 into rapidly growing research fields that are driving and advancing society.
We invite you to explore our IntechOpen Book Series, find the right publishing program for you and reach your desired audience in record time.
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Note: Edited in October 2021
\n'}],latestNews:[{slug:"intechopen-supports-asapbio-s-new-initiative-publish-your-reviews-20220729",title:"IntechOpen Supports ASAPbio’s New Initiative Publish Your Reviews"},{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"}]},book:{item:{type:"book",id:"7547",leadTitle:null,fullTitle:"Monitoring of Marine Pollution",title:"Monitoring of Marine Pollution",subtitle:null,reviewType:"peer-reviewed",abstract:'Many of the pollutants discharged into the sea are directly or indirectly the result of human activities. Some of these substances are biodegradable, while others are not. This study is devoted to monitoring areas of the environment. Methods assessment is based on monitoring data and an evaluation of the impact of pollution.Surveillance provides a scientific basis for standards development and application. The methodology of marine pollution control is governed by algorithms and models. A monitoring strategy should be put in place, coupled with an environmental assessment concept, through targeted research activities in areas identified at local and regional levels. This concept will make it possible to diagnose the state of "health" of these zones and consequently to correct any anomalies. Monitoring of the marine and coastal environment is based on recent methods and validated after experiments in the field of marine pollution.',isbn:"978-1-83880-812-9",printIsbn:"978-1-83880-811-2",pdfIsbn:"978-1-83880-813-6",doi:"10.5772/intechopen.76739",price:119,priceEur:129,priceUsd:155,slug:"monitoring-of-marine-pollution",numberOfPages:168,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"4700c71016d4ab73a99b22cee68da2fe",bookSignature:"Houma Bachari Fouzia",publishedDate:"June 5th 2019",coverURL:"https://cdn.intechopen.com/books/images_new/7547.jpg",numberOfDownloads:14569,numberOfWosCitations:31,numberOfCrossrefCitations:49,numberOfCrossrefCitationsByBook:1,numberOfDimensionsCitations:94,numberOfDimensionsCitationsByBook:1,hasAltmetrics:1,numberOfTotalCitations:174,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"April 10th 2018",dateEndSecondStepPublish:"May 1st 2018",dateEndThirdStepPublish:"June 30th 2018",dateEndFourthStepPublish:"September 18th 2018",dateEndFifthStepPublish:"November 17th 2018",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"95997",title:"Dr.",name:"Houma",middleName:null,surname:"Bachari Fouzia",slug:"houma-bachari-fouzia",fullName:"Houma Bachari Fouzia",profilePictureURL:"https://mts.intechopen.com/storage/users/95997/images/system/95997.jfif",biography:'Houma Bachari Fouzia is a professor of oceanography, marine environment, and remote sensing. She has a PhD from the University of Science and Technology, Houari Boumediene, Algiers. She has a second doctoral degree in Sciences of the Universe and Environment, specializing in remote sensing and geography, from the University of Paris-Est Créteil, France. She has published 50 works in the field of monitoring marine pollution and remote sensing. She is the head of a research team, thesis supervisor of several PhD students working in various disciplines of marine science, such as ecotoxicology, impact studies, and remote sensing, and is the head of the research project \\"The Anthropogenic Impacts on the Marine and Coastal Environment.\\" Prof. Fouzia is also involved in the monitoring of marine environment parameters, contributes to satellite measurements for the modeling of variables, and is a project manager integrating GIS satellite data and in situ measurements for monitoring the quality of coastal waters (modeling of ocean parameters). She has worked on 60 Projects related to graduations and masters on marine environmental science and coastal management.\nProf. Fouzia was a member of the international project MerMex Marine Ecosystems Response in the Mediterranean Experiment 2010–2020 and is currently a member of the European research project Marine Database Management for Algeria and a member of the European research project Seadata, European Infrastructure of Oceanographic Data Management. \nShe is also the team leader of the \\"Ecotoxicology and Anthropogenic Impacts on the Marine Environment\\" Laboratory of Marine and Coastal Ecosystems and a director of the international journal MarineScor, Marine and Coastal Sciences Research.',institutionString:"National Higher School of Marine Sciences and Coastal Management",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"3",totalChapterViews:"0",totalEditedBooks:"1",institution:null}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"133",title:"Environmental Pollution",slug:"environmental-pollution"}],chapters:[{id:"66500",title:"Introductory Chapter: Marine Monitoring Pollution",doi:"10.5772/intechopen.83846",slug:"introductory-chapter-marine-monitoring-pollution",totalDownloads:1248,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:null,signatures:"Houma Fouzia, Boufeniza Redouane Larbi, Adem Amina, Chabi Nacera\nand Bachari Nour El Islam",downloadPdfUrl:"/chapter/pdf-download/66500",previewPdfUrl:"/chapter/pdf-preview/66500",authors:[{id:"95997",title:"Dr.",name:"Houma",surname:"Bachari Fouzia",slug:"houma-bachari-fouzia",fullName:"Houma Bachari Fouzia"}],corrections:null},{id:"64603",title:"Detection and Monitoring of Marine Pollution Using Remote Sensing Technologies",doi:"10.5772/intechopen.81657",slug:"detection-and-monitoring-of-marine-pollution-using-remote-sensing-technologies",totalDownloads:4533,totalCrossrefCites:16,totalDimensionsCites:29,hasAltmetrics:0,abstract:"Recently, the marine habitat has been under pollution threat, which impacts many human activities as well as human life. Increasing concerns about pollution levels in the oceans and coastal regions have led to multiple approaches for measuring and mitigating marine pollution, in order to achieve sustainable marine water quality. Satellite remote sensing, covering large and remote areas, is considered useful for detecting and monitoring marine pollution. Recent developments in sensor technologies have transformed remote sensing into an effective means of monitoring marine areas. Different remote sensing platforms and sensors have their own capabilities for mapping and monitoring water pollution of different types, characteristics, and concentrations. This chapter will discuss and elaborate the merits and limitations of these remote sensing techniques for mapping oil pollutants, suspended solid concentrations, algal blooms, and floating plastic waste in marine waters.",signatures:"Sidrah Hafeez, Man Sing Wong, Sawaid Abbas, Coco Y. T. Kwok,\nJanet Nichol, Kwon Ho Lee, Danling Tang and Lilian Pun",downloadPdfUrl:"/chapter/pdf-download/64603",previewPdfUrl:"/chapter/pdf-preview/64603",authors:[{id:"225316",title:"Dr.",name:"Sawaid",surname:"Abbas",slug:"sawaid-abbas",fullName:"Sawaid Abbas"},{id:"259861",title:"Ms.",name:"Sidrah",surname:"Hafeez",slug:"sidrah-hafeez",fullName:"Sidrah Hafeez"},{id:"259890",title:"Prof.",name:"Man Sing",surname:"Wong",slug:"man-sing-wong",fullName:"Man Sing Wong"}],corrections:null},{id:"64784",title:"The Hazards of Monitoring Ecosystem Ocean Health in the Gulf of Mexico: A Mexican Perspective",doi:"10.5772/intechopen.81685",slug:"the-hazards-of-monitoring-ecosystem-ocean-health-in-the-gulf-of-mexico-a-mexican-perspective",totalDownloads:874,totalCrossrefCites:0,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Ecological services provided by the Gulf of Mexico constitute vital assets for the socioeconomic development of the USA, Mexico, and Cuba. This ecosystem houses vast biodiversity and significant fossil fuel reserves. However, its ecological stability and resilience have been jeopardized by anthropogenic disturbances. Massive oil spills (Ixtoc-I, 1979; Deepwater Horizon, 2010) caused severe environmental injuries and unveiled the vulnerability of coastal and deep-sea habitats. Baseline and monitoring studies are actions implemented by the Gulf stakeholders to cope with such disturbances. The 3-year monitoring program implemented by Mexico in 2010 to assess the environmental damage caused by the Deepwater Horizon (DWH) event confirmed the void of knowledge on the complexity of physical and biological processes susceptible of being altered by oil spills. Between the pelagic and benthic compartments, the latter proved to be a better option in establishing the baseline concentration and trends of oil compounds. Surficial sediments exhibited an increasing concentration trend of PAH, AH, and trace metals throughout the 3-year monitoring. The macroinfauna and selected biomarkers experienced interannual variability attributed to critical hydrocarbon and trace metal thresholds. Sediment toxicity bioassays added support to the distribution and potential sources of oil contaminants dispersed from the northern gulf toward Mexican waters.",signatures:"Luis A. Soto, Alejandro Estradas-Romero, Diana L. Salcedo, Alfonso V. Botello\nand Guadalupe Ponce-Vélez",downloadPdfUrl:"/chapter/pdf-download/64784",previewPdfUrl:"/chapter/pdf-preview/64784",authors:[{id:"256002",title:"Ph.D.",name:"Luis",surname:"Soto",slug:"luis-soto",fullName:"Luis Soto"},{id:"265629",title:"Dr.",name:"Alejandro",surname:"Estradas-Romero",slug:"alejandro-estradas-romero",fullName:"Alejandro Estradas-Romero"},{id:"265630",title:"MSc.",name:"Diana",surname:"Salcedo",slug:"diana-salcedo",fullName:"Diana Salcedo"},{id:"265631",title:"Dr.",name:"Alfonso",surname:"V. Botello",slug:"alfonso-v.-botello",fullName:"Alfonso V. Botello"},{id:"265632",title:"Dr.",name:"Guadalupe",surname:"Ponce-Velez",slug:"guadalupe-ponce-velez",fullName:"Guadalupe Ponce-Velez"}],corrections:null},{id:"67227",title:"Sediment and Organisms as Marker for Metal Pollution",doi:"10.5772/intechopen.85569",slug:"sediment-and-organisms-as-marker-for-metal-pollution",totalDownloads:1037,totalCrossrefCites:6,totalDimensionsCites:9,hasAltmetrics:1,abstract:"Pollution caused by metal elements has drawn increasing attention worldwide due to the increase of anthropogenic contaminants to the marine ecosystems. Pollution of the natural environment by metals is a serious problem because these elements are indestructible and most of them have toxic effects on living organisms, when they exceed a certain concentration. Sediments are widely used as geo-marker for monitoring and identifying the possible sources since sediment can act as sink for the pollutants. Most metals are bound in fine-grain fraction because of its high surface area-to-grain size ratio where they have a greater biological availability compared to those in larger fraction. Lying in the second trophic level in the aquatic ecosystem, shellfish species have long been known to accumulate both essential and non-essential metals. Many researchers have reported the potentiality of using mollusks, especially mussel and oyster species, as bioindicators or biomarkers for monitoring the metal contamination of the aquatic system.",signatures:"Ong Meng Chuan and Kamaruzzaman Yunus",downloadPdfUrl:"/chapter/pdf-download/67227",previewPdfUrl:"/chapter/pdf-preview/67227",authors:[{id:"136681",title:"Prof.",name:"Kamaruzzaman",surname:"Yunus",slug:"kamaruzzaman-yunus",fullName:"Kamaruzzaman Yunus"},{id:"252368",title:"Dr.",name:"Meng-Chuan",surname:"Ong",slug:"meng-chuan-ong",fullName:"Meng-Chuan Ong"}],corrections:null},{id:"64674",title:"Nitrogen and Phosphorus Eutrophication in Marine Ecosystems",doi:"10.5772/intechopen.81869",slug:"nitrogen-and-phosphorus-eutrophication-in-marine-ecosystems",totalDownloads:2653,totalCrossrefCites:21,totalDimensionsCites:45,hasAltmetrics:0,abstract:"Nitrogen (N) and phosphorus (P) eutrophication in marine ecosystems is a global problem. Marine eutrophication has a negative impact on food security, ecosystem health and economy through disruptions in tourism, fisheries and health industries. Both N and P have known point and non-point sources. Control of point sources has been easier than non-point sources particularly agricultural sources for both N and P as well as fossil fuel combustion for N, which remains a major challenge. Implementing mitigation strategies for N has been reported to be effective for P mitigation; however, the converse is not true due to mobility and volatility of N. Excessive N and P cause algae blooms, anoxic conditions, and ocean acidification with these conditions leading to dead zones, fish kill, toxin production, altered plant species diversity, food web disruption, tourism disruption and health issues. Management of N and P pollution includes reduction of leaching from farms through crop selection, timely and precise application of fertilizer and building artificial wetlands, proper management of animal waste, reduction of fossil fuel N emission, mitigating N and P from urban sources and restoration of aquatic ecosystem. Mitigation measures need to focus on dual nutrient strategy for successful N and P reduction.",signatures:"Lucy Ngatia, Johnny M. Grace III, Daniel Moriasi and Robert Taylor",downloadPdfUrl:"/chapter/pdf-download/64674",previewPdfUrl:"/chapter/pdf-preview/64674",authors:[{id:"246475",title:"Dr.",name:"Lucy",surname:"Ngatia",slug:"lucy-ngatia",fullName:"Lucy Ngatia"},{id:"256676",title:"Prof.",name:"Robert",surname:"Taylor",slug:"robert-taylor",fullName:"Robert Taylor"},{id:"266289",title:"Dr.",name:"Daniel",surname:"Moriasi",slug:"daniel-moriasi",fullName:"Daniel Moriasi"},{id:"269661",title:"Dr.",name:"Johnny",surname:"Grace III",slug:"johnny-grace-iii",fullName:"Johnny Grace III"}],corrections:null},{id:"66333",title:"Decadal Pollution Assessment and Monitoring along the Kenya Coast",doi:"10.5772/intechopen.82606",slug:"decadal-pollution-assessment-and-monitoring-along-the-kenya-coast",totalDownloads:999,totalCrossrefCites:0,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Marine contamination arising from land-based sources is on the rise along the Kenyan Coast. We carried out a decadal pollution survey between 2008 and 2018 to determine the levels of various pollutants (nutrients, trace metals, persistent organic pollutants, and 210Po) in water, sediment, and biota collected from selected locations in Kenya. Nutrient levels in water ranged between <0.10 and 1560.00, <0.10 and 1320.00, and <0.10 and 3280.00 μg/L for PO43−-P, (NO2− + NO3−)-N, and NH4+-N, respectively, while Chl-a values ranged between 0.02 and 119.37 mg/L. Total PAH, PCBs, and OCPs in sediment from the studied locations ranged from BDL-37800, 0.012–7.99 and BDL-6.10 ng/g. High level of PAH in Kilindini port was primarily from petroleum sources. DDD + DDE/DDT ratio was above 0.5 suggesting historical input. Sediment trace metal concentration from selected locations in Kenyan estuaries had various ranges, that is, Al (0.06–9804284.00 μg/g), Zn (3.82–367.20 μg/g), Cu (7.5–169.60), Cd (DL −2.40 μg/g), Mn (BDL-169.60 μg/g), Cr (2.55–239.10 μg/g), and Pb (BDL-135.60) μg/g dw. Surface sediment 210Po activities ranged between 20.29 and 43.44 Bq kg−1 dw. Chl-a and PO43−-P data revealed enhance primary productivity in Mombasa peri-urban creeks and estuarine areas. Although the reported concentrations of trace metals and POPs are low in most locations from Kenya, there is a potential risk of bioaccumulation of these contaminants in marine biota; thus, there is a need for continuous monitoring to protect both ecosystem and human health.",signatures:"Eric Ochieng Okuku, Kiteresi Linet Imbayi, Owato Gilbert Omondi,\nWanjeri Veronica Ogolla Wayayi, Mwalugha Catherine Sezi,\nKombo Mokeira Maureen, Stephen Mwangi and Nancy Oduor",downloadPdfUrl:"/chapter/pdf-download/66333",previewPdfUrl:"/chapter/pdf-preview/66333",authors:[{id:"257020",title:"Dr.",name:"Eric",surname:"Okuku",slug:"eric-okuku",fullName:"Eric Okuku"},{id:"270103",title:"Ms.",name:"Veronica",surname:"Wanjeri",slug:"veronica-wanjeri",fullName:"Veronica Wanjeri"},{id:"270105",title:"Mr.",name:"Gilbert",surname:"Owato",slug:"gilbert-owato",fullName:"Gilbert Owato"},{id:"270106",title:"Ms.",name:"Maureen",surname:"Kombo",slug:"maureen-kombo",fullName:"Maureen Kombo"},{id:"270107",title:"Ms.",name:"Catherine",surname:"Mwalugha",slug:"catherine-mwalugha",fullName:"Catherine Mwalugha"},{id:"270108",title:"Ms.",name:"Nancy A.",surname:"Oduor",slug:"nancy-a.