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Barely three months into the new year and we are happy to announce a monumental milestone reached - 150 million downloads.
\n\nThis achievement solidifies IntechOpen’s place as a pioneer in Open Access publishing and the home to some of the most relevant scientific research available through Open Access.
\n\nWe are so proud to have worked with so many bright minds throughout the years who have helped us spread knowledge through the power of Open Access and we look forward to continuing to support some of the greatest thinkers of our day.
\n\nThank you for making IntechOpen your place of learning, sharing, and discovery, and here’s to 150 million more!
\n\n\n\n\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:"7240",leadTitle:null,fullTitle:"Growing and Handling of Bacterial Cultures",title:"Growing and Handling of Bacterial Cultures",subtitle:null,reviewType:"peer-reviewed",abstract:"Growing and Handling of Bacterial Cultures is a collection of reviewed and relevant research chapters, offering a comprehensive overview of recent developments in the field of Life Sciences. The book comprises single chapters authored by various researchers and edited by an expert active in the field. All chapters are complete in itself but united under a common research study topic. This publication aims at providing a thorough overview of the latest research efforts by international authors on Growing and Handling of Bacterial Cultures, and open new possible research paths for further novel developments.",isbn:"978-1-83880-123-6",printIsbn:"978-1-78985-846-4",pdfIsbn:"978-1-83880-124-3",doi:"10.5772/intechopen.74273",price:119,priceEur:129,priceUsd:155,slug:"growing-and-handling-of-bacterial-cultures",numberOfPages:152,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"a76c3ef7718c0b72d0128817cdcbe6e3",bookSignature:"Madhusmita Mishra",publishedDate:"December 4th 2019",coverURL:"https://cdn.intechopen.com/books/images_new/7240.jpg",numberOfDownloads:10812,numberOfWosCitations:12,numberOfCrossrefCitations:20,numberOfCrossrefCitationsByBook:0,numberOfDimensionsCitations:37,numberOfDimensionsCitationsByBook:0,hasAltmetrics:1,numberOfTotalCitations:69,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"March 14th 2018",dateEndSecondStepPublish:"April 4th 2018",dateEndThirdStepPublish:"June 3rd 2018",dateEndFourthStepPublish:"August 22nd 2018",dateEndFifthStepPublish:"October 21st 2018",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"204267",title:"Dr.",name:"Madhusmita",middleName:null,surname:"Mishra",slug:"madhusmita-mishra",fullName:"Madhusmita Mishra",profilePictureURL:"https://mts.intechopen.com/storage/users/204267/images/6669_n.jpg",biography:"Dr. Madhusmita Mishra holds a PhD and has more than 7 years of experience in academic and industrial Research and Development. She has extensive experience in Biotechnology, Microbiology, Molecular Biology, Analytical Instrumentation and associated Data Stations, and Data Analysis. Her doctoral work covered both aerobic and anaerobic microbiology along with wide applications of molecular biology tools. As a postdoctoral fellow, she worked in field of development of microdevices for health diagnostics, a project funded by Grand Challenges Canada (GCC). Dr. Mishra has also worked as Analytical Researcher in one of the major oil companies, Shell Technology India Market Private Ltd. Her recent role as experimentalist at Shell involves project designing and implementation of analytical instrumentation for characterization of crude oil and its products.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"1",totalChapterViews:"0",totalEditedBooks:"1",institution:{name:"National Institute of Technology",institutionURL:null,country:{name:"Norway"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"409",title:"Bacteriology",slug:"biochemistry-genetics-and-molecular-biology-microbiology-bacteriology"}],chapters:[{id:"61794",title:"Geobacillus Bacteria: Potential Commercial Applications in Industry, Bioremediation, and Bioenergy Production",doi:"10.5772/intechopen.76053",slug:"-em-geobacillus-em-bacteria-potential-commercial-applications-in-industry-bioremediation-and-bioener",totalDownloads:1412,totalCrossrefCites:5,totalDimensionsCites:10,hasAltmetrics:0,abstract:"The genus Geobacillus is represented by obligately thermophilic bacteria able to grow in the temperature range of 35–75°C. They are modest bacteria isolated from various sources on routine media such as nutrient agar. Originally classified as representatives of Bacillus, the species of Geobacillus were established in 2001 as a new genus. However, sequence similarity between all species indicates that at least some species need to be reclassified at the genus level. In addition to 16S rRNA, housekeeping genes, 16S-23S rRNA gene internal transcribed spacer, and repetitive sequences can be used in classification and identification of thermophilic bacteria. The ability to survive and grow at high temperatures as well as utilization and synthesis of a wide range of compounds makes these bacteria and their products attractive for use in various spheres: food, paper, biotechnology industries, medicine, bioremediation, etc. A broad spectrum of applications arouses increased interest in the study of physiological and biochemical characteristics and triggers