-oduor",fullName:"Nancy A. Oduor"},{id:"270109",title:"Mrs.",name:"Linet",surname:"Kiteresi",slug:"linet-kiteresi",fullName:"Linet Kiteresi"},{id:"270110",title:"Mr.",name:"Stephen",surname:"Mwangi",slug:"stephen-mwangi",fullName:"Stephen Mwangi"}],corrections:null},{id:"64831",title:"Oil Spill Dispersion Forecasting Models",doi:"10.5772/intechopen.81764",slug:"oil-spill-dispersion-forecasting-models",totalDownloads:1815,totalCrossrefCites:4,totalDimensionsCites:5,hasAltmetrics:0,abstract:"Oil spill models are used worldwide to simulate the evolution of an oil slick that occurs after an accidental ship collision or during oil extraction or other oil tanker activities. The simulation of the transport and fate of an oil slick in the sea, by evaluating the physicochemical processes that take place between oil phase and the water column, is the base for the recognition and assessment of its environmental effects. Numerous oil spill dispersion models exist in the bibliography. The contribution of this chapter is the introduction of a 3D oil slick simulation model developed by the Aristotle University of Thessaloniki, which has been recurrently used in different updated forms and applied in operational mode, since 1991 when it was originally created. The model has been tested in various hypothetical scenarios in North Aegean Sea, Greece, and responded with great success. Findings of the present study highlight the existing experience on the subject and denote the applicability of such models in either tracing the source of a spill or in predicting its path and spread, thus proving their value in real-time crisis management.",signatures:"Antigoni Zafirakou",downloadPdfUrl:"/chapter/pdf-download/64831",previewPdfUrl:"/chapter/pdf-preview/64831",authors:[{id:"255908",title:"Dr.",name:"Antigoni",surname:"Zafirakou",slug:"antigoni-zafirakou",fullName:"Antigoni Zafirakou"},{id:"270470",title:"Prof.",name:"Christopher",surname:"Koutitas",slug:"christopher-koutitas",fullName:"Christopher Koutitas"}],corrections:null},{id:"65237",title:"Response of Benthic Foraminifera to Environmental Variability: Importance of Benthic Foraminifera in Monitoring Studies",doi:"10.5772/intechopen.81658",slug:"response-of-benthic-foraminifera-to-environmental-variability-importance-of-benthic-foraminifera-in-",totalDownloads:1411,totalCrossrefCites:2,totalDimensionsCites:4,hasAltmetrics:0,abstract:"Foraminifera are eukaryotic unicellular microorganisms inhabiting all marine environments. The study of these protists has huge potential implications and benefits. They are good indicators of global change and are also promising indicators of the environmental health of marine ecosystems. Nevertheless, much remains to be learned about foraminiferal ecology. The goals of this chapter are (1) to provide a few examples from foraminifera studies, presenting possible use of foraminifera as bioindicators for the monitoring of transitional and marine ecosystems and (2) to highlight the importance of applying these organisms in environmental monitoring studies. A semienclosed coastal lagoon (Aveiro Lagoon; Portugal), an estuarine system (São Sebastião Channel; SE Brazil), a continental shelf sector (Campos Basin; SE Brazil), and a segment of continental slope (Campos Basin; SE Brazil) are used as examples.",signatures:"Maria Virginia Alves Martins, Cintia Yamashita,\nSilvia Helena de Mello e Sousa, Eduardo Apostolos Machado Koutsoukos,\nSibelle Trevisan Disaró, Jean-Pierre Debenay and Wânia Duleba",downloadPdfUrl:"/chapter/pdf-download/65237",previewPdfUrl:"/chapter/pdf-preview/65237",authors:[{id:"257732",title:"Prof.",name:"Maria Virginia Alves",surname:"Martins",slug:"maria-virginia-alves-martins",fullName:"Maria Virginia Alves Martins"},{id:"267737",title:"Dr.",name:"Cintia",surname:"Yamashita",slug:"cintia-yamashita",fullName:"Cintia Yamashita"},{id:"267738",title:"Prof.",name:"Silvia Helena De",surname:"Mello E Sousa",slug:"silvia-helena-de-mello-e-sousa",fullName:"Silvia Helena De Mello E Sousa"},{id:"267739",title:"Prof.",name:"Eduardo Apostolos Machado",surname:"Koutsoukos",slug:"eduardo-apostolos-machado-koutsoukos",fullName:"Eduardo Apostolos Machado Koutsoukos"},{id:"267740",title:"Dr.",name:"Sibelle Trevisan",surname:"Disaró",slug:"sibelle-trevisan-disaro",fullName:"Sibelle Trevisan Disaró"},{id:"267742",title:"Prof.",name:"Jean-Pierre",surname:"Debenay",slug:"jean-pierre-debenay",fullName:"Jean-Pierre Debenay"},{id:"267743",title:"Prof.",name:"Wânia",surname:"Duleba",slug:"wania-duleba",fullName:"Wânia Duleba"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"7224",title:"Persistent Organic Pollutants",subtitle:null,isOpenForSubmission:!1,hash:"06c3095a17bf790c56c71013cc5e3ad6",slug:"persistent-organic-pollutants",bookSignature:"Stephen Kudom Donyinah",coverURL:"https://cdn.intechopen.com/books/images_new/7224.jpg",editedByType:"Edited by",editors:[{id:"26196",title:"Dr.",name:"Stephen Kudom",surname:"Donyinah",slug:"stephen-kudom-donyinah",fullName:"Stephen Kudom Donyinah"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"8863",title:"Hydrocarbon Pollution and its Effect on the Environment",subtitle:null,isOpenForSubmission:!1,hash:"25243b6684e6a441a6bf1f854d49f9e8",slug:"hydrocarbon-pollution-and-its-effect-on-the-environment",bookSignature:"Muharrem Ince and Olcay Kaplan Ince",coverURL:"https://cdn.intechopen.com/books/images_new/8863.jpg",editedByType:"Edited by",editors:[{id:"258431",title:"Prof.",name:"Muharrem",surname:"Ince",slug:"muharrem-ince",fullName:"Muharrem Ince"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6644",title:"Emerging Pollutants",subtitle:"Some Strategies for the Quality Preservation of Our Environment",isOpenForSubmission:!1,hash:"9e03aeca8b09510ef11fcf3621a2a996",slug:"emerging-pollutants-some-strategies-for-the-quality-preservation-of-our-environment",bookSignature:"Sonia Soloneski and Marcelo L. 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\r\n\tMuscular dystrophies are a group of genetic conditions primarily characterized by progressive muscle weakness and degeneration of the skeletal muscles. To date, more than 30 types of muscular dystrophies are described and classified based on their clinical phenotype, genetic defect, and protein involved, but many others remain to be characterized and classified. Overlapping clinical symptoms and the multitude of genes to be analyzed for an accurate diagnosis make it difficult to identify the type of dystrophy. The continuous evolution of molecular techniques and the accumulation of knowledge about the pathophysiology of these diseases have led to improved accuracy of diagnosis and approach to different therapeutic strategies.
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\r\n\tThis book will aim to provide an overview of the recent advances in the muscular dystrophy field, addressing the cellular and molecular basis of muscular dystrophy, biomarkers, available animal models for research, diagnostic methods, and the newest therapeutic strategies related to these diseases.
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1. Introduction
Obesity is now a global burden [1, 2]. Increase in the prevalence of obesity has lead the American Heart Association (AHA) to call for actions to prevent the consequences of this epidemic [3, 4]. Recently, the AHA reviewed many weight-loss approaches for the management and treatment of obesity [5].
Foods such as fats, carbohydrates or sugar are considered to be causes of such increase in global obesity pandemic. Intakes of carbohydrates result in increase in release of insulin which suppresses the release of fatty acids into circulation, thus storage of fat in fat cells. So carbohydrate is blamed for increase in obesity.
The German Nutrition Society published guidelines in which relationships between carbohydrate intake and prevention of nutrition-related diseases are indicated [6]. The guideline proposes that high carbohydrate intake at the expense of total fat and saturated fatty acids reduces the concentrations of total, LDL, and HDL cholesterol. A high carbohydrate consumption at the expense of polyunsaturated fatty acids such as EPA or DHA increases total and LDL cholesterol. But reduces HDL cholesterol. Further, intake of high carbohydrate increases triglyceride concentration. High consumption of sucrose increases obesity and type2 diabetes mellitus (T2DM).
On the other hand, as stated later, glucose is needed for many brain functions such as memory, emotion, decision, motivation etc. Sucrose is degraded in the intestine and gives rise to glucose. Some studies show that sucrose intakes improve memory.
In the present review, we discuss the transportation of glucose from the blood to the brain, influences of glucose or sucrose on memory and working ability, and feeding.
2. Importance of glucose in the brain functions
It is now well known that glucose is important for a variety of brain functions. Late 20th century, the development of positron emission tomography (PET) made it possible to visualize the amount of glucose in discrete regions of the brain. For example, light stimulation increased the metabolism of cerebral glucose in the primary visual cortex [7].
The learning of a complex visuospatial motor task was shown to increase the use of glucose by the brain [8].
Summarizing data published, PET studies showed that cognitive demand increased glucose metabolism in localized regions of the brain. In PET studies radioactively labeled glucose appears in brain areas that are metabolically active within a few minutes after the injection into blood. These observations indicate that the brain relies on glucose when neurons are activated.
2.1 Transportation of glucose from blood to brain
Tsacopoulos et al. [9] indicated that capillaries of the brain are surrounded by glia cells and glucose uptaken is phosphorylated exclusively in glia cells, not in neurons.
In mammalian there is evidence that glutamate is a coupling signal between neuronal activation and glucose uptake by astrocytes [10, 11].
Astrocytes surround capillaries, which indicate that astrocytes form the first cellular barrier that glucose encounters in the brain. This suggests that astrocytes are likely sites of primary glucose uptake (Figure 1).
Figure 1.
Capillary, astrocyte and neuron.
Schematic figure of the cytological relationships among capillary, astrocyte, and neuron. Processes of astrocytes surround capillaries (end-feet) and ensheath synapses. Receptors and uptake sites for neurotransmitters are on astrocytes. Astrocytes are ideally suited to sense synapse activity and to couple it with glucose uptake and its metabolism.
There are glucose transporters (55kDA Glut1) in the inner sites and outer sites of endothelial cells, and between astrocytes and capillaries (45kDA Glut1). There are Glut 3 transporters on walls of neurons [12].
Glut 1 and Glut 3 glucose transporters are present in the walls of capillaries and neurons (Figure 2).
Figure 2.
Glucose transporters in the walls of capillaries and the walls of neuron.
Glucose transporters, Glut1 are located in the luminal and abluminal membranes of brain endothelial cells. There are small amounts of Glut 1 located in the cytoplasm and the largest fractions of Glut1 are at the abluminal membranes. The lower content of Glut1 at the luminal membrane may be due to the comparably high glucose concentration in this membrane, which is close to the plasma concentration.
There appears to be a tight coupling between Na+ dependent glutamate uptake by astrocytes and glucose utilization [13] (Figure 3).
Figure 3.
Transportation of glucose from the blood to neurons.
Glutamate is cotransported with Na+, causing increase in the concentration Na+ in astrocytes, which activate the astrocyte Na+/K+-ATP ace. Activation of Na+/K+-ATPase stimulates glycolysis. Lactate released by astrocytes is taken up by neurons and become energy source of neurons.
When summarized, glucose is degraded by glycolysis in astrocytes which generates two molecules of ATP used for uptake of K+ and glutamate from the synaptic cleft. When neurons are active, glycolysis is more active, so that transportation of glucose from the blood to astrocytes increases.
2.2 Roles of glucose in memory
It has been known long time that glucose intake improves cognitive behaviors. In elderly humans, changes in blood glucose levels following ingestion of a glucose containing drink was shown to be significantly correlated with performances in the Wechsler memory scale [14].
Verbal fluency of a group of 80 females, aged 20, was measured after taking a glucose drink or placebo. The fluency was significantly higher after a glucose drink [15].
It was shown that an equilibrium starts between the level of glucose between blood and brain [16]. Such mechanism suggests that higher blood glucose levels promote better performance of brain functions.
The recall of a story was associated with blood glucose levels measured by Wechsler memory scale [17]. A positive correlation between blood glucose and forgetting was shown in young adults, thus those with higher initial blood glucose remember more.
There are various data indicating that glucose supply to the brain is necessary for maintaining good performances of brain functions.
In rats, systemic injections of glucose were shown to enhance learning and memory in many conditions. When microinjected into the specific sites of the brain, glucose levels increased and improved behavioral performances controlled by these sites [18].
Furthermore, glucose administration was shown to enhance memory in generally healthy aged rodents and humans. Glucose ingestion resulted in significant enhancement of performances on several tests including orientation, word recognition, and recall, narrative prose, and face recognition [19].
2.3 Glucose and memory measured by Morris maze experiments
As stated above, glucose intakes improve brain functions. Sucrose is degraded to glucose in the intestine and glucose is transported to the blood. A few systematic studies have been carried out as to the effects of sucrose on brain function [20, 21].
Morris used the delayed matching-to-place task which is an unusual variant of the water-maze protocols [22].
2.3.1 Experimental procedures
Wistar rats aged 11 weeks were trained in water to learn the location of the platform. Rats later learned to reach the platform in 15 min. After 6–12 trials. Rats were administered either glucose (2 g/8 ml/kg) or 8 ml/kg of water intraperitoneally. 24 hours later rats swam in Morris water maze and the ratio of stay at the platform (target) quarter to the rest of the area was measured. The distance to the target was also compared between glucose administered rats and the controls.
2.3.2 Results
Figure 4 show that the ratio of stay in the target quarter in the test was larger after glucose was given, but data are not statistically significant.
Figure 4.
Effects of glucose administration on memory [23].
Rats were given sucrose solution (10%) or sucralose solution (0.015%) or water as a control in a drinking bottle.
Figure 5 shows that rats given sucrose stayed at the target quarter significantly more compared with rats given sucralose. There was no significant decrease about the proximity measurements between rats given sucrose and sucralose.
Figure 5.
Effects of sucrose administration on the improvement of memory.
These results clearly show that the administration of sucrose improved memory consolidation when compared with rats given sucralose in Morris maze experiments.
3. The working ability after administration of glucose, sucrose or fructose in young women
Female college students participated in the experiments. They took Uchida-Kraaepelin tests and drank solutions containing glucose, sucrose, fructose or water as controls.
3.1 Uchida-Kraepelin tests
There are numbers of a digit lined. Two numbers lined together are added [24, 25]. The number of the higher digit is described. This procedure is repeated for 1 min. Then the addition of numbers of the second line was performed, and repeated for 15 min. The total numbers added are calculated, and the numbers are compared before and after the experiment.
The working duty of 1 min. Was repeated 15 times then drinks were taken. After blood measurements at 30 min. Tests were repeated.
Figure 6 shows that the working ability was significantly higher after the administration of sucrose, although there was a tendency for the working ability to increase after glucose or fructose administration, but not significantly.
Figure 6.
Relationship between sugar administration and the working ability.
We examined correlation coefficients between blood glucose levels and the working ability. Although there tends to be increase in the working ability with increase in blood glucose levels, but not significant.
4. Transportation of tryptophan to the brain and conversion to serotonin
Central serotonergic neurons play important roles in a variety of functions in animals and humans (see Review [26]).
We wanted to know if serotonin affects feeding by using injection of MAO inhibitor such as tranylcypromine (TC) intra peritoneally or by microinjection of TC into the hypothalamus.
At first, we injected TC intraperitoneally into rats and measured changes in body weights and foods intake [27].
Figure 7 shows that after the injection of TC in rats body weights decreased and amounts of food intakes decreased significantly.
Figure 7.
Growth curves of rats administered with TC or vehicle.
Figure 8 shows that micro infusion of TC solution into the paraventricular nucleus of hypothalamus resulted in dramatic decrease of food intakes and body weight. These data suggest that serotonin inhibited feeding.
Figure 8.
Changes in body weight and amounts of food intakes after the injection of TC into hypothalamus.
5. Discussion
Obesity pandemic is a great concern for not only health professionals but lay people. Because of such concern, weight loss diets often recommended are the restriction of either carbohydrates or fats. Low fat diets were popular in late 20th century, but carbohydrate restriction became popular in recent years. The proponents of carbohydrate restriction claim that this diet decreased insulin secretion which causes elevated release of free fatty acids from adipose tissues and elevated fat oxidation and energy expenditure. The restriction of carbohydrates was reported to decrease body fat more than restriction of dietary fat [28, 29, 30].
On the other hand it is well known that glucose is needed for many brain functions. Although neurons can use lactic acid astrocytes need glucose, which is degraded by glycolysis. ATP produced during glycolysis is used for the uptake of glutamate released from activated neurons [13, 31, 32, 33].
Since the administration of glucose or sucrose improved memory functions stated above, we must pay attention to maintaining good brain function in choosing carbohydrate restricted diets.
Glucose ingestion increases blood glucose levels, further insulin levels. Burtman’s group showed that insulin is needed for the transportation of tryptophan from blood to brain [34, 35].
Tryptophan is converted in the brain to serotonin, further melatonin [36].
Figure 9 shows that tryptophan absorbed from the intestine is transported to the brain in the presence of insulin. 5HT; serotonin.
Figure 9.
Tryptophan transport from blood to brain.
Serotonin is important for many brain functions such as emotion, feeding, sleep resilience or satiety. We showed that increase in serotonin by intraperitoneal injection or by infusion into the hypothalamus of tranylcypromine resulted in inhibition of feeding (Figures 7 and 8).
Thus, glucose administration indirectly affects brain functions by increasing the concentration of serotonin in the brain.
Finally we should not forget the possibility of increased pleasure, thus increased motivation due to the stimulation of pleasure centers such as Nucl.Accumbens by sweet taste of sucrose as reviewed by Berridge and Kringelbach [37].
Figure 10 shows a schematic representation of brain areas stimulated by palatable foods such as sucrose.
Figure 10.
Brain areas related to the stimulations by taking palatable foods.
Sucrose applied to the taste buds on the tongue stimulates afferent fibers of cranial nerves such as IX or VII, which send informations of the taste to sensory areas of the brain. The stimulations of the taste area further activate Nucl.Accumbens, releasing dopamine and the periaqueductal gray in the midbrain, releasing βendorphin. Such stimulation may enhance the motivation [38, 39].
6. Conclusion
Since brain needs glucose for variety of functions, attention must be paid to glucose when various diets related to glucose administration are discussed.
Conflicts of interest
There is no conflict of interest for any author.
\n',keywords:"sucrose, glucose, feeding, glucose transporter, glutaminergic neuron, Morris maze, working ability, glycolysis, astrocyte, serotonin, hypothalamus",chapterPDFUrl:"https://cdn.intechopen.com/pdfs/77738.pdf",chapterXML:"https://mts.intechopen.com/source/xml/77738.xml",downloadPdfUrl:"/chapter/pdf-download/77738",previewPdfUrl:"/chapter/pdf-preview/77738",totalDownloads:166,totalViews:0,totalCrossrefCites:0,totalDimensionsCites:0,totalAltmetricsMentions:0,introChapter:null,impactScore:0,impactScorePercentile:29,impactScoreQuartile:2,hasAltmetrics:0,dateSubmitted:"January 5th 2021",dateReviewed:"July 2nd 2021",datePrePublished:"July 29th 2021",datePublished:"December 1st 2021",dateFinished:"July 29th 2021",readingETA:"0",abstract:"Sugars such as glucose or sucrose are considered hazardous foods because their intakes lead to obesity, further causing diabetes mellitus (DM), or cardiovascular diseases. However, glucose is needed for many brain functions such as memory and emotion among others. Glucose induces the secretion of insulin, which is needed for transportation of tryptophan from the blood to the brain. Serotonin, which is converted from tryptophan, is important for mood stability, control of emotion, and feeding is inhibited by serotonin in the hypothalamus. We discuss transportation of glucose from the blood to the glia cells. After glycolysis of glucose in the glia lactic acid is transported to cells such as glutaminergic neurons. After the release from neurons glutamic acid is taken up into glia cells and further to neurons again. Sucrose is degraded into glucose and fructose in the intestine thus intake of sucrose increases plasma levels of glucose. We show that intake of sucrose enhanced memory measured by Morris maze in rats and improved the working ability in humans. Roles of glucose and sucrose intakes are discussed together with the function of serotonin in feeding.",reviewType:"peer-reviewed",bibtexUrl:"/chapter/bibtex/77738",risUrl:"/chapter/ris/77738",book:{id:"10543",slug:"psychology-and-pathophysiological-outcomes-of-eating"},signatures:"Akikazu Takada, Fumiko Shimizu, Yukie Ishii, M. Ogawa and Tetsuya Takao",authors:[{id:"248459",title:"Dr.",name:"Akikazu",middleName:null,surname:"Takada",fullName:"Akikazu Takada",slug:"akikazu-takada",email:"takada-1a@kmd.biglobe.ne.jp",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/248459/images/system/248459.png",institution:{name:"Hamamatsu University School of Medicine",institutionURL:null,country:{name:"Japan"}}}],sections:[{id:"sec_1",title:"1. Introduction",level:"1"},{id:"sec_2",title:"2. Importance of glucose in the brain functions",level:"1"},{id:"sec_2_2",title:"2.1 Transportation of glucose from blood to brain",level:"2"},{id:"sec_3_2",title:"2.2 Roles of glucose in memory",level:"2"},{id:"sec_4_2",title:"2.3 Glucose and memory measured by Morris maze experiments",level:"2"},{id:"sec_4_3",title:"2.3.1 Experimental procedures",level:"3"},{id:"sec_5_3",title:"2.3.2 Results",level:"3"},{id:"sec_8",title:"3. The working ability after administration of glucose, sucrose or fructose in young women",level:"1"},{id:"sec_8_2",title:"3.1 Uchida-Kraepelin tests",level:"2"},{id:"sec_10",title:"4. Transportation of tryptophan to the brain and conversion to serotonin",level:"1"},{id:"sec_11",title:"5. Discussion",level:"1"},{id:"sec_12",title:"6. Conclusion",level:"1"},{id:"sec_16",title:"Conflicts of interest",level:"1"}],chapterReferences:[{id:"B1",body:'Eckel RH, York DA, Rossner S, Hubbard V, Caterson I, St Jeor ST, Hayman LL, Mullis RM, Blair SN; American Heart Association. 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Perspectives on Psychological Science. 2014; 9:91-93.'}],footnotes:[],contributors:[{corresp:"yes",contributorFullName:"Akikazu Takada",address:"takada-1a@kmd.biglobe.ne.jp",affiliation:'
Faculty of Life and Environmental Sciences, Showa Women’s University, Japan
International Projects on Food and Health (NPO), Japan
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1. Introduction
Enteroscopy has a procedure-related perforation rate from less than 1% to 6.5% [1, 2, 3]. It seems to be higher in therapeutic enteroscopy, especially polypectomy of large polyps, and in patients with altered surgical anatomy. Early recognition is life-saving and surgery performed within 12 hours carries a better prognosis. It was seen in peptic perforations that a delay of more than 24 hours increased mortality seven to eight times, complication rate to three times, and length of hospital stay to two times, compared with a delay of 6 hours or less [4]. Early diagnosis should be the goal followed by prompt surgical correction.
2. Bowel pathologies that increase the risk of perforation during small bowel endoscopy/enteroscopy
Bowel pathologies with increased susceptibility for perforation during small bowel endoscopy include – Crohn’s disease, anastomotic stricture, radiation stricture, altered surgical anatomy (ileoanal, ileocolic anastomosis), and intestinal lymphoma. The perforation rate during double balloon enteroscopy is seen more with the retrograde technique compared to anterograde [5]. Also, more perforations are seen with therapeutic procedures like polypectomy of large polyp (> 3 cm), argon plasma coagulation for AV malformations, and dilations of small bowel strictures [3, 5, 6]. Furthermore, endoscopy associated perforations are more in patients with inflammatory bowel disease (IBD) as compared to non-IBD patients, with disease severity and steroid use being the two of the strong predictors for perforation [7, 8, 9, 10]. In a systematic review, the total rate of perforation with enteroscopy in Crohn’s disease was 4.27 per 1000 procedures (diagnostic and therapeutic procedures) and it was nearly 4 times that of diagnostic balloon assisted enteroscopy for all indications (1.1 per 1000 procedures) [11].
3. Early recognition of perforation by simple bedside examination
In a patient who has undergone small bowel endoscopy the diagnosis of small bowel perforation should be suspected if the patient has acute pain in the abdomen. The severity of pain will progressively increase. The patient will lie still as any movement will exacerbate the pain. Even the respiration will be shallow for this reason. This differentiates it from other acute pathologies like acute pancreatitis in which the patient is restless and changes posture to find relief. The physical examination will reveal a sick look, tachycardia, and features of dehydration along with the signs of peritonitis. Perforation causes third space loss of body fluid. This along with bacteremia and systemic inflammatory response leads to hypotension and decreased urine output. The abdomen will be very tender and guarding will be present. A board-like rigidity may be felt. Loss of liver dullness on percussion will further confirm the presence of free air in the peritoneal cavity. Bowel sounds will be absent due to paralytic ileus caused by peritonitis. After 4–6 hours of perforation (gastro-duodenal perforation), the peritoneal cavity acid becomes diluted and there is a decrease in pain and guarding. It may seem that the patient is improving but, in reality, is deteriorating [12].
Making the diagnosis of perforation may be difficult in the early period because of subtle signs and symptoms. The classical peritoneal signs may fail to elicit in a morbidly obese patient. Thus a high index of suspicion should be kept in mind for patients complaining of undue pain following endoscopy. Any patient with difficult endoscopy should have close post procedure monitoring for early detection of complications. Tachycardia, dehydration, or decreased urine output should alarm the clinician. Repeated abdominal examination can detect any new abdominal signs. Lessons can be learnt from trauma surgery. In a hemodynamically stable patient with an anterior abdominal stab wound with the peritoneal breach, serial abdominal examination is a standard technique for picking the peritonitis early.
4. Role of basic laboratory investigation like TLC and serum lactate in early diagnosis
Laboratory workup will confirm the diagnosis of small bowel perforation apart from a careful history and physical examination. It is particularly helpful in elderly or seriously ill patients in whom signs and symptoms are less reliable. An elevated (>12,000/ cumm) or decreased white blood cells (< 4000/cumm) confirms inflammation or infection [13]. If TLC is normal, an increase in the number of neutrophils in differential counts or bandemia (> 10% band forms) is indicative of infection. The hemoglobin level will help in deciding the blood transfusion requirement. Serum electrolytes, blood urea nitrogen and, serum creatinine measurements will provide information about the fluid losses associated with third space loss, vomiting, delayed presentation, etc. Lactate level serves as a surrogate marker for tissue perfusion and correlates with anaerobic metabolism. A raised lactate level indicates bowel ischemia, shock, and sepsis. Lactate levels have been more specific than leukocyte count in diagnosing abdominal sepsis [14]. However, lactate levels can also be elevated in hepatic failure, dehydration, and drug abuse. Metabolic acidosis will be present in sepsis. Coagulation profiles such as platelet count, prothrombin time, international normalized ratio, etc. are important in the preoperative assessment of patients with liver disease or those on anticoagulants. These may also be deranged due to sepsis. Other biochemical markers of inflammation include C-reactive protein and pro-calcitonin which when used in adjunct with complete blood count and other clinical signs help in making the diagnosis, assessing severity and prognosis, and guiding treatment.
5. Role of X-ray abdomen and CT scan in confirming the diagnosis
Plain radiography remains the most frequently ordered examination in patients with suspected perforation. Pneumoperitoneum is present in the rupture of any hollow viscous. It may also be observed following recent abdominal surgery, paracentesis, and pneumatosis intestinalis. Benign pneumoperitoneum may rarely develop following endoscopy due to transmural passage of insufflated air without bowel perforation [15]. Plain radiography can detect about 55–85% of patients with pneumoperitoneum [16]. It can detect as little as 1–2 ml of free air [17]. Upright lateral chest radiograph has better sensitivity than upright postero-anterior chest radiograph [18]. Upright positions including left lateral decubitus are uncomfortable in critically ill patients in the emergency setting. In such patients supine decubitus anteroposterior view of the thorax and anteroposterior or lateral view of the abdomen are generally requested [19].
Free air can be visualized in different shapes, sizes, and locations in the abdominal cavity. On upright postero-anterior chest or abdominal radiography, free air is visualized as a translucent crescent below the diaphragm (Figure 1). These free-air signs can be categorized as bowel-related, right-upper-quadrant, peritoneal ligament- related, or other signs [20]. Rigler sign is the visualization of both sides of the bowel wall in a supine abdominal radiograph (Figure 2). The presence of normal gas in the bowel lumen, as well as free extraluminal gas, makes the bowel wall outline nicely visible. It is seen when a large quantity of free gas is present in the abdomen. Hyperlucent liver sign is also seen in a supine radiograph. Intraperitoneal free air may outline the various peritoneal ligaments making them visible along their course giving rise to various signs: falciform ligament sign, ligamentum teres sign, “inverted V” sign, urachus sign, etc. [20]. Along with it air in the subcutaneous tissue can also be visualized. Pneumoperitoneum is often absent in the perforation of the retroperitoneal duodenum. A confusing picture related to pneumoperitoneum is the Chilaiditi sign. It is the interposition of the bowel, commonly colon, between the right hemidiaphragm and the liver. It can be falsely diagnosed as pneumoperitoneum. Features that are suggestive of Chilaiditi sign are gas between liver and diaphragm and haustra in the gas suggesting that it is bowel and not free air (Figure 3) [21].
Figure 1.
X-ray abdomen showing A-Giant pneumoperitoneum appearing as an air-fluid level in the peritoneal cavity. B-pneumoperitoneum on the left side may be confused with fundal gas.
Figure 2.
Rigler sign.
Figure 3.
X-ray chest showing Chilaiditi sign.
Although plain radiography is good modality in suspected cases of hollow viscus perforation, ultrasonography can be helpful in certain scenarios because of the absence of radiation exposure, bedside availability, no pre-procedural preparation, and speed. It can be used in pregnant females and sick patients. It can detect free fluid in the abdomen and rule out other causes of acute abdominal pain. It may not help in the early period of perforation when the amount of free fluid is scant for detection.
Computed tomography (CT) scan is very sensitive and specific for perforation of the gastrointestinal tract (80–100%) [22]. It is more sensitive than plain radiography for small or retroperitoneal perforations. In addition to free air, it can also detect the location and size of perforation and any fluid collection. Direct CT signs of intestinal perforation are free gas and extra-luminal leak of oral contrast (Figure 4) [23]. Indirect signs include misty mesentery, fluid collection, bowel wall thickening, and extra-luminal fecal matter [24]. In a prospective study of 85 patients, the MDCT images confirmed the site of gastrointestinal tract perforation in 73 (86%) patients. Furthermore, the logistic regression showed that extra-luminal air, segmental bowel wall thickening, and focal defect of the intestinal wall were strong predictors of the site of perforation [25].
Figure 4.
CECT abdomen showing big pneumoperitoneum anteriorly and left side intra-abdominal collection. Same patient as shown in Figure 1.
Signs present in plain radiography are also seen in scout view in CT. When contrast is contraindicated, then even plain CT is of help, in diagnosing perforation. The European Society of Gastrointestinal Endoscopy (ESGE) recommends that clinical features suggestive of perforation after an endoscopy should be rapidly and carefully evaluated and documented with a CT scan [26]. See flowchart for the diagnosis of intestinal perforation (Figure 5).
Figure 5.
Flowchart for the diagnosis of small bowel perforation.
6. Resuscitation, supportive measures, and preparation for surgery
Evaluation and resuscitation should go hand in hand. The intravascular fluid deficit should be corrected considering systemic diseases in acutely ill patients. Warmed crystalloids (normal saline or lactated Ringer solution) should be started using wide-bore IV cannula. Fluid therapy should be guided according to physical signs (pulse rate, blood pressure), urine output, lactate levels, CVP, etc. Patients who are not responsive to adequate fluid therapy should be started on vasopressors. Nasogastric tube insertion prevents aspiration in patients with altered mental status and the elderly. Foley’s catheterization is needed to measure urine output.
Parenteral analgesics (tramadol, paracetamol, NSAID, etc) should be started in an adequate dose in combination, keeping in mind the renal function of the patient. We generally avoid diclofenac in bowel repair as animal studies have shown an increased risk of post-surgery leak [27]. Broad-spectrum antibiotic therapy (piperacillin + tazobactum or meropenem, etc. along with metronidazole) should be started to control on-going sepsis. The antibiotics can later be continued as indicated or changed according to culture and sensitivity.
The anesthetic evaluation would include the American Society of Anesthesiologists (ASA) classification system to stratify patients according to the degree of perioperative risks [28]. Thromboprophylaxis should be started in high-risk patients that include mechanical devices (thromboembolic deterrent stocking and pneumatic compression boots) and drugs (heparin and LMWH) [29]. Risk factors for deep vein thrombosis include increased age, obesity, chronic diseases (diabetes, COPD, malignancy), corticosteroid therapy, and past or family history of thromboembolic disease. Written consent for surgery is taken and the patient and the family should be explained about the possibility of multiple staged surgeries, temporary stomas, postoperative ICU care, and expected complications of surgery.
7. The indication of laparoscopy in the diagnosis and management of intestinal perforation
Laparoscopy has a role in the diagnosis of perforations that are sometimes not detected by imaging tools. It allows complete visualization and exploration of the abdominal cavity. Laparoscopy is considered safe and a valid diagnostic tool and has a diagnostic benefit of 89–100% in the acute abdomen [30]. However, in cases of small bowel perforation, it is more of a therapeutic modality. Patients treated with laparoscopy have smaller incisions (Figure 6), reduced post-operative pain, early return of bowel movements, shorter hospital stay, and faster return to normal activity. Various factors limit the role of laparoscopy in patients with perforation peritonitis. Respiratory and hemodynamic stability is necessary before performing laparoscopy. Pneumoperitoneum affects the respiratory and cardiovascular parameters, thus patients with comorbidities should be properly evaluated before the procedure. The presence of dense intra-abdominal adhesions and the expertise of the surgeon are other parameters that affect the feasibility of laparoscopic procedure [30, 31].
Figure 6.
Small incisions of laparoscopic surgery.