emergence of new usage areas for Geobacillus, such as bioenergy. The growing demand for energy leads to the development of alternative technologic options. Geobacillus species demonstrated the ability to generate or enhance productivity of important sources of bioenergy such as ethanol, isobutanol, 2,3-butanediol, biodiesel, and biogas.",signatures:"Galina Novik, Victoria Savich and Olga Meerovskaya",downloadPdfUrl:"/chapter/pdf-download/61794",previewPdfUrl:"/chapter/pdf-preview/61794",authors:[{id:"101157",title:"Dr.",name:"Galina",surname:"Novik",slug:"galina-novik",fullName:"Galina Novik"},{id:"174332",title:"MSc.",name:"Victoria",surname:"Savich",slug:"victoria-savich",fullName:"Victoria Savich"},{id:"197033",title:"Dr.",name:"Olga",surname:"Meerovskaya",slug:"olga-meerovskaya",fullName:"Olga Meerovskaya"}],corrections:null},{id:"64334",title:"Growing and Handling of Bacterial Cultures within a Shared Core Facility for Integrated Structural Biology Program",doi:"10.5772/intechopen.81932",slug:"growing-and-handling-of-bacterial-cultures-within-a-shared-core-facility-for-integrated-structural-b",totalDownloads:1117,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"We have established and optimized standard operating procedures for growing and handling bacterial cultures in a shared core laboratory to support Integrative Structural Biology. The Integrative Structural Biology effort within the Biomolecular Research Center allows researchers to generate new knowledge about protein and RNA structure and function. We aim to understand how biomolecules assemble into stable structures and how structural dynamics impacts their function. Here we describe specific procedures for growing and handling bacterial cultures for overexpression and isolation of recombinant proteins, 15N/13C uniform labeling of recombinant proteins, protein isolation and purification, and analysis of protein solubility that are ideal for implementation in a shared research core laboratory that serves a multitude of diverse customers and research laboratories.",signatures:"Lisa R. Warner, Olga Mass, Nancy Donnelly Lenn, Briana R. Grantham and Julia Thom Oxford",downloadPdfUrl:"/chapter/pdf-download/64334",previewPdfUrl:"/chapter/pdf-preview/64334",authors:[null],corrections:null},{id:"62160",title:"Carbapenemases",doi:"10.5772/intechopen.76282",slug:"carbapenemases",totalDownloads:1654,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"Carbapenems are usually regarded as the last treatment option for serious infections caused by Gram-negative and Gram-positive microorganisms. Although they are stable to hydrolysis by most β-lactamases, their usage as the last resort antbiotics was seriously compromised by the appearance of carbapenem-hydrolyzing enzymes called carbapenemases. These enzymes are produced mostly by Enterobacteriaceae and Gram-negative nonfermentative bacteria such as Pseudomonas aeruginosa and Acinetobacter baumannii. True carbapenemases belonging to Ambler molecular classes A, B, and D are often encoded by genes embedded in mobile genetic elements like plasmids, integrons, and transposons, which often harbor multiple resistance determinants limiting further the treatment options. At present, large number of nosocomial and community-acquired infections caused by worldwide spread of carbapenem-resistant Gram-negative bacteria have become a major public health problem. Although polymyxins remain active, in vitro reports of benefits of combination schemes favor this strategy against carbapenemase-producing Gram-negative bacilli.",signatures:"Branka Bedenić and Sanda Sardelić",downloadPdfUrl:"/chapter/pdf-download/62160",previewPdfUrl:"/chapter/pdf-preview/62160",authors:[null],corrections:null},{id:"67945",title:"Design and Operation of Fixed-Bed Bioreactors for Immobilized Bacterial Culture",doi:"10.5772/intechopen.87944",slug:"design-and-operation-of-fixed-bed-bioreactors-for-immobilized-bacterial-culture",totalDownloads:1322,totalCrossrefCites:2,totalDimensionsCites:6,hasAltmetrics:0,abstract:"Fixed-bed processes operated in perfusion, where cells are immobilized within macroporous carriers, are a promising alternative to processes with suspended microbial or mammalian cells. Their potential has been demonstrated for many purposes. Nevertheless, the number of industrial fixed-bed processes is quite small. To some extent, this is due to the lack of process development tools for fixed-bed processes. To fill this gap, a strategy was developed for the design and evaluation of relevant process parameters of fixed-bed processes. A scale-up concept is presented in order to evaluate the performance as part of process design of fixed-bed processes. This comprises fixed-bed reactors on three different scales, the smallest being the downscaled Multiferm with 10 mL fixed-bed units, the second a 100 mL fixed-bed reactor, and the third a pilot-scale reactor with 1 L fixed-bed volume. The performance of this concept will be discussed for fixed-bed cultures of lactic acid bacteria. Furthermore, a reaction kinetic model for the design of fixed-bed reactors will be presented.",signatures:"Ralf Pörtner and Rebecca Faschian",downloadPdfUrl:"/chapter/pdf-download/67945",previewPdfUrl:"/chapter/pdf-preview/67945",authors:[null],corrections:null},{id:"65069",title:"What Is Limulus Amebocyte Lysate (LAL) and Its Applicability in Endotoxin Quantification of Pharma Products",doi:"10.5772/intechopen.81331",slug:"what-is-limulus-amebocyte-lysate-lal-and-its-applicability-in-endotoxin-quantification-of-pharma-pro",totalDownloads:2834,totalCrossrefCites:6,totalDimensionsCites:8,hasAltmetrics:1,abstract:"Limulus amebocyte lysate (LAL) is an aqueous extract of blood cells (amoebocytes) from the horseshoe crab, Limulus polyphemus. LAL reagent reacts with bacterial endotoxin and lipopolysaccharide (LPS), which is a membrane constituent of Gram-negative bacteria. This reaction is the base on the LAL reagent, which is then used for the finding and quantification of bacterial endotoxins. The Gel Clot LAL test provides very simple positive or negative result and is most often mentioned in international pharmacopeia monographs as the official test. Gel Clot assay is a qualitative LAL test for detection of Gram-negative bacteria endotoxins. The Gel Clot assay is run in tubes that are placed in a water bath or in dry heated oven at 37°C. After a one-hour incubation period, the tubes are flipped 180°. A firm clot that stays in the bottom of the tube indicates a positive reaction. If the liquid flows down the side of the tube, the result is negative for endotoxins.",signatures:"Yasir Mehmood",downloadPdfUrl:"/chapter/pdf-download/65069",previewPdfUrl:"/chapter/pdf-preview/65069",authors:[null],corrections:null},{id:"69255",title:"The War between Bacteria and Bacteriophages",doi:"10.5772/intechopen.87247",slug:"the-war-between-bacteria-and-bacteriophages",totalDownloads:1608,totalCrossrefCites:4,totalDimensionsCites:7,hasAltmetrics:1,abstract:"The rapid emergence and dissemination of multidrug-resistant (MDR) bacteria represents a worldwide crisis concerning that humankind is re-entering the ‘pre-antibiotics’ era. Before the discovery of antibiotics, bacteriophage therapy was widely enforced to combat bacterial infections. However, the discovery of penicillin in 1940 and other novel antibiotics replaced phage therapy, and they are being used as the first line of defence against pathogenic bacterial infections. Factors such as selective pressure resulted in bacteria becoming insensitive to one or multiple antibiotics, frequently leading to limited treatment options. This prompted a renewal of interest to the phage therapy that remains dubious due to its disadvantages such as host specificity and the development of bacterial resistance against phages. Evolution of bacterial genomes allowed bacteria to acquire vast mechanisms interfering with phage infection such as inhibition of phage adsorption, prevention of phage entry, superinfection exclusion, restriction-modification and abortive infection. Interestingly, phages have developed diverse counterstrategies to circumvent bacterial anti-phage mechanisms including digging for receptors, adapting to new receptors and masking and modifying restriction sites. Understanding the complex dynamics of bacteria-phage interaction is a preliminary step towards designing synthetic phages that can overcome limitations of phage therapy and potentially lead to defeating MDR bacteria.",signatures:"Beata Orzechowska and Manal Mohammed",downloadPdfUrl:"/chapter/pdf-download/69255",previewPdfUrl:"/chapter/pdf-preview/69255",authors:[null],corrections:null},{id:"65425",title:"Mycelium Differentiation and Development of Streptomyces in Liquid Nonsporulating Cultures: Programmed Cell Death, Differentiation, and Lysis Condition Secondary Metabolite Production",doi:"10.5772/intechopen.84182",slug:"mycelium-differentiation-and-development-of-em-streptomyces-em-in-liquid-nonsporulating-cultures-pro",totalDownloads:876,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"Streptomycetes are mycelium-forming sporulating bacteria that produce two thirds of clinically relevant secondary metabolites. Secondary metabolite production is activated at specific developmental stages of Streptomyces life cycle. Despite this, Streptomyces differentiation in liquid nonsporulating cultures (flasks and industrial bioreactors) tends to be underestimated and the most important parameters managed are only indirectly related to differentiation: modifications to the culture media, optimization of productive strains by random or directed mutagenesis, analysis of biophysical parameters, etc. In this chapter, we review the relationship between differentiation and antibiotic production in liquid cultures. Morphological differentiation in liquid cultures is comparable to that occurring during pre-sporulation stages in solid cultures: an initial compartmentalized mycelium suffers a programmed cell death, and remaining viable segments then differentiate to a second multinucleated antibiotic-producing mycelium. Differentiation is one of the keys to interpreting biophysical fermentation parameters and to rationalizing the optimization of secondary metabolite production in liquid cultures.",signatures:"Angel Manteca, Beatriz Rioseras, Nathaly González-Quiñónez, Gemma Fernández-García and Paula Yagüe",downloadPdfUrl:"/chapter/pdf-download/65425",previewPdfUrl:"/chapter/pdf-preview/65425",authors:[null],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"2796",title:"Lactic Acid Bacteria",subtitle:"R & D for Food, Health and Livestock Purposes",isOpenForSubmission:!1,hash:"8d625f084ccba1e96cc326406074fe3f",slug:"lactic-acid-bacteria-r-d-for-food-health-and-livestock-purposes",bookSignature:"Marcelino Kongo",coverURL:"https://cdn.intechopen.com/books/images_new/2796.jpg",editedByType:"Edited by",editors:[{id:"138356",title:"Dr.",name:"J. Marcelino",surname:"Kongo",slug:"j.