The choice of bowel repair technique depends upon the condition of the patient as well as the bowel. Primary suture repair can be done for small perforation. Resection of the involved bowel with anastomosis is required if the surrounding bowel is unhealthy or the perforation is large (more than 50% of the bowel circumference). The primary repair/anastomosis is at risk in conditions that impair healing. An obstructed, irradiated, inflamed, or ischemic intestine is traditionally considered high risk. Other than this, systemic factors like malnutrition, hypotension, diabetes, renal failure, chronic liver disease, anemia, steroid use, and other conditions causing immunocompromise lead to an increased risk of anastomotic failure [32]. If there are multiple risk factors for anastomotic leak then exteriorization of the perforated bowel as a stoma may be a safer option. It is followed by stoma closure after two to three months. However, in proximal jejunum, a stoma will lead to serious nutritional loss and if possible should be avoided. Complete lavage of all the abdominal recesses must always be done to prevent post-operative intra-abdominal collection (tertiary peritonitis). The patients have a good recovery after a timely repair.
8. Conclusion
In a patient who has undergone small bowel endoscopy the diagnosis of small bowel perforation should be suspected if the patient is presenting with an acute pain abdomen, especially after a therapeutic procedure.
The physical examination will reveal a sick look, tachycardia, and features of dehydration along with the abdominal signs of peritonitis.
Perforation is confirmed by x-ray abdomen, leucocytosis, and an increase in serum lactate. Computed tomography scan is very sensitive and specific for perforation of the gastrointestinal tract.
Early diagnosis should be the goal with prompt surgical correction, and the patients have a good recovery after timely repair.
\n',keywords:"small bowel perforation, peritonitis, laparoscopy, enteroscopy, small bowel endoscopy",chapterPDFUrl:"https://cdn.intechopen.com/pdfs/75590.pdf",chapterXML:"https://mts.intechopen.com/source/xml/75590.xml",downloadPdfUrl:"/chapter/pdf-download/75590",previewPdfUrl:"/chapter/pdf-preview/75590",totalDownloads:362,totalViews:0,totalCrossrefCites:0,dateSubmitted:"September 18th 2020",dateReviewed:"February 5th 2021",datePrePublished:"March 8th 2021",datePublished:"March 24th 2021",dateFinished:"March 8th 2021",readingETA:"0",abstract:"Enteroscopy has a procedure-related perforation rate from less than 1% to 6.5%. It seems to be higher in therapeutic enteroscopy, especially polypectomy of large polyps, and in patients who have altered surgical anatomy. Early recognition is life-saving and studies have shown that if surgery is done within 12 hours of perforation the prognosis is better. In a patient who has undergone small bowel endoscopy the diagnosis of small bowel perforation should be suspected if the patient has acute pain in the abdomen. Early diagnosis should be the goal with prompt surgical correction.",reviewType:"peer-reviewed",bibtexUrl:"/chapter/bibtex/75590",risUrl:"/chapter/ris/75590",signatures:"Md. Yusuf Afaque, Noha Rehman, S. Amjad Ali Rizvi and Meraj Ahmed",book:{id:"10309",type:"book",title:"Endoscopy in Small Bowel Diseases",subtitle:null,fullTitle:"Endoscopy in Small Bowel Diseases",slug:"endoscopy-in-small-bowel-diseases",publishedDate:"March 24th 2021",bookSignature:"Mahesh Goenka, Usha Goenka and Gajanan A. Rodge",coverURL:"https://cdn.intechopen.com/books/images_new/10309.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",isbn:"978-1-83968-780-8",printIsbn:"978-1-83968-779-2",pdfIsbn:"978-1-83968-781-5",isAvailableForWebshopOrdering:!0,editors:[{id:"292494",title:"Dr.",name:"Mahesh",middleName:null,surname:"Goenka",slug:"mahesh-goenka",fullName:"Mahesh Goenka"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:[{id:"331681",title:"Assistant Prof.",name:"Md Yusuf",middleName:null,surname:"Afaque",fullName:"Md Yusuf Afaque",slug:"md-yusuf-afaque",email:"yusufafaque@gmail.com",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/331681/images/15461_n.jpg",institution:null},{id:"345239",title:"Dr.",name:"Noha",middleName:null,surname:"Rehman",fullName:"Noha Rehman",slug:"noha-rehman",email:"nuha.rehman@gmail.com",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institution:{name:"Aligarh Muslim University",institutionURL:null,country:{name:"India"}}},{id:"345240",title:"Dr.",name:"Meraj",middleName:null,surname:"Ahmed",fullName:"Meraj Ahmed",slug:"meraj-ahmed",email:"merajdoc@gmail.com",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institution:null},{id:"351376",title:"Dr.",name:"S. Amjad",middleName:null,surname:"Ali Rizvi",fullName:"S. Amjad Ali Rizvi",slug:"s.-amjad-ali-rizvi",email:"rizviamjad@rediffmail.com",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institution:null}],sections:[{id:"sec_1",title:"1. Introduction",level:"1"},{id:"sec_2",title:"2. Bowel pathologies that increase the risk of perforation during small bowel endoscopy/enteroscopy",level:"1"},{id:"sec_3",title:"3. Early recognition of perforation by simple bedside examination",level:"1"},{id:"sec_4",title:"4. Role of basic laboratory investigation like TLC and serum lactate in early diagnosis",level:"1"},{id:"sec_5",title:"5. Role of X-ray abdomen and CT scan in confirming the diagnosis",level:"1"},{id:"sec_6",title:"6. Resuscitation, supportive measures, and preparation for surgery",level:"1"},{id:"sec_7",title:"7. The indication of laparoscopy in the diagnosis and management of intestinal perforation",level:"1"},{id:"sec_8",title:"8. Conclusion",level:"1"}],chapterReferences:[{id:"B1",body:'Gerson LB. Capsule endoscopy and deep enteroscopy. Gastrointest Endosc. 2013;78(3):439-43'},{id:"B2",body:'May A, Nachbar L, Pohl J, Ell C. Endoscopic interventions in the small bowel using double balloon enteroscopy: Feasibility and limitations. Am J Gastroenterol. 2007;102(3):527-35'},{id:"B3",body:'Gerson LB, Tokar J, Chiorean M, Lo S, Decker GA, Cave D, et al. Complications Associated With Double Balloon Enteroscopy at Nine US Centers. Clin Gastroenterol Hepatol. 2009;7(11)'},{id:"B4",body:'Svanes C, Lie RT, Svanes K, Lie SA, Søreide O. Adverse effects of delayed treatment for perforated peptic ulcer. Ann Surg. 1994;220(2):168-75'},{id:"B5",body:'Teshima CW, May G. Small bowel enteroscopy. Can J Gastroenterol. 2012;26(5):269-75'},{id:"B6",body:'Mensink PBF, Haringsma J, Kucharzik T, Cellier C, Pérez-Cuadrado E, Mönkemüller K, et al. Complications of double balloon enteroscopy: A multicenter survey. Endoscopy. 2007;39(7):613-5'},{id:"B7",body:'Mukewar S, Costedio M, Wu X, Bajaj N, Lopez R, Brzezinski A, et al. Severe adverse outcomes of endoscopic perforations in patients with and without IBD. Inflamm Bowel Dis. 2014;20(11):2056-66'},{id:"B8",body:'Navaneethan U, Kochhar G, Phull H, Venkatesh PGK, Remzi FH, Kiran RP, et al. Severe disease on endoscopy and steroid use increase the risk for bowel perforation during colonoscopy in inflammatory bowel disease patients. J Crohn’s Colitis. 2012;6(4):470-5'},{id:"B9",body:'Navaneethan U, Parasa S, Venkatesh PGK, Trikudanathan G, Shen B. Prevalence and risk factors for colonic perforation during colonoscopy in hospitalized inflammatory bowel disease patients. J Crohn’s Colitis. 2011;5(3):189-95'},{id:"B10",body:'Odagiri H, Matsui H, Fushimi K, Kaise M, Yasunaga H. Factors associated with perforation related to diagnostic balloon-assisted enteroscopy: Analysis of a national inpatient database in Japan. Endoscopy. 2014;39(2)'},{id:"B11",body:'Arulanandan A, Dulai PS, Singh S, Sandborn WJ, Kalmaz D. Systematic review: Safety of balloon assisted enteroscopy in Crohn’s disease. World J Gastroenterol. 2016;22(40):8999-9011'},{id:"B12",body:'Lowry J. Browse’s Introduction to the Symptoms and Signs of Surgical Disease (4th edn). Vol. 88, Annals of The Royal College of Surgeons of England. Royal College of Surgeons of England; 2006. 333 p'},{id:"B13",body:'Dugar S, Choudhary C, Duggal A. Sepsis and septic shock: Guideline-based management. Cleve Clin J Med. 2020;87(1):53-64'},{id:"B14",body:'Demircan M, Caglayan F, Deysine M, Fath JJ. Plasma D-lactate level: A useful marker to distinguish a perforated appendix from acute simple appendicitis. J Investig Surg. 2004;17(3):173-8'},{id:"B15",body:'Ustek S, Boran M, Kismet K. Benign pneumoperitoneum after colonoscopy. Case Rep Med. 2010;2010'},{id:"B16",body:'Roh JJ, Thompson JS, Harned RK, Hodgson PE. Value of pneumoperitoneum in the diagnosis of visceral perforation. Am J Surg. 1983;146(6):830-3'},{id:"B17",body:'Hokama A, Nakamura M, Kobashigawa C, Chinen H, Kishimoto K, Nakamoto M, et al. Gastrointestinal: Signs of pneumoperitoneum. J Gastroenterol Hepatol. 2009;24(3):497'},{id:"B18",body:'Woodring JH, Heiser MJ. Detection of pneumoperitoneum on chest radiographs: Comparison of upright lateral and posteroanterior projections. Am J Roentgenol. 1995;165(1):45-7'},{id:"B19",body:'Grassi R, Romano S, Pinto A, Romano L. Gastro-duodenal perforations: Conventional plain film, US and CT findings in 166 consecutive patients. Eur J Radiol. 2004;50(1):30-6'},{id:"B20",body:'Pinto A, Miele V, Laura Schillirò M, Nasuto M, Chiaese V, Romano L, et al. Spectrum of Signs of Pneumoperitoneum. Semin Ultrasound, CT MRI. 2016;37(1):3-9'},{id:"B21",body:'Chilaiditi D. Zur Frage der Hepatoptose und Ptose im allgemeinen im Anschluss an drei Falle von temporarer, partieller Leberverlagerung. Fortschr Rontgenstr. 1910;16:173-207'},{id:"B22",body:'Cadenas Rodríguez L, Martí de Gracia M, Saturio Galán N, Pérez Dueñas V, Salvatierra Arrieta L, Garzón Moll G. Use of Multidetector Computed Tomography for Locating the Site of Gastrointestinal Tract Perforations. Cirugía Española (English Ed. 2013 May 1;91(5):316-23'},{id:"B23",body:'Lo Re G, Mantia F La, Picone D, Salerno S, Vernuccio F, Midiri M. Small Bowel Perforations: What the Radiologist Needs to Know. Semin Ultrasound, CT MRI. 2016;37(1):23-30'},{id:"B24",body:'Pinto A, Scaglione M, Pinto F, Romano L, Grassi R, Rotondo A. Helical computed tomography diagnosis of gastrointestinal perforation in the elderly patient. Emerg Radiol. 2000;7(5):259-62'},{id:"B25",body:'Hainaux B, Agneessens E, Bertinotti R, De Maertelaer V, Rubesova E, Capelluto E, et al. Accuracy of MDCT in predicting site of gastrointestinal tract perforation. Am J Roentgenol. 2006;187(5):1179-83'},{id:"B26",body:'Paspatis GA, Arvanitakis M, Dumonceau JM, Barthet M, Saunders B, Turino SY, Dhillon A, Fragaki M, Gonzalez JM, Repici A, van Wanrooij RLJ, van Hooft JE. Diagnosis and management of iatrogenic endoscopic perforations: European Society of Gastrointestinal Endoscopy (ESGE) Position Statement - Update 2020. Endoscopy. 2020 Sep;52(9):792-810'},{id:"B27",body:'Le Greves SS, Bremseth PL, Biagini M, Holst R, Qvist N. Effect of postoperative diclofenac on anastomotic strength and histologic healing in rabbit small intestine. Int Surg. 2015;100(11):1435-42'},{id:"B28",body:'Mayhew D, Mendonca V, Murthy BVS. A review of ASA physical status – historical perspectives and modern developments. Anaesthesia. 2019;74(3):373-9'},{id:"B29",body:'O’Donnell M, Weitz JI. Thromboprophylaxis in surgical patients. Can J Surg. 2003;46(2):129-35'},{id:"B30",body:'Mandalà V, editor. The Role of Laparoscopy in Emergency Abdominal Surgery. Milano: Springer Milan; 2012. (Updates in Surgery)'},{id:"B31",body:'Agresta F, Ansaloni L, Baiocchi GL, Bergamini C, Campanile FC, Carlucci M, et al. Laparoscopic approach to acute abdomen from the consensus development conference of the Società Italiana di Chirurgia Endoscopica e nuove tecnologie (SICE), Associazione Chirurghi Ospedalieri Italiani (ACOI), Società Italiana di Chirurgia (SIC), Società Italiana di Chirurgia d’Urgenza e del Trauma (SICUT), Società Italiana di Chirurgia nell’Ospedalità. Surg Endosc. 2012;26(8):2134-64'},{id:"B32",body:'Afaque, M.Y., Alam, J., Riyaz, M. et al. Small Bowel Anastomosis Single-Layer Close Suturing—Open-Label Case Series. Indian J Surg 2020. https://doi.org/10.1007/s12262-020-02479-2'}],footnotes:[],contributors:[{corresp:"yes",contributorFullName:"Md. Yusuf Afaque",address:"yusufafaque@gmail.com",affiliation:'
Department of Surgery, Jawaharlal Nehru Medical College and Hospital, Aligarh Muslim University, Aligarh, India
Department of Surgery, Jawaharlal Nehru Medical College and Hospital, Aligarh Muslim University, Aligarh, India
'}],corrections:null},book:{id:"10309",type:"book",title:"Endoscopy in Small Bowel Diseases",subtitle:null,fullTitle:"Endoscopy in Small Bowel Diseases",slug:"endoscopy-in-small-bowel-diseases",publishedDate:"March 24th 2021",bookSignature:"Mahesh Goenka, Usha Goenka and Gajanan A. Rodge",coverURL:"https://cdn.intechopen.com/books/images_new/10309.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",isbn:"978-1-83968-780-8",printIsbn:"978-1-83968-779-2",pdfIsbn:"978-1-83968-781-5",isAvailableForWebshopOrdering:!0,editors:[{id:"292494",title:"Dr.",name:"Mahesh",middleName:null,surname:"Goenka",slug:"mahesh-goenka",fullName:"Mahesh Goenka"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}}},profile:{item:{id:"279290",title:"MSc.",name:"Muhammad",middleName:null,surname:"Dawood",email:"muhammad.dawood@kust.edu.pk",fullName:"Muhammad Dawood",slug:"muhammad-dawood",position:null,biography:null,institutionString:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",totalCites:0,totalChapterViews:"0",outsideEditionCount:0,totalAuthoredChapters:"1",totalEditedBooks:"0",personalWebsiteURL:null,twitterURL:null,linkedinURL:null,institution:{name:"Kohat University of Science and Technology",institutionURL:null,country:{name:"Pakistan"}}},booksEdited:[],chaptersAuthored:[{id:"65026",title:"Prevalence and Association of Diabetic Retinopathy with Diabetic Foot Ulcer: A Cross-Sectional Observational Study",slug:"prevalence-and-association-of-diabetic-retinopathy-with-diabetic-foot-ulcer-a-cross-sectional-observ",abstract:"We aimed to elucidate prevalence and association of diabetic retinopathy (DR) in patients with diabetic foot ulcer (DFU) from Pakistan. In this cross-sectional study, about 225 DFU patients who underwent ophthalmic examinations within 6 months of diagnosis of foot ulceration were included. The medical records of 305 diabetic patients without DFU were included as controls. The association of DR with DFU was assessed by comparing DFU patients with proliferative DR (PDR) and DFU patients without PDR. Out of 225 DFU patients, 215 patients (95.6%) had DR and 169 patients (75.1%) had PDR. The prevalence of DFU was significantly greater (P = 0.0527) among the male diabetic patients, whereas advanced age of these patients (≥41 years) had a significant effect (P = 0.0286) on development and progression of PDR. A longer duration of diabetes (≥10 years) was identified as a significant contributing factor for the development of both DFU (P = 0.0029) and PDR (P = 0.0299). Moreover, the risk of PDR increased in diabetic patients with higher DFU grades (grade 3 and grade 4). In conclusion, retinopathy was prevalent in DFU patients. Therefore, DFU patients with advancing age and longer duration of diabetes should undergo retinal examinations for timely diagnosis and management of DR.",signatures:"Shaista Zafar, Kashif Rahim, Inayat Ullah Khan, Muhammad Yasin, Muhammad Dawood and Shamim Saleha",authors:[{id:"209678",title:"Dr.",name:"Shamim",surname:"Saleha",fullName:"Shamim Saleha",slug:"shamim-saleha",email:"shamimsaleha@yahoo.com"},{id:"279284",title:"Dr.",name:"Shaista",surname:"Zafar",fullName:"Shaista Zafar",slug:"shaista-zafar",email:"shaistazafarkhan@gmail.com"},{id:"279285",title:"Dr.",name:"Kashif",surname:"Rahim",fullName:"Kashif Rahim",slug:"kashif-rahim",email:"kashifbangash73@yahoo.com"},{id:"279287",title:"Dr.",name:"Inayat Ullah",surname:"Khan",fullName:"Inayat Ullah Khan",slug:"inayat-ullah-khan",email:"drinayat75@gmail.com"},{id:"279288",title:"MSc.",name:"Muhammad",surname:"Yasin",fullName:"Muhammad Yasin",slug:"muhammad-yasin",email:"khanyasin341@gmail.com"},{id:"279290",title:"MSc.",name:"Muhammad",surname:"Dawood",fullName:"Muhammad Dawood",slug:"muhammad-dawood",email:"muhammad.dawood@kust.edu.pk"}],book:{id:"7446",title:"Frontiers in Ophthalmology and Ocular Imaging",slug:"frontiers-in-ophthalmology-and-ocular-imaging",productType:{id:"1",title:"Edited Volume"}}}],collaborators:[{id:"30695",title:"Prof.",name:"Lawan",surname:"Abdu",slug:"lawan-abdu",fullName:"Lawan Abdu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/30695/images/6119_n.jpg",biography:null,institutionString:null,institution:{name:"Bayero University Kano",institutionURL:null,country:{name:"Nigeria"}}},{id:"209512",title:"Dr.",name:"Baris",surname:"Komur",slug:"baris-komur",fullName:"Baris Komur",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"209678",title:"Dr.",name:"Shamim",surname:"Saleha",slug:"shamim-saleha",fullName:"Shamim Saleha",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Kohat University of Science and Technology",institutionURL:null,country:{name:"Pakistan"}}},{id:"223782",title:"Dr.",name:"Hind",surname:"Alkatan",slug:"hind-alkatan",fullName:"Hind Alkatan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/223782/images/8837_n.jpg",biography:"Dr. Hind Manaa Alkatan, MD has completed her Saudi Ophthalmology Board (in the year 1994) from King Saud University (KSU), Riyadh, Saudi Arabia and her postdoctoral studies from Departments of Ophthalmology/Pathology, University of Manitoba and University of British Columbia, Canada (in the year 1999). She is an Associate Professor (College of Medicine), Consultant (Departments of Ophthalmology and Pathology), Chief of Ophthalmic Pathology Division, Director of the KSU Post-Graduate Residency & Fellowship Training Programs in Ophthalmology, and finally the Assistant Director for External Accreditation Unit, Postgraduate Medical Education Department, King Saud University, Riyadh, Saudi Arabia. She is a member in many international organizations in her field: Eastern Ophthalmic Pathology, Canadian Ophthalmology Society, International Society of Ocular Oncology, Ocular Oncology Group in addition to the local Saudi Ophthalmology Society. She contributes to other institutions such as being a Research Consultant at King Fahad Medical City in Riyadh. She has been contributing as an invited speaker in many international symposia such as the World Congress of Ophthalmology and the European Society of Pathology Annual meetings. She has published more than 140 papers in reputed journals and has been serving as an editorial board member for several journals including: Saudi Journal of Ophthalmology, World Journal of Ophthalmology, SRL Ophthalmology, The Scientific Pages of Ophthalmology and Academicians’ Research Center (ARC) Journal of Ophthalmology AJOM. \nAREAS OF INTEREST: \tEducation, Medical Research, Ophthalmic Pathology and Ophthalmic Oncology.",institutionString:"King Saud University",institution:{name:"King Saud University",institutionURL:null,country:{name:"Saudi Arabia"}}},{id:"259323",title:"Dr.",name:"Ahmed",surname:"Alnagdy",slug:"ahmed-alnagdy",fullName:"Ahmed Alnagdy",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"266795",title:"Dr.",name:"Adnan",surname:"Saleem",slug:"adnan-saleem",fullName:"Adnan Saleem",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"279284",title:"Dr.",name:"Shaista",surname:"Zafar",slug:"shaista-zafar",fullName:"Shaista Zafar",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"279285",title:"Dr.",name:"Kashif",surname:"Rahim",slug:"kashif-rahim",fullName:"Kashif Rahim",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"279287",title:"Dr.",name:"Inayat Ullah",surname:"Khan",slug:"inayat-ullah-khan",fullName:"Inayat Ullah Khan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"279288",title:"MSc.",name:"Muhammad",surname:"Yasin",slug:"muhammad-yasin",fullName:"Muhammad Yasin",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null}]},generic:{page:{slug:"copyright-policy",title:"Copyright Policy",intro:"
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This problematic is particularly relevant with medical imaging data, where linear techniques are frequently unsuitable for capturing variations in anatomical structures. In many cases, there is enough structure in the data (CT, MRI, ultrasound) so a lower dimensional object can describe the degrees of freedom, such as in a manifold structure. Still, complex, multivariate distributions tend to demonstrate highly variable structural topologies that are impossible to capture with a single manifold learning algorithm. This chapter will present recent techniques developed in manifold theory for medical imaging analysis, to allow for statistical organ shape modeling, image segmentation and registration from the concept of navigation of manifolds, classification, as well as disease prediction models based on discriminant manifolds. We will present the theoretical basis of these works, with illustrative results on their applications from various organs and pathologies, including neurodegenerative diseases and spinal deformities.",book:{id:"7342",slug:"manifolds-ii-theory-and-applications",title:"Manifolds II",fullTitle:"Manifolds II - Theory and Applications"},signatures:"Samuel Kadoury",authors:null},{id:"62804",doi:"10.5772/intechopen.79383",title:"Recent Advances of Manifold Regularization",slug:"recent-advances-of-manifold-regularization",totalDownloads:1096,totalCrossrefCites:0,totalDimensionsCites:3,abstract:"Semi-supervised learning (SSL) that can make use of a small number of labeled data with a large number of unlabeled data to produce significant improvement in learning performance has been received considerable attention. Manifold regularization is one of the most popular works that exploits the geometry of the probability distribution that generates the data and incorporates them as regularization terms. There are many representative works of manifold regularization including Laplacian regularization (LapR), Hessian regularization (HesR) and p-Laplacian regularization (pLapR). Based on the manifold regularization framework, many extensions and applications have been reported. In the chapter, we review the LapR and HesR, and we introduce an approximation algorithm of graph p-Laplacian. We study several extensions of this framework for pairwise constraint, p-Laplacian learning, hypergraph learning, etc.",book:{id:"7342",slug:"manifolds-ii-theory-and-applications",title:"Manifolds II",fullTitle:"Manifolds II - Theory and Applications"},signatures:"Xueqi Ma and Weifeng Liu",authors:null},{id:"52886",doi:"10.5772/65903",title:"Head Pose Estimation via Manifold Learning",slug:"head-pose-estimation-via-manifold-learning",totalDownloads:1854,totalCrossrefCites:4,totalDimensionsCites:3,abstract:"For the last decades, manifold learning has shown its advantage of efficient non-linear dimensionality reduction in data analysis. Based on the assumption that informative and discriminative representation of the data lies on a low-dimensional smooth manifold which implicitly embedded in the original high-dimensional space, manifold learning aims to learn the low-dimensional representation following some geometrical protocols, such as preserving piecewise local structure of the original data. Manifold learning also plays an important role in the applications of computer vision, i.e., face image analysis. According to the observations that many face-related research is benefitted by the head pose estimation, and the continuous variation of head pose can be modelled and interpreted as a low-dimensional smooth manifold, we will focus on the head pose estimation via manifold learning in this chapter. Generally, head pose is hard to directly explore from the high-dimensional space interpreted as face images, which is, however, can be efficiently represented in low-dimensional manifold. Therefore, in this chapter, classical manifold learning algorithms are introduced and the corresponding application on head pose estimation are elaborated. Several extensions of manifold learning algorithms which are developed especially for head pose estimation are also discussed and compared.",book:{id:"5488",slug:"manifolds-current-research-areas",title:"Manifolds",fullTitle:"Manifolds - Current Research Areas"},signatures:"Chao Wang, Yuanhao Guo and Xubo Song",authors:[{id:"190308",title:"Dr.",name:"Chao",middleName:null,surname:"Wang",slug:"chao-wang",fullName:"Chao Wang"},{id:"190461",title:"Prof.",name:"Xubo",middleName:null,surname:"Song",slug:"xubo-song",fullName:"Xubo Song"},{id:"191562",title:"MSc.",name:"Yuanhao",middleName:null,surname:"Guo",slug:"yuanhao-guo",fullName:"Yuanhao Guo"}]},{id:"53713",doi:"10.5772/67008",title:"An Intrinsic Characterization of Bonnet Surfaces Based on a Closed Differential Ideal",slug:"an-intrinsic-characterization-of-bonnet-surfaces-based-on-a-closed-differential-ideal",totalDownloads:1497,totalCrossrefCites:2,totalDimensionsCites:2,abstract:"The structure equations for a two‐dimensional manifold are introduced and two results based on the Codazzi equations pertinent to the study of isometric surfaces are obtained from them. Important theorems pertaining to isometric surfaces are stated and a theorem due to Bonnet is obtained. A transformation for the connection forms is developed. It is proved that the angle of deformation must be harmonic, and that the differentials of many of the important variables generate a closed differential ideal. This implies that a coordinate system exists in which many of the variables satisfy particular ordinary differential equations, and these results can be used to characterize Bonnet surfaces.",book:{id:"5488",slug:"manifolds-current-research-areas",title:"Manifolds",fullTitle:"Manifolds - Current Research Areas"},signatures:"Paul Bracken",authors:[{id:"92883",title:"Prof.",name:"Paul",middleName:null,surname:"Bracken",slug:"paul-bracken",fullName:"Paul Bracken"}]},{id:"72257",doi:"10.5772/intechopen.92441",title:"Quasiconformal Reflections across Polygonal Lines",slug:"quasiconformal-reflections-across-polygonal-lines",totalDownloads:466,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"An important open problem in geometric complex analysis is to establish algorithms for explicit determination of the basic curvelinear and analytic functionals intrinsically connected with conformal and quasiconformal maps, such as their Teichmüller and Grunsky norms, Fredholm eigenvalues and the quasireflection coefficient. This has not been solved even for convex polygons. This case has intrinsic interest in view of the connection of polygons with the geometry of the universal Teichmüller space and approximation theory. This survey extends our previous survey of 2005 and presents the new approaches and recent essential progress in this field of geometric complex analysis, having various important applications. Another new topic concerns quasireflections across finite collections of quasiintervals.",book:{id:"8760",slug:"structure-topology-and-symplectic-geometry",title:"Structure Topology and Symplectic Geometry",fullTitle:"Structure Topology and Symplectic Geometry"},signatures:"Samuel L. Krushkal",authors:[{id:"316576",title:"Prof.",name:"Samuel",middleName:null,surname:"Krushkal",slug:"samuel-krushkal",fullName:"Samuel Krushkal"}]}],mostDownloadedChaptersLast30Days:[{id:"73123",title:"Some Applications of Clifford Algebra in Geometry",slug:"some-applications-of-clifford-algebra-in-geometry",totalDownloads:828,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"In this chapter, we provide some enlightening examples of the application of Clifford algebra in geometry, which show the concise representation, simple calculation, and profound insight of this algebra. The definition of Clifford algebra implies geometric concepts such as vector, length, angle, area, and volume and unifies the calculus of scalar, spinor, vector, and tensor, so that it is able to naturally describe all variables and calculus in geometry and physics. Clifford algebra unifies and generalizes real number, complex, quaternion, and vector algebra and converts complicated relations and operations into intuitive matrix algebra independent of coordinate systems. By localizing the basis or frame of space-time and introducing differential and connection operators, Clifford algebra also contains Riemann geometry. Clifford algebra provides a unified, standard, elegant, and open language and tools for numerous complicated mathematical and physical theories. Clifford algebra calculus is an arithmetic-like operation that can be well understood by everyone. This feature is very useful for teaching purposes, and popularizing Clifford algebra in high schools and universities will greatly improve the efficiency of students to learn fundamental knowledge of mathematics and physics. So, Clifford algebra can be expected to complete a new big synthesis of scientific knowledge.",book:{id:"8760",slug:"structure-topology-and-symplectic-geometry",title:"Structure Topology and Symplectic Geometry",fullTitle:"Structure Topology and Symplectic Geometry"},signatures:"Ying-Qiu Gu",authors:[{id:"314607",title:"Dr.",name:"Ying-Qiu",middleName:null,surname:"Gu",slug:"ying-qiu-gu",fullName:"Ying-Qiu Gu"}]},{id:"52596",title:"Symplectic Manifolds: Gromov-Witten Invariants on Symplectic and Almost Contact Metric Manifolds",slug:"symplectic-manifolds-gromov-witten-invariants-on-symplectic-and-almost-contact-metric-manifolds",totalDownloads:1520,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"In this chapter, we introduce Gromov-Witten invariant, quantum cohomology, Gromov-Witten potential, and Floer cohomology on symplectic manifolds, and in connection with these, we describe Gromov-Witten type invariant, quantum type cohomology, Gromov-Witten type potential and Floer type cohomology on almost contact metric manifolds. On the product of a symplectic manifold and an almost contact metric manifold, we induce some relations between Gromov-Witten type invariant and quantum cohomology and quantum type invariant. We show that the quantum type cohomology is isomorphic to the Floer type cohomology.",book:{id:"5488",slug:"manifolds-current-research-areas",title:"Manifolds",fullTitle:"Manifolds - Current Research Areas"},signatures:"Yong Seung Cho",authors:[{id:"62522",title:"Prof.",name:"Yong Seung",middleName:null,surname:"Cho",slug:"yong-seung-cho",fullName:"Yong Seung Cho"}]},{id:"62804",title:"Recent Advances of Manifold Regularization",slug:"recent-advances-of-manifold-regularization",totalDownloads:1096,totalCrossrefCites:0,totalDimensionsCites:3,abstract:"Semi-supervised learning (SSL) that can make use of a small number of labeled data with a large number of unlabeled data to produce significant improvement in learning performance has been received considerable attention. Manifold regularization is one of the most popular works that exploits the geometry of the probability distribution that generates the data and incorporates them as regularization terms. There are many representative works of manifold regularization including Laplacian regularization (LapR), Hessian regularization (HesR) and p-Laplacian regularization (pLapR). Based on the manifold regularization framework, many extensions and applications have been reported. In the chapter, we review the LapR and HesR, and we introduce an approximation algorithm of graph p-Laplacian. We study several extensions of this framework for pairwise constraint, p-Laplacian learning, hypergraph learning, etc.",book:{id:"7342",slug:"manifolds-ii-theory-and-applications",title:"Manifolds II",fullTitle:"Manifolds II - Theory and Applications"},signatures:"Xueqi Ma and Weifeng Liu",authors:null},{id:"79892",title:"βI-Compactness, βI*-Hyperconnectedness and βI-Separatedness in Ideal Topological Spaces",slug:"-em-em-sub-em-i-em-sub-compactness-em-em-sub-em-i-em-sub-hyperconnectedness-and-em-em-sub-em-i-em-su",totalDownloads:76,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Let XτI be an ideal topological space. A subset A of X is said to be β-open if A⊆clintclA, and it is said to be βI-open if there is a set O∈τ with the property 1 O−A∈I and 2 A−clintclO∈I. The set A is called βI-compact if every cover of A by βI-open sets has a finite sub-cover. The set A is said to be cβI-compact, if every cover Oλ:λ∈Λ of A by β-open sets, Λ has a finite subset Λ0 such that A−∪Oλ:λ∈Λ0∈I. The set A is said to be countably βI-compact if every countable cover of A by βI-open sets has a finite sub-cover. An ideal topological space XτI is said to be βI∗-hyperconnected if X−cl∗A∈I for every non-empty βI-open subset A of X. Two subsets A and B of X is said to be βI-separated if clβIA∩B=∅=A∩clβB. Moreover, A is called a βI-connected set if it can’t be written as a union of two βI-separated subsets. An ideal topological space XτI is called βI-connected space if X is βI-connected. In this article, we give some important properties of βI-open sets, βI-compact spaces, cβI-compact spaces, βI∗-hyperconnected spaces, and βI-connected spaces.",book:{id:"10677",slug:"advanced-topics-of-topology",title:"Advanced Topics of Topology",fullTitle:"Advanced Topics of Topology"},signatures:"Glaisa T. Catalan, Michael P. Baldado Jr and Roberto N. Padua",authors:[{id:"425714",title:"Prof.",name:"Michael",middleName:null,surname:"Baldado",slug:"michael-baldado",fullName:"Michael Baldado"},{id:"438024",title:"Dr.",name:"Glaisa",middleName:"Tinguha",surname:"Catalan",slug:"glaisa-catalan",fullName:"Glaisa Catalan"},{id:"486473",title:"Dr.",name:"Roberto N.",middleName:null,surname:"Padua",slug:"roberto-n.