-marcelino-kongo",fullName:"J. 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She is a specialist in taxonomy, ecology and resources of actinomycetes. Dr. Yiang published 93 academic articles and 3 books, obtained 9 patents, and awarded a first prize of Natural Science of Yunnan and Second prize of Kunming City.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"0",totalChapterViews:"0",totalEditedBooks:"0",institution:null},equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"2129",title:"A Search for Antibacterial Agents",subtitle:null,isOpenForSubmission:!1,hash:"1567c6402f459b018a6aabfd620aa3f7",slug:"a-search-for-antibacterial-agents",bookSignature:"Varaprasad Bobbarala",coverURL:"https://cdn.intechopen.com/books/images_new/2129.jpg",editedByType:"Edited by",editors:[{id:"90574",title:"Dr.",name:"Varaprasad",surname:"Bobbarala",slug:"varaprasad-bobbarala",fullName:"Varaprasad Bobbarala"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"5867",title:"Antibacterial Agents",subtitle:null,isOpenForSubmission:!1,hash:"7834e622de76478416bdc3092c52cb15",slug:"antibacterial-agents",bookSignature:"Ranjith N. 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The uterus is an organ with a particular anatomic situation localized with the uterine body intraperitoneally, the isthmus extra-peritoneally, and the cervix can be considered visible intravaginal organs. The uterine body is coated by the visceral peritoneum, which intimately adheres to its sides. In front, the visceral peritoneum reflects it on the bladder and in the back to the rectum. On the lateral side, the visceral uterine peritoneum detaches from the two sides of the uterus into two sheets that are joined to each other but are anatomically distinct and surgically separable, forming
The uterus is maintained in anatomical position inside the pelvis by two systems: a
The suspension and orientation system of the uterus consists of
The
The supporting system reunites all the elements that work together to maintain the uterus in its intrapelvic anatomical position and resist the descending tendency generated by the weight of the intestines at rest or under effort.
Biomechanical studies show that the support of the uterus and the upper part of the vagina are provided by the
The supporting system anchors the uterus and vagina to the pelvic brim: the
The cardinal ligament consists of three segments: Proximal and intermediate segments containing the mesenteric elements and the terminal ureter and a common segment with the homologous uterosacral ligament, which is the main support element of the pericervical ring.
Cardinal ligaments provide reliable support for the vascular and lymphatic axes that converge or emerge in the uterus. Their fibers dissipate in the pubocervicovesical fascia towards the cervix uteri and superior vagina at the level of the cervical ring, and the fascial and areolar structures towards the pelvic walls, structures that cover the pelvic diaphragm, the obturator pelvic fascia, and the tendinous arch of the pelvis (arcus taendineus fascia pelvis-ATFP). (Campbell).
Like the cardinal ligaments, the uterosacral ligaments defined three segments: a proximal segment that merges with the cardinal ligament, an intermediate segment that represents the structure that can be used as a suspension element, and a distal segment that merges with the presacral fascia. Sacrouterine ligaments contain nervous fibers from the superior hypogastric plexus. Those innervating the urinary bladder are of particular importance in nerve-sparing surgery for cervical cancer (Figure 3).
Definition of three segments of uterosacral ligaments. MRI reconstruction -spatial disposition of posteriorly oriented uterosacral ligaments (in green) and cardinal ligaments oriented vertically (in beige yellow), P = pubis arch, Isch = ischion, Il = ilion, S = sacrum.
Vaginal hysterectomy consists of disconnection from below of all elements that maintain the uterus in anatomical position.
From the vaginal point of view, the uterus suspension-supporting system consists of three main connective-vascular pedicles; lower, middle, and upper pedicles.
like abdominal hysterectomy, where the lower pedicle is most difficult to approach, vaginal hysterectomy solves this operative step as the first maneuver of the disconnection of the uterus.
Lower Pedicle
On the caudal side, the cervix and uterine isthmus provide insertion for two fibrous-connective structures: anteriorly,
The juxta vesical ureter, surrounded by fatty tissue, is located in the thickness of each pillar. The
The
The uterosacral ligaments on the lateral sides, towards their sacral insertion, are flanked by the hypogastric nerve, which, along with the pelvic nerves, will be part of the inferior hypogastric plexus. For this reason, sectioning the uterosacral ligaments in radical vaginal hysterectomy as close as possible to the sacral insertion bears the risk of urinary disorders occurring through bladder denervation. Laterally and caudally, the uterosacral ligaments continue with the superior paracolpium, and a division of them achieves the upper level of suspension of the vagina (Delancey).