-padua",fullName:"Roberto N. Padua"}]},{id:"53552",title:"Sub-Manifolds of a Riemannian Manifold",slug:"sub-manifolds-of-a-riemannian-manifold",totalDownloads:1749,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"In this chapter, we introduce the theory of sub-manifolds of a Riemannian manifold. The fundamental notations are given. The theory of sub-manifolds of an almost Riemannian product manifold is one of the most interesting topics in differential geometry. According to the behaviour of the tangent bundle of a sub-manifold, with respect to the action of almost Riemannian product structure of the ambient manifolds, we have three typical classes of sub-manifolds such as invariant sub-manifolds, anti-invariant sub-manifolds and semi-invariant sub-manifolds. In addition, slant, semi-slant and pseudo-slant sub-manifolds are introduced by many geometers.",book:{id:"5488",slug:"manifolds-current-research-areas",title:"Manifolds",fullTitle:"Manifolds - Current Research Areas"},signatures:"Mehmet Atçeken, Ümit Yıldırım and Süleyman Dirik",authors:[{id:"191326",title:"Prof.",name:"Mehmet",middleName:null,surname:"Atceken",slug:"mehmet-atceken",fullName:"Mehmet Atceken"},{id:"196148",title:"Dr.",name:"Umit",middleName:null,surname:"Yildirim",slug:"umit-yildirim",fullName:"Umit Yildirim"}]}],onlineFirstChaptersFilter:{topicId:"165",limit:6,offset:0},onlineFirstChaptersCollection:[],onlineFirstChaptersTotal:0},preDownload:{success:null,errors:{}},subscriptionForm:{success:null,errors:{}},aboutIntechopen:{},privacyPolicy:{},peerReviewing:{},howOpenAccessPublishingWithIntechopenWorks:{},sponsorshipBooks:{sponsorshipBooks:[],offset:8,limit:8,total:0},allSeries:{pteSeriesList:[{id:"14",title:"Artificial Intelligence",numberOfPublishedBooks:9,numberOfPublishedChapters:90,numberOfOpenTopics:6,numberOfUpcomingTopics:0,issn:"2633-1403",doi:"10.5772/intechopen.79920",isOpenForSubmission:!0},{id:"7",title:"Biomedical Engineering",numberOfPublishedBooks:12,numberOfPublishedChapters:107,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2631-5343",doi:"10.5772/intechopen.71985",isOpenForSubmission:!0}],lsSeriesList:[{id:"11",title:"Biochemistry",numberOfPublishedBooks:33,numberOfPublishedChapters:330,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2632-0983",doi:"10.5772/intechopen.72877",isOpenForSubmission:!0},{id:"25",title:"Environmental Sciences",numberOfPublishedBooks:1,numberOfPublishedChapters:19,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2754-6713",doi:"10.5772/intechopen.100362",isOpenForSubmission:!0},{id:"10",title:"Physiology",numberOfPublishedBooks:14,numberOfPublishedChapters:145,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-8261",doi:"10.5772/intechopen.72796",isOpenForSubmission:!0}],hsSeriesList:[{id:"3",title:"Dentistry",numberOfPublishedBooks:9,numberOfPublishedChapters:139,numberOfOpenTopics:2,numberOfUpcomingTopics:0,issn:"2631-6218",doi:"10.5772/intechopen.71199",isOpenForSubmission:!0},{id:"6",title:"Infectious Diseases",numberOfPublishedBooks:13,numberOfPublishedChapters:122,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-6188",doi:"10.5772/intechopen.71852",isOpenForSubmission:!0},{id:"13",title:"Veterinary Medicine and Science",numberOfPublishedBooks:11,numberOfPublishedChapters:112,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2632-0517",doi:"10.5772/intechopen.73681",isOpenForSubmission:!0}],sshSeriesList:[{id:"22",title:"Business, Management and Economics",numberOfPublishedBooks:1,numberOfPublishedChapters:21,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2753-894X",doi:"10.5772/intechopen.100359",isOpenForSubmission:!0},{id:"23",title:"Education and Human Development",numberOfPublishedBooks:0,numberOfPublishedChapters:10,numberOfOpenTopics:1,numberOfUpcomingTopics:1,issn:null,doi:"10.5772/intechopen.100360",isOpenForSubmission:!0},{id:"24",title:"Sustainable Development",numberOfPublishedBooks:1,numberOfPublishedChapters:19,numberOfOpenTopics:5,numberOfUpcomingTopics:0,issn:"2753-6580",doi:"10.5772/intechopen.100361",isOpenForSubmission:!0}],testimonialsList:[{id:"13",text:"The collaboration with and support of the technical staff of IntechOpen is fantastic. The whole process of submitting an article and editing of the submitted article goes extremely smooth and fast, the number of reads and downloads of chapters is high, and the contributions are also frequently cited.",author:{id:"55578",name:"Antonio",surname:"Jurado-Navas",institutionString:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRisIQAS/Profile_Picture_1626166543950",slug:"antonio-jurado-navas",institution:{id:"720",name:"University of Malaga",country:{id:null,name:"Spain"}}}},{id:"6",text:"It is great to work with the IntechOpen to produce a worthwhile collection of research that also becomes a great educational resource and guide for future research endeavors.",author:{id:"259298",name:"Edward",surname:"Narayan",institutionString:null,profilePictureURL:"https://mts.intechopen.com/storage/users/259298/images/system/259298.jpeg",slug:"edward-narayan",institution:{id:"3",name:"University of Queensland",country:{id:null,name:"Australia"}}}}]},series:{item:{id:"24",title:"Sustainable Development",doi:"10.5772/intechopen.100361",issn:"2753-6580",scope:"
\r\n\tTransforming our World: the 2030 Agenda for Sustainable Development endorsed by United Nations and 193 Member States, came into effect on Jan 1, 2016, to guide decision making and actions to the year 2030 and beyond. Central to this Agenda are 17 Goals, 169 associated targets and over 230 indicators that are reviewed annually. The vision envisaged in the implementation of the SDGs is centered on the five Ps: People, Planet, Prosperity, Peace and Partnership. This call for renewed focused efforts ensure we have a safe and healthy planet for current and future generations.
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\r\n\tThis Series focuses on covering research and applied research involving the five Ps through the following topics:
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\r\n\t1. Sustainable Economy and Fair Society that relates to SDG 1 on No Poverty, SDG 2 on Zero Hunger, SDG 8 on Decent Work and Economic Growth, SDG 10 on Reduced Inequalities, SDG 12 on Responsible Consumption and Production, and SDG 17 Partnership for the Goals
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\r\n\t2. Health and Wellbeing focusing on SDG 3 on Good Health and Wellbeing and SDG 6 on Clean Water and Sanitation
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\r\n\t3. Inclusivity and Social Equality involving SDG 4 on Quality Education, SDG 5 on Gender Equality, and SDG 16 on Peace, Justice and Strong Institutions
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\r\n\t4. Climate Change and Environmental Sustainability comprising SDG 13 on Climate Action, SDG 14 on Life Below Water, and SDG 15 on Life on Land
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\r\n\t5. Urban Planning and Environmental Management embracing SDG 7 on Affordable Clean Energy, SDG 9 on Industry, Innovation and Infrastructure, and SDG 11 on Sustainable Cities and Communities.
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\r\n
\r\n\tThe series also seeks to support the use of cross cutting SDGs, as many of the goals listed above, targets and indicators are all interconnected to impact our lives and the decisions we make on a daily basis, making them impossible to tie to a single topic.
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Radiotherapy and Nuclear Medicine Technology has always been my aspiration and my life. As years passed I accumulated a tremendous amount of skills and knowledge in Radiotherapy and Nuclear Medicine, Conventional Radiology, Radiation Protection, Bioinformatics Technology, PACS, Image processing, clinically and lecturing that will enable me to provide a valuable service to the community as a Researcher and Consultant in this field. My method of translating this into day to day in clinical practice is non-exhaustible and my habit of exchanging knowledge and expertise with others in those fields is the code and secret of success.",institutionString:null,institution:{name:"Majmaah University",country:{name:"Saudi Arabia"}}},{id:"313277",title:"Dr.",name:"Bartłomiej",middleName:null,surname:"Płaczek",slug:"bartlomiej-placzek",fullName:"Bartłomiej Płaczek",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/313277/images/system/313277.jpg",biography:"Bartłomiej Płaczek, MSc (2002), Ph.D. (2005), Habilitation (2016), is a professor at the University of Silesia, Institute of Computer Science, Poland, and an expert from the National Centre for Research and Development. His research interests include sensor networks, smart sensors, intelligent systems, and image processing with applications in healthcare and medicine. He is the author or co-author of more than seventy papers in peer-reviewed journals and conferences as well as the co-author of several books. He serves as a reviewer for many scientific journals, international conferences, and research foundations. Since 2010, Dr. Placzek has been a reviewer of grants and projects (including EU projects) in the field of information technologies.",institutionString:"University of Silesia",institution:{name:"University of Silesia",country:{name:"Poland"}}},{id:"35000",title:"Prof.",name:"Ulrich H.P",middleName:"H.P.",surname:"Fischer",slug:"ulrich-h.p-fischer",fullName:"Ulrich H.P Fischer",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/35000/images/3052_n.jpg",biography:"Academic and Professional Background\nUlrich H. P. has Diploma and PhD degrees in Physics from the Free University Berlin, Germany. He has been working on research positions in the Heinrich-Hertz-Institute in Germany. Several international research projects has been performed with European partners from France, Netherlands, Norway and the UK. He is currently Professor of Communications Systems at the Harz University of Applied Sciences, Germany.\n\nPublications and Publishing\nHe has edited one book, a special interest book about ‘Optoelectronic Packaging’ (VDE, Berlin, Germany), and has published over 100 papers and is owner of several international patents for WDM over POF key elements.\n\nKey Research and Consulting Interests\nUlrich’s research activity has always been related to Spectroscopy and Optical Communications Technology. Specific current interests include the validation of complex instruments, and the application of VR technology to the development and testing of measurement systems. He has been reviewer for several publications of the Optical Society of America\\'s including Photonics Technology Letters and Applied Optics.\n\nPersonal Interests\nThese include motor cycling in a very relaxed manner and performing martial arts.",institutionString:null,institution:{name:"Charité",country:{name:"Germany"}}},{id:"341622",title:"Ph.D.",name:"Eduardo",middleName:null,surname:"Rojas Alvarez",slug:"eduardo-rojas-alvarez",fullName:"Eduardo Rojas Alvarez",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/341622/images/15892_n.jpg",biography:null,institutionString:null,institution:{name:"University of Cuenca",country:{name:"Ecuador"}}},{id:"215610",title:"Prof.",name:"Muhammad",middleName:null,surname:"Sarfraz",slug:"muhammad-sarfraz",fullName:"Muhammad Sarfraz",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/215610/images/system/215610.jpeg",biography:"Muhammad Sarfraz is a professor in the Department of Information Science, Kuwait University. His research interests include computer graphics, computer vision, image processing, machine learning, pattern recognition, soft computing, data science, intelligent systems, information technology, and information systems. Prof. Sarfraz has been a keynote/invited speaker on various platforms around the globe. He has advised various students for their MSc and Ph.D. theses. He has published more than 400 publications as books, journal articles, and conference papers. He is a member of various professional societies and a chair and member of the International Advisory Committees and Organizing Committees of various international conferences. Prof. Sarfraz is also an editor-in-chief and editor of various international journals.",institutionString:"Kuwait University",institution:{name:"Kuwait University",country:{name:"Kuwait"}}},{id:"32650",title:"Prof.",name:"Lukas",middleName:"Willem",surname:"Snyman",slug:"lukas-snyman",fullName:"Lukas Snyman",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/32650/images/4136_n.jpg",biography:"Lukas Willem Snyman received his basic education at primary and high schools in South Africa, Eastern Cape. He enrolled at today's Nelson Metropolitan University and graduated from this university with a BSc in Physics and Mathematics, B.Sc Honors in Physics, MSc in Semiconductor Physics, and a Ph.D. in Semiconductor Physics in 1987. After his studies, he chose an academic career and devoted his energy to the teaching of physics to first, second, and third-year students. After positions as a lecturer at the University of Port Elizabeth, he accepted a position as Associate Professor at the University of Pretoria, South Africa.\r\n\r\nIn 1992, he motivates the concept of 'television and computer-based education” as means to reach large student numbers with only the best of teaching expertise and publishes an article on the concept in the SA Journal of Higher Education of 1993 (and later in 2003). The University of Pretoria subsequently approved a series of test projects on the concept with outreach to Mamelodi and Eerste Rust in 1993. In 1994, the University established a 'Unit for Telematic Education ' as a support section for multiple faculties at the University of Pretoria. In subsequent years, the concept of 'telematic education” subsequently becomes well established in academic circles in South Africa, grew in popularity, and is adopted by many universities and colleges throughout South Africa as a medium of enhancing education and training, as a method to reaching out to far out communities, and as a means to enhance study from the home environment.\r\n\r\nProfessor Snyman in subsequent years pursued research in semiconductor physics, semiconductor devices, microelectronics, and optoelectronics.\r\n\r\nIn 2000 he joined the TUT as a full professor. Here served for a period as head of the Department of Electronic Engineering. Here he makes contributions to solar energy development, microwave and optoelectronic device development, silicon photonics, as well as contributions to new mobile telecommunication systems and network planning in SA.\r\n\r\nCurrently, he teaches electronics and telecommunications at the TUT to audiences ranging from first-year students to Ph.D. level.\r\n\r\nFor his research in the field of 'Silicon Photonics” since 1990, he has published (as author and co-author) about thirty internationally reviewed articles in scientific journals, contributed to more than forty international conferences, about 25 South African provisional patents (as inventor and co-inventor), 8 PCT international patent applications until now. Of these, two USA patents applications, two European Patents, two Korean patents, and ten SA patents have been granted. A further 4 USA patents, 5 European patents, 3 Korean patents, 3 Chinese patents, and 3 Japanese patents are currently under consideration.\r\n\r\nRecently he has also published an extensive scholarly chapter in an internet open access book on 'Integrating Microphotonic Systems and MOEMS into standard Silicon CMOS Integrated circuitry”.\r\n\r\nFurthermore, Professor Snyman recently steered a new initiative at the TUT by introducing a 'Laboratory for Innovative Electronic Systems ' at the Department of Electrical Engineering. The model of this laboratory or center is to primarily combine outputs as achieved by high-level research with lower-level system development and entrepreneurship in a technical university environment. Students are allocated to projects at different levels with PhDs and Master students allocated to the generation of new knowledge and new technologies, while students at the diploma and Baccalaureus level are allocated to electronic systems development with a direct and a near application for application in industry or the commercial and public sectors in South Africa.