Campbell identified three distinct histologic regions of the uterosacral ligament. At the cervical attachment, the ligament was made up of carefully packed bundles of smooth muscle, abundant medium-sized and small blood vessels, and small nerve bundles. The intermediate third of the ligament was composed of predominantly connective tissue and only a few scattered smooth muscle fibers, nerve elements, and blood vessels. The sacral third was almost entirely composed of loose strands of connective tissue and intermingled fat, few vessels, nerves, and lymphatics.
The mechanical strength of the uterosacral ligaments is remarkable. The cervical and intermediate portions of the uterosacral ligament supported more than 17 kg of weight before failure. (Nichols) (Figure 4).
Middle Pedicle
The middle connective-vascular pedicle consists of the cardinal ligaments and a variable contingent of fibers that are part of the uterosacral ligaments. Vaginally, each cardinal ligament has a fibrous-connective segment consisting of inferior fibers of the uterosacral ligament and a cranially located vascular segment, which consists of the superior bundle of the cardinal ligament and uterine vascular pedicle. The two segments can be surgically treated as a single pedicle or as separate depending on the thickness and insertion area of the uterine edge (Shiff).
On its cranial aspect, the cardinal ligament is crossed by the ureter under the crossing-point with the uterine artery. The distance between the lateral side of the cervix and isthmus and the wall of the pelvis is approximately 4–5 cm. The ureter crosses the cardinal ligament halfway, approximately 2–2.5 cm from the cervix. The ureteral risk is reduced in vaginal hysterectomy because, once the lower pedicle is cut, the cardinal ligament is elongated, removing the ureter from the operator’s field. (Kovak) (Figure 5).
Upper Pedicle
The upper pedicle consists of
The primary vascular element of the upper pedicle is the
A. Lower connective-vascular pedicle (cardinal uterosacral complex -CUSC the first pedicle in vaginal hysterectomy). 1 = cervicovesical ligament, 2 = uterosacral ligaments, 3 = cardinal ligament. Redline mark where the same pedicle might secure bladder pillar, uterosacral ligaments, and cardinal ligaments. B. Lower connective pedicle at vaginal hysterectomy with distinct uterosacral ligament (USL) and cardinal ligament (CL) in the same pedicle.
Middle pedicle. 1 = uterine artery, 2 = cardinal ligament, 3 = inferior pedicle cut, 4 = parametrial ureter. Once cut, the uterosacral ligament’s traction on the cervix makes the cardinal ligament elongated and removes the ureter from the surgical field.
The uterus is a highly vascular organ with two arterial and two venous systems intertwined.
The primary arterial system is composed of the
Between the
The venous system is composed of the
The arterial blood supply is provided by three different sources: the
The origin of the uterine artery can be encountered most often in a common trunk with the umbilical artery, which arises as to the terminal branch from the previous division of the hypogastric artery. However, there is also the anatomic variant of direct origin from the hypogastric artery. From its origin, the uterine artery follows a 3–5 cm intrapelvic trajectory, approaching the cervix at a constant distance of approximately 2–2.5 cm without coming into contact.
The level where the uterine artery enters the uterine body, regardless of the shape or size of the uterus, corresponds to the level of the internal cervical orifice (Figure 6).
The point where the uterine artery reaches the uterus is constant at the level of the internal cervical orifice. ICO = internal cervical orifice, UP = uterine point. 1 = main uterine artery, 2 = ascending branch of the uterine artery, three = descending branches of the uterine artery. 4 = Beliaeva triangle.
In its trajectory, the uterine artery has three distinct segments:
In the
The
The uterine artery reaches the uterus in a triangular zone near the isthmus (Beliaeva triangle) situated at the base of the broad ligaments at three o clock for the right side and nine o clock for the left side (from the vaginal point of view). The descending uterine artery supplies the isthmus, cervix, and upper vagina. The ascending uterine artery supplies the body of the uterus. The ascending uterine artery is tortuous and gives rise to 10–12 arcuate arteries that course between the outer and middle thirds of the myometrium.
The crossing point of the uterine artery with the ureter is located sideways, approximately 20 mm away from the cervix and 10–12 mm cranially from the lateral vaginal fornix. At this level, there are two venous currents, one in front and another in the back of the ureter, which is predisposed to bleed during maneuvers to unroof the parametrial ureter (Figure 7).
Arterial supply of uterus and vagina. 1 = arterial trunk of hypogastric artery, 2 = Main trunk of the uterine artery, 3 = the ascending branch of the uterine artery, 4 = the descending branch of uterine artery (superior vaginal artery), five = inferior vaginal artery, 6 = umbilical vesical artery, 7 = ureteral branches from the uterine artery, 8 = middle hemorrhoidal artery, nine = ovarian artery, ten = ovarian arch between ovarian and uterine branches, 11 = tubal arch between ovarian and uterine branches, 12 = fundal branch of the uterine artery, 13 = arcuate arteries from right side, 14 = anastomotic branch between the uterine artery and ovarian arch, 15 = funicular branch (round ligament) artery.
The
Between the right and left sides of the uterine body, the arcuate arteries are anastomosed by collateral and small, direct branches. At the uterine fundus, approximately 15 mm away from the insertion of the tube, the ascending uterine artery divides into two branches:
A branch from the uterine artery.
The vaginal artery.
The middle hemorrhoidal artery.
The source of the uterine artery is composed of vesicovaginal and cervicovaginal branches and ensures the blood flow for the upper part of the vagina. The correct vaginal artery (lower vaginal artery or large vaginal artery) originates from the hypogastric artery. The artery from both sides anastomose in the midline and forms the longitudinal artery from the cervix to the vulva named the
The
The
The bilateral ligature of the anterior trunk of hypogastric arteries cannot stop the blood flow into the pelvis. Two primary sources ensure arterial collateral circulation of the pelvis:
Iliolumbar arteries
Lateral sacral arteries
Middle hemorrhoidal arteries
Lumbar arteries
Middle sacral artery
Superior hemorrhoidal arteries
Venous blood from the uterine body comes from the veins located in the thickness of the myometrium, which is venous sinuses with reduced endothelial cover. Venous blood drains into two collecting veins on each side of the uterus, with anastomoses in between. The collateral venous blood supply is significant concerning the alternative route for blood flow in case of significant obstruction of main venous branches.
Collateral venous circulation of the uterus can be done in three main ways:
The
The
The
The venous blood supply of the vagina consists of veins that come from each side of the vagina and anastomose on the median line on the same path as the azygos arteries. The blood flow is oriented to uterine veins at the level of the cervix.
Veins are mainly located on the sides of the vagina and anastomose each other at the extremities of the vaginal canal. In the middle region of the vagina, anastomoses are carried out in the azygous arteries draining the blood to the uterine veins at the level of the cervix. The uterine veins are anastomosis with the average hemorrhoidal veins, which, in turn, communicate with the upper hemorrhoids, forming at this level a porta-cave anastomose. The
Vaginal hysterectomy has as its first step the disconnection of the upper vagina from the cervix and uterine body. As a result, the anastomotic flow between the uterus and vagina is interrupted.
After the middle pedicles are cut, due to caudal traction of the cervix in the vaginal canal, the transversal segment of the uterine artery elongates, and it can be secured by occluding both the ascending and descending branch. After that, all the maneuverers in the uterus, until the upper pedicles, are bloodless.
If the diameter of the uterus exceeds the lower pelvic brim, as the uterus is released, the bleeding is stopped by compressing the vessels on the hard plane of the pelvis.
After extracting a large uterus, important bleeding may occur, caused by either ligature sliding or from the tearing of veins in the broad ligament.
Many vaginal hysterectomies may result in insignificant bleeding as compared to those in abdominal hysterectomies.
Unlike abdominal hysterectomy, regardless of the method, open or laparoscopic, vaginal hysterectomy produces a particularly favorable effect by reducing bleeding, especially in the case of large uteri due to special hemodynamic conditions. During a vaginal hysterectomy, a series of hemodynamic events occur concerning the uterine circulation, especially for a large uterus:
Traction exerts on the cervix of a large uterus almost throughout the operation, so that blood flow is significantly diminished. After the bilateral ligature of the uterine arteries, which can affect both the ascending and the descending branches, the blood flow is completely stopped, allowing maneuvers for dimensional reduction of the uterus with no risk of significant bleeding.
During the vaginal hysterectomy, after the ligature of uterine arteries, visible bleeding does not come from vascular pedicles but from blood stored in the myometer.
In cases where labia minora are hypertrophic and hinder access to the vaginal introit, they are anchored laterally by suture or by using the Richter retractor. The surgical area is bounded by a set of fields isolating the anterior vulval-perineal region (Figure 8).
Pericervical infiltration with saline solution. The cervix is grasped with 2 Pozzi clamps, and a magenta dye marks the limit of the anterior and posterior incision. Infiltrating is strictly submucosal.
The course of the future colpotomy is infiltrated submucosally with a vasoconstrictive solution. (1/200,000 epinephrine, 4 ml of ropivacaine, and up to 20 ml of saline solution). When there are contraindications for administering the epinephrine, saline solution alone may be used. Through infiltration with saline solution, a hydric dissection of the tissues is achieved, which determines the opening of the cleavage spaces, and the local anesthesia blocks the nervous transmission from the receptor level.
Accidental intravascular injection should be avoided.
The incision of the vaginal wall can be done with a cold or electric scalpel.
The incision of the vagina around the cervix is circular, with the anterior limit in the first transversal fold of the vaginal mucosa from its insertion into the cervix (
The incision includes the entire thickness of the vaginal wall, anteriorly and posteriorly. Laterally only the epithelium is interested. In this way, with the ligature of the first pedicle, the vagina will remain anchored sideways to the uterosacral ligaments, ensuring the prevention of the vaginal vault prolapse (Figure 9).