\r\n\r\nProfessor Snyman received the WIRSAM Award of 1983 and the WIRSAM Award in 1985 in South Africa for best research papers by a young scientist at two international conferences on electron microscopy in South Africa. He subsequently received the SA Microelectronics Award for the best dissertation emanating from studies executed at a South African university in the field of Physics and Microelectronics in South Africa in 1987. In October of 2011, Professor Snyman received the prestigious Institutional Award for 'Innovator of the Year” for 2010 at the Tshwane University of Technology, South Africa. This award was based on the number of patents recognized and granted by local and international institutions as well as for his contributions concerning innovation at the TUT.",institutionString:null,institution:{name:"University of South Africa",country:{name:"South Africa"}}},{id:"317279",title:"Mr.",name:"Ali",middleName:"Usama",surname:"Syed",slug:"ali-syed",fullName:"Ali Syed",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/317279/images/16024_n.png",biography:"A creative, talented, and innovative young professional who is dedicated, well organized, and capable research fellow with two years of experience in graduate-level research, published in engineering journals and book, with related expertise in Bio-robotics, equally passionate about the aesthetics of the mechanical and electronic system, obtained expertise in the use of MS Office, MATLAB, SolidWorks, LabVIEW, Proteus, Fusion 360, having a grasp on python, C++ and assembly language, possess proven ability in acquiring research grants, previous appointments with social and educational societies with experience in administration, current affiliations with IEEE and Web of Science, a confident presenter at conferences and teacher in classrooms, able to explain complex information to audiences of all levels.",institutionString:null,institution:{name:"Air University",country:{name:"Pakistan"}}},{id:"75526",title:"Ph.D.",name:"Zihni Onur",middleName:null,surname:"Uygun",slug:"zihni-onur-uygun",fullName:"Zihni Onur Uygun",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/75526/images/12_n.jpg",biography:"My undergraduate education and my Master of Science educations at Ege University and at Çanakkale Onsekiz Mart University have given me a firm foundation in Biochemistry, Analytical Chemistry, Biosensors, Bioelectronics, Physical Chemistry and Medicine. After obtaining my degree as a MSc in analytical chemistry, I started working as a research assistant in Ege University Medical Faculty in 2014. In parallel, I enrolled to the MSc program at the Department of Medical Biochemistry at Ege University to gain deeper knowledge on medical and biochemical sciences as well as clinical chemistry in 2014. In my PhD I deeply researched on biosensors and bioelectronics and finished in 2020. Now I have eleven SCI-Expanded Index published papers, 6 international book chapters, referee assignments for different SCIE journals, one international patent pending, several international awards, projects and bursaries. In parallel to my research assistant position at Ege University Medical Faculty, Department of Medical Biochemistry, in April 2016, I also founded a Start-Up Company (Denosens Biotechnology LTD) by the support of The Scientific and Technological Research Council of Turkey. Currently, I am also working as a CEO in Denosens Biotechnology. The main purposes of the company, which carries out R&D as a research center, are to develop new generation biosensors and sensors for both point-of-care diagnostics; such as glucose, lactate, cholesterol and cancer biomarker detections. My specific experimental and instrumental skills are Biochemistry, Biosensor, Analytical Chemistry, Electrochemistry, Mobile phone based point-of-care diagnostic device, POCTs and Patient interface designs, HPLC, Tandem Mass Spectrometry, Spectrophotometry, ELISA.",institutionString:null,institution:{name:"Ege University",country:{name:"Turkey"}}},{id:"267434",title:"Dr.",name:"Rohit",middleName:null,surname:"Raja",slug:"rohit-raja",fullName:"Rohit Raja",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/267434/images/system/267434.jpg",biography:"Dr. Rohit Raja received Ph.D. in Computer Science and Engineering from Dr. CVRAMAN University in 2016. His main research interest includes Face recognition and Identification, Digital Image Processing, Signal Processing, and Networking. Presently he is working as Associate Professor in IT Department, Guru Ghasidas Vishwavidyalaya (A Central University), Bilaspur (CG), India. He has authored several Journal and Conference Papers. He has good Academics & Research experience in various areas of CSE and IT. He has filed and successfully published 27 Patents. He has received many time invitations to be a Guest at IEEE Conferences. He has published 100 research papers in various International/National Journals (including IEEE, Springer, etc.) and Proceedings of the reputed International/ National Conferences (including Springer and IEEE). He has been nominated to the board of editors/reviewers of many peer-reviewed and refereed Journals (including IEEE, Springer).",institutionString:"Guru Ghasidas Vishwavidyalaya",institution:{name:"Guru Ghasidas Vishwavidyalaya",country:{name:"India"}}},{id:"246502",title:"Dr.",name:"Jaya T.",middleName:"T",surname:"Varkey",slug:"jaya-t.-varkey",fullName:"Jaya T. Varkey",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/246502/images/11160_n.jpg",biography:"Jaya T. Varkey, PhD, graduated with a degree in Chemistry from Cochin University of Science and Technology, Kerala, India. She obtained a PhD in Chemistry from the School of Chemical Sciences, Mahatma Gandhi University, Kerala, India, and completed a post-doctoral fellowship at the University of Minnesota, USA. She is a research guide at Mahatma Gandhi University and Associate Professor in Chemistry, St. Teresa’s College, Kochi, Kerala, India.\nDr. Varkey received a National Young Scientist award from the Indian Science Congress (1995), a UGC Research award (2016–2018), an Indian National Science Academy (INSA) Visiting Scientist award (2018–2019), and a Best Innovative Faculty award from the All India Association for Christian Higher Education (AIACHE) (2019). She Hashas received the Sr. Mary Cecil prize for best research paper three times. She was also awarded a start-up to develop a tea bag water filter. \nDr. Varkey has published two international books and twenty-seven international journal publications. She is an editorial board member for five international journals.",institutionString:"St. Teresa’s College",institution:null},{id:"250668",title:"Dr.",name:"Ali",middleName:null,surname:"Nabipour Chakoli",slug:"ali-nabipour-chakoli",fullName:"Ali Nabipour Chakoli",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/250668/images/system/250668.jpg",biography:"Academic Qualification:\r\n•\tPhD in Materials Physics and Chemistry, From: Sep. 2006, to: Sep. 2010, School of Materials Science and Engineering, Harbin Institute of Technology, Thesis: Structure and Shape Memory Effect of Functionalized MWCNTs/poly (L-lactide-co-ε-caprolactone) Nanocomposites. Supervisor: Prof. Wei Cai,\r\n•\tM.Sc in Applied Physics, From: 1996, to: 1998, Faculty of Physics & Nuclear Science, Amirkabir Uni. of Technology, Tehran, Iran, Thesis: Determination of Boron in Micro alloy Steels with solid state nuclear track detectors by neutron induced auto radiography, Supervisors: Dr. M. Hosseini Ashrafi and Dr. A. Hosseini.\r\n•\tB.Sc. in Applied Physics, From: 1991, to: 1996, Faculty of Physics & Nuclear Science, Amirkabir Uni. of Technology, Tehran, Iran, Thesis: Design of shielding for Am-Be neutron sources for In Vivo neutron activation analysis, Supervisor: Dr. M. Hosseini Ashrafi.\r\n\r\nResearch Experiences:\r\n1.\tNanomaterials, Carbon Nanotubes, Graphene: Synthesis, Functionalization and Characterization,\r\n2.\tMWCNTs/Polymer Composites: Fabrication and Characterization, \r\n3.\tShape Memory Polymers, Biodegradable Polymers, ORC, Collagen,\r\n4.\tMaterials Analysis and Characterizations: TEM, SEM, XPS, FT-IR, Raman, DSC, DMA, TGA, XRD, GPC, Fluoroscopy, \r\n5.\tInteraction of Radiation with Mater, Nuclear Safety and Security, NDT(RT),\r\n6.\tRadiation Detectors, Calibration (SSDL),\r\n7.\tCompleted IAEA e-learning Courses:\r\nNuclear Security (15 Modules),\r\nNuclear Safety:\r\nTSA 2: Regulatory Protection in Occupational Exposure,\r\nTips & Tricks: Radiation Protection in Radiography,\r\nSafety and Quality in Radiotherapy,\r\nCourse on Sealed Radioactive Sources,\r\nCourse on Fundamentals of Environmental Remediation,\r\nCourse on Planning for Environmental Remediation,\r\nKnowledge Management Orientation Course,\r\nFood Irradiation - Technology, Applications and Good Practices,\r\nEmployment:\r\nFrom 2010 to now: Academic staff, Nuclear Science and Technology Research Institute, Kargar Shomali, Tehran, Iran, P.O. Box: 14395-836.\r\nFrom 1997 to 2006: Expert of Materials Analysis and Characterization. Research Center of Agriculture and Medicine. Rajaeeshahr, Karaj, Iran, P. O. Box: 31585-498.",institutionString:"Atomic Energy Organization of Iran",institution:{name:"Atomic Energy Organization of Iran",country:{name:"Iran"}}},{id:"248279",title:"Dr.",name:"Monika",middleName:"Elzbieta",surname:"Machoy",slug:"monika-machoy",fullName:"Monika Machoy",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/248279/images/system/248279.jpeg",biography:"Monika Elżbieta Machoy, MD, graduated with distinction from the Faculty of Medicine and Dentistry at the Pomeranian Medical University in 2009, defended her PhD thesis with summa cum laude in 2016 and is currently employed as a researcher at the Department of Orthodontics of the Pomeranian Medical University. She expanded her professional knowledge during a one-year scholarship program at the Ernst Moritz Arndt University in Greifswald, Germany and during a three-year internship at the Technical University in Dresden, Germany. She has been a speaker at numerous orthodontic conferences, among others, American Association of Orthodontics, European Orthodontic Symposium and numerous conferences of the Polish Orthodontic Society. She conducts research focusing on the effect of orthodontic treatment on dental and periodontal tissues and the causes of pain in orthodontic patients.",institutionString:"Pomeranian Medical University",institution:{name:"Pomeranian Medical University",country:{name:"Poland"}}},{id:"252743",title:"Prof.",name:"Aswini",middleName:"Kumar",surname:"Kar",slug:"aswini-kar",fullName:"Aswini Kar",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/252743/images/10381_n.jpg",biography:"uploaded in cv",institutionString:null,institution:{name:"KIIT University",country:{name:"India"}}},{id:"204256",title:"Dr.",name:"Anil",middleName:"Kumar",surname:"Kumar Sahu",slug:"anil-kumar-sahu",fullName:"Anil Kumar Sahu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/204256/images/14201_n.jpg",biography:"I have nearly 11 years of research and teaching experience. I have done my master degree from University Institute of Pharmacy, Pt. Ravi Shankar Shukla University, Raipur, Chhattisgarh India. I have published 16 review and research articles in international and national journals and published 4 chapters in IntechOpen, the world’s leading publisher of Open access books. I have presented many papers at national and international conferences. I have received research award from Indian Drug Manufacturers Association in year 2015. My research interest extends from novel lymphatic drug delivery systems, oral delivery system for herbal bioactive to formulation optimization.",institutionString:null,institution:{name:"Chhattisgarh Swami Vivekanand Technical University",country:{name:"India"}}},{id:"253468",title:"Dr.",name:"Mariusz",middleName:null,surname:"Marzec",slug:"mariusz-marzec",fullName:"Mariusz Marzec",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/253468/images/system/253468.png",biography:"An assistant professor at Department of Biomedical Computer Systems, at Institute of Computer Science, Silesian University in Katowice. Scientific interests: computer analysis and processing of images, biomedical images, databases and programming languages. He is an author and co-author of scientific publications covering analysis and processing of biomedical images and development of database systems.",institutionString:"University of Silesia",institution:{name:"University of Silesia",country:{name:"Poland"}}},{id:"212432",title:"Prof.",name:"Hadi",middleName:null,surname:"Mohammadi",slug:"hadi-mohammadi",fullName:"Hadi Mohammadi",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/212432/images/system/212432.jpeg",biography:"Dr. Hadi Mohammadi is a biomedical engineer with hands-on experience in the design and development of many engineering structures and medical devices through various projects that he has been involved in over the past twenty years. Dr. Mohammadi received his BSc. and MSc. degrees in Mechanical Engineering from Sharif University of Technology, Tehran, Iran, and his PhD. degree in Biomedical Engineering (biomaterials) from the University of Western Ontario. He was a postdoctoral trainee for almost four years at University of Calgary and Harvard Medical School. He is an industry innovator having created the technology to produce lifelike synthetic platforms that can be used for the simulation of almost all cardiovascular reconstructive surgeries. He’s been heavily involved in the design and development of cardiovascular devices and technology for the past 10 years. He is currently an Assistant Professor with the University of British Colombia, Canada.",institutionString:"University of British Columbia",institution:{name:"University of British Columbia",country:{name:"Canada"}}},{id:"254463",title:"Prof.",name:"Haisheng",middleName:null,surname:"Yang",slug:"haisheng-yang",fullName:"Haisheng Yang",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/254463/images/system/254463.jpeg",biography:"Haisheng Yang, Ph.D., Professor and Director of the Department of Biomedical Engineering, College of Life Science and Bioengineering, Beijing University of Technology. He received his Ph.D. degree in Mechanics/Biomechanics from Harbin Institute of Technology (jointly with University of California, Berkeley). Afterwards, he worked as a Postdoctoral Research Associate in the Purdue Musculoskeletal Biology and Mechanics Lab at the Department of Basic Medical Sciences, Purdue University, USA. He also conducted research in the Research Centre of Shriners Hospitals for Children-Canada at McGill University, Canada. Dr. Yang has over 10 years research experience in orthopaedic biomechanics and mechanobiology of bone adaptation and regeneration. He earned an award from Beijing Overseas Talents Aggregation program in 2017 and serves as Beijing Distinguished Professor.",institutionString:null,institution:{name:"Beijing University of Technology",country:{name:"China"}}},{id:"89721",title:"Dr.",name:"Mehmet",middleName:"Cuneyt",surname:"Ozmen",slug:"mehmet-ozmen",fullName:"Mehmet Ozmen",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/89721/images/7289_n.jpg",biography:null,institutionString:null,institution:{name:"Gazi University",country:{name:"Turkey"}}},{id:"265335",title:"Mr.",name:"Stefan",middleName:"Radnev",surname:"Stefanov",slug:"stefan-stefanov",fullName:"Stefan Stefanov",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/265335/images/7562_n.jpg",biography:null,institutionString:null,institution:{name:"Medical University Plovdiv",country:{name:"Bulgaria"}}},{id:"242893",title:"Ph.D. Student",name:"Joaquim",middleName:null,surname:"De Moura",slug:"joaquim-de-moura",fullName:"Joaquim De Moura",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/242893/images/7133_n.jpg",biography:"Joaquim de Moura received his degree in Computer Engineering in 2014 from the University of A Coruña (Spain). In 2016, he received his M.Sc degree in Computer Engineering from the same university. He is currently pursuing his Ph.D degree in Computer Science in a collaborative project between ophthalmology centers in Galicia and the University of A Coruña. His research interests include computer vision, machine learning algorithms and analysis and medical imaging processing of various kinds.",institutionString:null,institution:{name:"University of A Coruña",country:{name:"Spain"}}},{id:"294334",title:"B.Sc.",name:"Marc",middleName:null,surname:"Bruggeman",slug:"marc-bruggeman",fullName:"Marc Bruggeman",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/294334/images/8242_n.jpg",biography:"Chemical engineer graduate, with a passion for material science and specific interest in polymers - their near infinite applications intrigue me. \n\nI plan to continue my scientific career in the field of polymeric biomaterials as I am fascinated by intelligent, bioactive and biomimetic materials for use in both consumer and medical applications.",institutionString:null,institution:null},{id:"255757",title:"Dr.",name:"Igor",middleName:"Victorovich",surname:"Lakhno",slug:"igor-lakhno",fullName:"Igor Lakhno",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/255757/images/system/255757.jpg",biography:"Igor Victorovich Lakhno was born in 1971 in Kharkiv (Ukraine). \nMD – 1994, Kharkiv National Medical Univesity.\nOb&Gyn; – 1997, master courses in Kharkiv Medical Academy of Postgraduate Education.\nPh.D. – 1999, Kharkiv National Medical Univesity.\nDSC – 2019, PL Shupik National Academy of Postgraduate Education \nProfessor – 2021, Department of Obstetrics and Gynecology of VN Karazin Kharkiv National University\nHead of Department – 2021, Department of Perinatology, Obstetrics and gynecology of Kharkiv Medical Academy of Postgraduate Education\nIgor Lakhno has been graduated from international training courses on reproductive medicine and family planning held at Debrecen University (Hungary) in 1997. Since 1998 Lakhno Igor has worked as an associate professor in the department of obstetrics and gynecology of VN Karazin National University and an associate professor of the perinatology, obstetrics, and gynecology department of Kharkiv Medical Academy of Postgraduate Education. Since June 2019 he’s been a professor in the department of obstetrics and gynecology of VN Karazin National University and a professor of the perinatology, obstetrics, and gynecology department. He’s affiliated with Kharkiv Medical Academy of Postgraduate Education as a Head of Department from November 2021. Igor Lakhno has participated in several international projects on fetal non-invasive electrocardiography (with Dr. J. A. Behar (Technion), Prof. D. Hoyer (Jena University), and José Alejandro Díaz Méndez (National Institute of Astrophysics, Optics, and Electronics, Mexico). He’s an author of about 200 printed works and there are 31 of them in Scopus or Web of Science databases. Igor Lakhno is a member of the Editorial Board of Reproductive Health of Woman, Emergency Medicine, and Technology Transfer Innovative Solutions in Medicine (Estonia). He is a medical Editor of “Z turbotoyu pro zhinku”. Igor Lakhno is a reviewer of the Journal of Obstetrics and Gynaecology (Taylor and Francis), British Journal of Obstetrics and Gynecology (Wiley), Informatics in Medicine Unlocked (Elsevier), The Journal of Obstetrics and Gynecology Research (Wiley), Endocrine, Metabolic & Immune Disorders-Drug Targets (Bentham Open), The Open Biomedical Engineering Journal (Bentham Open), etc. He’s defended a dissertation for a DSc degree “Pre-eclampsia: prediction, prevention, and treatment”. Three years ago Igor Lakhno has participated in a training course on innovative technologies in medical education at Lublin Medical University (Poland). Lakhno Igor has participated as a speaker in several international conferences and congresses (International Conference on Biological Oscillations April 10th-14th 2016, Lancaster, UK, The 9th conference of the European Study Group on Cardiovascular Oscillations). His main scientific interests: are obstetrics, women’s health, fetal medicine, and cardiovascular medicine. \nIgor Lakhno is a consultant at Kharkiv municipal perinatal center. He’s graduated from training courses on endoscopy in gynecology. He has 28 years of practical experience in the field.",institutionString:null,institution:null},{id:"244950",title:"Dr.",name:"Salvatore",middleName:null,surname:"Di Lauro",slug:"salvatore-di-lauro",fullName:"Salvatore Di Lauro",position:null,profilePictureURL:"https://intech-files.s3.amazonaws.com/0030O00002bSF1HQAW/ProfilePicture%202021-12-20%2014%3A54%3A14.482",biography:"Name:\n\tSALVATORE DI LAURO\nAddress:\n\tHospital Clínico Universitario Valladolid\nAvda Ramón y Cajal 3\n47005, Valladolid\nSpain\nPhone number: \nFax\nE-mail:\n\t+34 983420000 ext 292\n+34 983420084\nsadilauro@live.it\nDate and place of Birth:\nID Number\nMedical Licence \nLanguages\t09-05-1985. Villaricca (Italy)\n\nY1281863H\n474707061\nItalian (native language)\nSpanish (read, written, spoken)\nEnglish (read, written, spoken)\nPortuguese (read, spoken)\nFrench (read)\n\t\t\nCurrent position (title and company)\tDate (Year)\nVitreo-Retinal consultant in ophthalmology. Hospital Clinico Universitario Valladolid. Sacyl. National Health System.\nVitreo-Retinal consultant in ophthalmology. Instituto Oftalmologico Recoletas. Red Hospitalaria Recoletas. Private practise.\t2017-today\n\n2019-today\n\t\n\t\nEducation (High school, university and postgraduate training > 3 months)\tDate (Year)\nDegree in Medicine and Surgery. University of Neaples 'Federico II”\nResident in Opthalmology. Hospital Clinico Universitario Valladolid\nMaster in Vitreo-Retina. IOBA. University of Valladolid\nFellow of the European Board of Ophthalmology. Paris\nMaster in Research in Ophthalmology. University of Valladolid\t2003-2009\n2012-2016\n2016-2017\n2016\n2012-2013\n\t\nEmployments (company and positions)\tDate (Year)\nResident in Ophthalmology. Hospital Clinico Universitario Valladolid. Sacyl.\nFellow in Vitreo-Retina. IOBA. University of Valladolid\nVitreo-Retinal consultant in ophthalmology. Hospital Clinico Universitario Valladolid. Sacyl. National Health System.\nVitreo-Retinal consultant in ophthalmology. Instituto Oftalmologico Recoletas. Red Hospitalaria Recoletas. \n\t2012-2016\n2016-2017\n2017-today\n\n2019-Today\n\n\n\t\nClinical Research Experience (tasks and role)\tDate (Year)\nAssociated investigator\n\n' FIS PI20/00740: DESARROLLO DE UNA CALCULADORA DE RIESGO DE\nAPARICION DE RETINOPATIA DIABETICA BASADA EN TECNICAS DE IMAGEN MULTIMODAL EN PACIENTES DIABETICOS TIPO 1. Grant by: Ministerio de Ciencia e Innovacion \n\n' (BIO/VA23/14) Estudio clínico multicéntrico y prospectivo para validar dos\nbiomarcadores ubicados en los genes p53 y MDM2 en la predicción de los resultados funcionales de la cirugía del desprendimiento de retina regmatógeno. Grant by: Gerencia Regional de Salud de la Junta de Castilla y León.\n' Estudio multicéntrico, aleatorizado, con enmascaramiento doble, en 2 grupos\nparalelos y de 52 semanas de duración para comparar la eficacia, seguridad e inmunogenicidad de SOK583A1 respecto a Eylea® en pacientes con degeneración macular neovascular asociada a la edad' (CSOK583A12301; N.EUDRA: 2019-004838-41; FASE III). Grant by Hexal AG\n\n' Estudio de fase III, aleatorizado, doble ciego, con grupos paralelos, multicéntrico para comparar la eficacia y la seguridad de QL1205 frente a Lucentis® en pacientes con degeneración macular neovascular asociada a la edad. (EUDRACT: 2018-004486-13). Grant by Qilu Pharmaceutical Co\n\n' Estudio NEUTON: Ensayo clinico en fase IV para evaluar la eficacia de aflibercept en pacientes Naive con Edema MacUlar secundario a Oclusion de Vena CenTral de la Retina (OVCR) en regimen de tratamientO iNdividualizado Treat and Extend (TAE)”, (2014-000975-21). Grant by Fundacion Retinaplus\n\n' Evaluación de la seguridad y bioactividad de anillos de tensión capsular en conejo. Proyecto Procusens. Grant by AJL, S.A.\n\n'Estudio epidemiológico, prospectivo, multicéntrico y abierto\\npara valorar la frecuencia de la conjuntivitis adenovírica diagnosticada mediante el test AdenoPlus®\\nTest en pacientes enfermos de conjuntivitis aguda”\\n. National, multicenter study. Grant by: NICOX.\n\nEuropean multicentric trial: 'Evaluation of clinical outcomes following the use of Systane Hydration in patients with dry eye”. Study Phase 4. Grant by: Alcon Labs'\n\nVLPs Injection and Activation in a Rabbit Model of Uveal Melanoma. Grant by Aura Bioscience\n\nUpdating and characterization of a rabbit model of uveal melanoma. Grant by Aura Bioscience\n\nEnsayo clínico en fase IV para evaluar las variantes genéticas de la vía del VEGF como biomarcadores de eficacia del tratamiento con aflibercept en pacientes con degeneración macular asociada a la edad (DMAE) neovascular. Estudio BIOIMAGE. IMO-AFLI-2013-01\n\nEstudio In-Eye:Ensayo clínico en fase IV, abierto, aleatorizado, de 2 brazos,\nmulticçentrico y de 12 meses de duración, para evaluar la eficacia y seguridad de un régimen de PRN flexible individualizado de 'esperar y extender' versus un régimen PRN según criterios de estabilización mediante evaluaciones mensuales de inyecciones intravítreas de ranibizumab 0,5 mg en pacientes naive con neovascularización coriodea secunaria a la degeneración macular relacionada con la edad. CP: CRFB002AES03T\n\nTREND: Estudio Fase IIIb multicéntrico, randomizado, de 12 meses de\nseguimiento con evaluador de la agudeza visual enmascarado, para evaluar la eficacia y la seguridad de ranibizumab 0.5mg en un régimen de tratar y extender comparado con un régimen mensual, en pacientes con degeneración macular neovascular asociada a la edad. CP: CRFB002A2411 Código Eudra CT:\n2013-002626-23\n\n\n\nPublications\t\n\n2021\n\n\n\n\n2015\n\n\n\n\n2021\n\n\n\n\n\n2021\n\n\n\n\n2015\n\n\n\n\n2015\n\n\n2014\n\n\n\n\n2015-16\n\n\n\n2015\n\n\n2014\n\n\n2014\n\n\n\n\n2014\n\n\n\n\n\n\n\n2014\n\nJose Carlos Pastor; Jimena Rojas; Salvador Pastor-Idoate; Salvatore Di Lauro; Lucia Gonzalez-Buendia; Santiago Delgado-Tirado. Proliferative vitreoretinopathy: A new concept of disease pathogenesis and practical\nconsequences. Progress in Retinal and Eye Research. 51, pp. 125 - 155. 03/2016. DOI: 10.1016/j.preteyeres.2015.07.005\n\n\nLabrador-Velandia S; Alonso-Alonso ML; Di Lauro S; García-Gutierrez MT; Srivastava GK; Pastor JC; Fernandez-Bueno I. Mesenchymal stem cells provide paracrine neuroprotective resources that delay degeneration of co-cultured organotypic neuroretinal cultures.Experimental Eye Research. 185, 17/05/2019. DOI: 10.1016/j.exer.2019.05.011\n\nSalvatore Di Lauro; Maria Teresa Garcia Gutierrez; Ivan Fernandez Bueno. Quantification of pigment epithelium-derived factor (PEDF) in an ex vivo coculture of retinal pigment epithelium cells and neuroretina.\nJournal of Allbiosolution. 2019. ISSN 2605-3535\n\nSonia Labrador Velandia; Salvatore Di Lauro; Alonso-Alonso ML; Tabera Bartolomé S; Srivastava GK; Pastor JC; Fernandez-Bueno I. Biocompatibility of intravitreal injection of human mesenchymal stem cells in immunocompetent rabbits. Graefe's archive for clinical and experimental ophthalmology. 256 - 1, pp. 125 - 134. 01/2018. DOI: 10.1007/s00417-017-3842-3\n\n\nSalvatore Di Lauro, David Rodriguez-Crespo, Manuel J Gayoso, Maria T Garcia-Gutierrez, J Carlos Pastor, Girish K Srivastava, Ivan Fernandez-Bueno. A novel coculture model of porcine central neuroretina explants and retinal pigment epithelium cells. Molecular Vision. 2016 - 22, pp. 243 - 253. 01/2016.\n\nSalvatore Di Lauro. Classifications for Proliferative Vitreoretinopathy ({PVR}): An Analysis of Their Use in Publications over the Last 15 Years. Journal of Ophthalmology. 2016, pp. 1 - 6. 01/2016. DOI: 10.1155/2016/7807596\n\nSalvatore Di Lauro; Rosa Maria Coco; Rosa Maria Sanabria; Enrique Rodriguez de la Rua; Jose Carlos Pastor. Loss of Visual Acuity after Successful Surgery for Macula-On Rhegmatogenous Retinal Detachment in a Prospective Multicentre Study. Journal of Ophthalmology. 2015:821864, 2015. DOI: 10.1155/2015/821864\n\nIvan Fernandez-Bueno; Salvatore Di Lauro; Ivan Alvarez; Jose Carlos Lopez; Maria Teresa Garcia-Gutierrez; Itziar Fernandez; Eva Larra; Jose Carlos Pastor. Safety and Biocompatibility of a New High-Density Polyethylene-Based\nSpherical Integrated Porous Orbital Implant: An Experimental Study in Rabbits. Journal of Ophthalmology. 2015:904096, 2015. DOI: 10.1155/2015/904096\n\nPastor JC; Pastor-Idoate S; Rodríguez-Hernandez I; Rojas J; Fernandez I; Gonzalez-Buendia L; Di Lauro S; Gonzalez-Sarmiento R. Genetics of PVR and RD. Ophthalmologica. 232 - Suppl 1, pp. 28 - 29. 2014\n\nRodriguez-Crespo D; Di Lauro S; Singh AK; Garcia-Gutierrez MT; Garrosa M; Pastor JC; Fernandez-Bueno I; Srivastava GK. Triple-layered mixed co-culture model of RPE cells with neuroretina for evaluating the neuroprotective effects of adipose-MSCs. Cell Tissue Res. 358 - 3, pp. 705 - 716. 2014.\nDOI: 10.1007/s00441-014-1987-5\n\nCarlo De Werra; Salvatore Condurro; Salvatore Tramontano; Mario Perone; Ivana Donzelli; Salvatore Di Lauro; Massimo Di Giuseppe; Rosa Di Micco; Annalisa Pascariello; Antonio Pastore; Giorgio Diamantis; Giuseppe Galloro. Hydatid disease of the liver: thirty years of surgical experience.Chirurgia italiana. 59 - 5, pp. 611 - 636.\n(Italia): 2007. ISSN 0009-4773\n\nChapters in books\n\t\n' Salvador Pastor Idoate; Salvatore Di Lauro; Jose Carlos Pastor Jimeno. PVR: Pathogenesis, Histopathology and Classification. Proliferative Vitreoretinopathy with Small Gauge Vitrectomy. Springer, 2018. ISBN 978-3-319-78445-8\nDOI: 10.1007/978-3-319-78446-5_2. \n\n' Salvatore Di Lauro; Maria Isabel Lopez Galvez. Quistes vítreos en una mujer joven. Problemas diagnósticos en patología retinocoroidea. Sociedad Española de Retina-Vitreo. 2018.\n\n' Salvatore Di Lauro; Salvador Pastor Idoate; Jose Carlos Pastor Jimeno. iOCT in PVR management. OCT Applications in Opthalmology. pp. 1 - 8. INTECH, 2018. DOI: 10.5772/intechopen.78774.\n\n' Rosa Coco Martin; Salvatore Di Lauro; Salvador Pastor Idoate; Jose Carlos Pastor. amponadores, manipuladores y tinciones en la cirugía del traumatismo ocular.Trauma Ocular. Ponencia de la SEO 2018..\n\n' LOPEZ GALVEZ; DI LAURO; CRESPO. OCT angiografia y complicaciones retinianas de la diabetes. PONENCIA SEO 2021, CAPITULO 20. (España): 2021.\n\n' Múltiples desprendimientos neurosensoriales bilaterales en paciente joven. Enfermedades Degenerativas De Retina Y Coroides. SERV 04/2016. \n' González-Buendía L; Di Lauro S; Pastor-Idoate S; Pastor Jimeno JC. Vitreorretinopatía proliferante (VRP) e inflamación: LA INFLAMACIÓN in «INMUNOMODULADORES Y ANTIINFLAMATORIOS: MÁS ALLÁ DE LOS CORTICOIDES. 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Possible contributions can address (but are not limited to) the following research topics: Bioinspired design and control of exoskeletons, orthoses, and prostheses; Experimental evaluation of the effect of assistive devices (e.g., influence on gait, balance, and neuromuscular system); Bioinspired technologies for rehabilitation, including clinical studies reporting evaluations; Application of neuromuscular and biomechanical models to the development of bioinspired technology.',annualVolume:11404,isOpenForSubmission:!0,coverUrl:"https://cdn.intechopen.com/series_topics/covers/8.jpg",editor:{id:"144937",title:"Prof.",name:"Adriano",middleName:"De Oliveira",surname:"Andrade",fullName:"Adriano Andrade",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRC8QQAW/Profile_Picture_1625219101815",institutionString:null,institution:{name:"Federal University of Uberlândia",institutionURL:null,country:{name:"Brazil"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"49517",title:"Prof.",name:"Hitoshi",middleName:null,surname:"Tsunashima",fullName:"Hitoshi Tsunashima",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002aYTP4QAO/Profile_Picture_1625819726528",institutionString:null,institution:{name:"Nihon University",institutionURL:null,country:{name:"Japan"}}},{id:"425354",title:"Dr.",name:"Marcus",middleName:"Fraga",surname:"Vieira",fullName:"Marcus Vieira",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00003BJSgIQAX/Profile_Picture_1627904687309",institutionString:null,institution:{name:"Universidade Federal de Goiás",institutionURL:null,country:{name:"Brazil"}}},{id:"196746",title:"Dr.",name:"Ramana",middleName:null,surname:"Vinjamuri",fullName:"Ramana Vinjamuri",profilePictureURL:"https://mts.intechopen.com/storage/users/196746/images/system/196746.jpeg",institutionString:"University of Maryland, Baltimore County",institution:{name:"University of Maryland, Baltimore County",institutionURL:null,country:{name:"United States of America"}}}]},{id:"9",title:"Biotechnology - Biosensors, Biomaterials and Tissue Engineering",keywords:"Biotechnology, Biosensors, Biomaterials, Tissue Engineering",scope:"The Biotechnology - Biosensors, Biomaterials and Tissue Engineering topic within the Biomedical Engineering Series aims to rapidly publish contributions on all aspects of biotechnology, biosensors, biomaterial and tissue engineering. We encourage the submission of manuscripts that provide novel and mechanistic insights that report significant advances in the fields. Topics can include but are not limited to: Biotechnology such as biotechnological products and process engineering; Biotechnologically relevant enzymes and proteins; Bioenergy and biofuels; Applied genetics and molecular biotechnology; Genomics, transcriptomics, proteomics; Applied microbial and cell physiology; Environmental biotechnology; Methods and protocols. Moreover, topics in biosensor technology, like sensors that incorporate enzymes, antibodies, nucleic acids, whole cells, tissues and organelles, and other biological or biologically inspired components will be considered, and topics exploring transducers, including those based on electrochemical and optical piezoelectric, thermal, magnetic, and micromechanical elements. Chapters exploring biomaterial approaches such as polymer synthesis and characterization, drug and gene vector design, biocompatibility, immunology and toxicology, and self-assembly at the nanoscale, are welcome. Finally, the tissue engineering subcategory will support topics such as the fundamentals of stem cells and progenitor cells and their proliferation, differentiation, bioreactors for three-dimensional culture and studies of phenotypic changes, stem and progenitor cells, both short and long term, ex vivo and in vivo implantation both in preclinical models and also in clinical trials.",annualVolume:11405,isOpenForSubmission:!0,coverUrl:"https://cdn.intechopen.com/series_topics/covers/9.jpg",editor:{id:"126286",title:"Dr.",name:"Luis",middleName:"Jesús",surname:"Villarreal-Gómez",fullName:"Luis Villarreal-Gómez",profilePictureURL:"https://mts.intechopen.com/storage/users/126286/images/system/126286.jpg",institutionString:null,institution:{name:"Autonomous University of Baja California",institutionURL:null,country:{name:"Mexico"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"35539",title:"Dr.",name:"Cecilia",middleName:null,surname:"Cristea",fullName:"Cecilia Cristea",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002aYQ65QAG/Profile_Picture_1621007741527",institutionString:null,institution:{name:"Iuliu Hațieganu University of Medicine and Pharmacy",institutionURL:null,country:{name:"Romania"}}},{id:"40735",title:"Dr.",name:"Gil",middleName:"Alberto Batista",surname:"Gonçalves",fullName:"Gil Gonçalves",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002aYRLGQA4/Profile_Picture_1628492612759",institutionString:null,institution:{name:"University of Aveiro",institutionURL:null,country:{name:"Portugal"}}},{id:"211725",title:"Associate Prof.",name:"Johann F.",middleName:null,surname:"Osma",fullName:"Johann F. 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