The incision of the anterior wall of the vagina 1.5–2 cm away from the external cervical orifice includes the entire thickness of the vaginal wall. Posteriorly, the incision is placed at the level of the first posterior rugae of the vaginal wall.
Entry into the anterior cleavage space starts with opening the vesicouterine space by cutting the
To expose the cervico-vesical septum, the cervix is pulling down and the cutting edge of the vaginal wall in the opposite direction. The sectioning of the cervicovesical septum is done with scissors facing the mass of the cervix.
The anterior cleavage space is open. Bladder pillars delineate the spatial side of anterior cleavage space. The dissection of the vesicouterine space is done by the progression of the index on the median line.
The peritoneal vesicouterine fold remains up as long as the uterus keeps its connections with the superior connective vascular pedicle. For this reason, its opening is not an immediate objective once the bladder has been detached from the uterus.
In our basic technique, opening the vesicouterine pouch becomes extremely simple after the disconnection of the inferior pedicle if the uterus is not enlarged or deformed. After sectioning the inferior pedicle, the uterus descends 3–4 cm, where the white-pearly transversal fold of the peritoneal vesicouterine fold can be observed. It is grasped with a clamp and cut where it enters the pelvis. The surgeon digitally explores the anterior side of the uterus and inserts a Briesky-Navratil retractor in this space, discharging the bladder upward (Figure 12).
A. Identifying and opening the real vesicovaginal fold (white arrow). The black arrow marks the cervical insertion of the peritoneal fold (false fold). B. the vesicovaginal fold opens.
Unlike with anterior colpoceliotomy, entering the rectovaginal cleavage space and opening the pouch of Douglas can be done at the same time. The level of posterior vaginal incision described above is significant to ensure a good entry into the rectovaginal space. The edge of the posterior vaginal wall incision is grasped with Allis clamps, and the rectovaginal space is entered by sharp or blunt dissection. After entering the rectovaginal space and pressing the rectum down, the peritoneal cul-de-sac may be observed swelling when the cervix is moved in or out. After opening the pouch of Douglas, the posterior side of the uterus, uterosacral ligaments, and the posterior leaf of the broad ligaments can be explored digitally (Figures 13 and 14).
Developing rectovaginal cleavage space. Allis clamps grasp the vaginal cutting edge, and the space is open by sharp dissection. The posterior aspect of the cervix is pulled upward, and the dissection is carried out using a Sims retractor.
The rectovaginal fold is open, and the posterior side of the uterus is visible. (arrow).
In difficult cases, a particular variant can be used to avoid the creation of an excessively sizeable retroperitoneal space between the vagina and the rectum. (see Chapter 6).
The lower pedicle is represented by the uterosacral ligament posteriorly and the vesicouterine ligament anteriorly. For the disconnection of the inferior pedicle, it is not mandatory to open the rectouterine pouch, and the maneuver can be done extra-peritoneally.
The bladder is removed cranially with a Briesky-Navratil retractor, placing the two vesical pillars under tension, and the rectum is depressed with a posterior Sims retractor (Figures 15 and 16).
Right lower pedicle. A dotted line separates the bladder pillar (blue arrow) from the uterosacral ligament (blue light arrow). Clamping the inferior part of the bladder pillar and uterosacral ligament together form the right lower pedicle.
A. Right lower pedicle secured by Vicryl 2/0. B. the left lower pedicle is clamped prepared to cut.
Using a Wertheim clamp, one of the uterosacral ligaments and the homologous bladder pillar are loaded together, after which, the pedicle is cut and ligated. The maneuver is repeated on the opposite side. In many situations, after cutting the pedicle, the pouch of Douglas opens spontaneously near the uterine edge.
The middle pedicle is represented by the cardinal ligament that contains the main uterine vascular supply for the uterus and cervix. By caudal traction on the cervix, the vascular pedicle has a parallel direction on the uterine edge, removing the ureters from the surgical field (Figure 17).
Right middle pedicle formed by cardinal ligament and uterine artery and veins clamped and cut. Left middle pedicle clamped. Arrow mark the uterine artery. In our technique, the pediculisation of uterine vessels is not useful as long as the clamping of the pedicle is done strictly parallel to the uterine side. The risk to the ureter’s damage is reduced if the lower pedicle is previously sectioned. (see chapter 2).
For this reason, during the vaginal hysterectomy, the urethral risk is lower than with the abdominal approach. After clamping, the pedicle is cut and ligated with 2–0 Vicryl.
In some situations, the cardinal ligament can be well represented and cannot be clamped at a single time. In this case, a second clamping and cutting should be cautiously be done. There is the risk of clamping and cutting a part of the superior pedicle and, in the maneuver, tilting the uterus. If so, the latter might break, causing some unwanted bleeding.
For vaginally delivering the uterus, securing the superior connective vascular pedicle is the most important and sometimes the most difficult step of vaginal hysterectomy.
In most cases, the superior pedicle can be brought into the surgical field by tilting the uterus. The uterus can be tilted anteriorly (Doderlain-Kronig maneuver) or posteriorly (Heaney maneuver).
When the uterus is highly mobile and small, its release from the pelvis can also be done without tilting.
For the uterus weighing up to 200–280 g, access to the superior pedicle is done by tilting, a maneuver that brings the superior pedicle into the surgical field, which consists in anatomical order of the round ligament, fallopian tube, and homologous utero-ovarian ligament. This pedicle includes the anastomotic branch of the uterine artery and the tubo-ovarian vascular arch.
The main disadvantage of the tilting maneuvers is that it forces the vaginal opening through which the uterus is pulled, which can lead to the slipping of ligatures placed on the anteriorly cut and ligated connective vascular pedicles (Figures 18–20).
Disconnection of upper pedicle by posterior tilting (Heaney maneuver).
Disconnection of the superior pedicle. In this case, the uterus is hemisected previously. The pedicle is hooked by the index finger and then clamped.
Clamped left upper pedicle. We can see what it is made of 1 = round ligament, 2 = utero-ovarian ligament, 3 = tube.
Anterior tilting (Doderlain-Kronig maneuver). After anterior colpoceliotomy, the anterior side of the uterus is evident. Using Pozzi forceps, the uterine fundus is extracted, and the superior pedicle can be clamped and cut.
The cervix is forcefully pulled caudally to expose as much as possible the anterior side of the uterus. Using a Pozzi clamp, the mass of the uterine body is clamped on the median line as high up as possible. It is gradually pulled, without sudden moves that lead to the rupture of the myometrium. At the same time, the cervix is left free without traction or pushed cranially and posteriorly with the Pozzi clamp. Along with the uterus’s progress into the surgical field, using another Pozzi clamp, the mass of the uterine tissue is escalated as high up as possible until the uterine fundus and one or two superior pedicles appear in the surgical field. At this time, the cervix is pulled cranially to place the pedicle under tension. The index finger of the surgeon’s left hand cranially and caudally loads the superior uterine pedicle, while the right-hand loads the pedicle into the arms of the Wertheim clamp.
After clamping and cutting, the pedicle is ligated, and the ends of the threads are kept as benchmarks. For the contralateral side, the maneuver for clamping the pedicle simplifies because, by pulling onto the cervix, the pedicle will be well exposed. Cutting and ligating the pedicles gives rise to the extraction of the uterus. The pedicle can be completely clamped or the round ligament isolated when one aims to perform the adnexectomy.
Posterior tilting (Heaney maneuver) is the most frequently used maneuver to access the superior pedicle for non-prolapsed uteruses weighing more than 180 g. Posterior tilting has the main advantage of being able to rotate the uterus in a much larger space, represented by the sacral concavity.
The cervix is forcefully pulled cranially while the assistant depresses the rectum using a Sims retractor to reveal as much as possible of the posterior side of the uterus. The surgeon places a Pozzi clamp on the dorsal middle bottom of the uterus, as close as possible to the uterine pouch. Relaxing the tension exerted on the cervix, it is pulled progressively by the clamp while the assistant tries to extract the uterus using the posterior retractor. When uterus progression is observed, the position of the uterus pulling clamp is changed to become as cranial as possible, and the releasing maneuvers are continued until the uterine fundus appears in the surgical field (Figures 22 and 23).
Posterior tilting (Heaney maneuver). Clamping the left superior pedicle. The cervix is pulled cranially at the same time that the uterine fundus is pulled hard caudally.
The Heaney maneuver. The right pedicle is clamped ˝a la Vue easily. ˝.
Unlike anterior tilting, the superior pedicle does not become visible. To be able to identify it, the surgeon places a Briesky retractor in the area between the lateral wall of the vagina and the uterine horn, usually on the left side, where access is more accessible. As an aiding maneuver, the clamp anchoring the uterine fundus is repositioned as close as possible to the externalized uterine horn. Thus, by simultaneously pulling the cervix and uterine fundus and maneuvering the Briesky-Navratil retractor laterally, the superior pedicle is revealed at its insertion into the uterus. With the medius of the left hand, the surgeon loads the pedicle in a cranial position to clamp the pedicle in a caudal place with the right hand using a Wertheim clamp.
In certain situations (early endometrial cancer, interventions under local anesthesia), it is necessary to release the uterus with minimum trauma, without tilting or morcellation. Direct access to the superior pedicle is possible mainly in multiparous women with perineal relaxation and small uteruses with a weakly represented bearing system. In these cases, clamping and section of the pedicle are done without any difficulties. Clamping the superior pedicle can be done safely by successively escalating the elements included in the utero-adnexal pedicle.
After extracting the uterus, gauze is inserted through the vaginal opening and into the pelvic cavity, pushing the bowels and leaving the pelvic-subperitoneal space open to view. The posterior wall of the vagina is retracted with an auto-static retractor. The vesicouterine peritoneum is revealed using a Briesky-Navratil retractor. The basis of the parameter is shown on the appropriate side, pulling the thread locating the superior pedicle. Bleeding at the end of the intervention is usually profuse, and its primary source is the vaginal cutting edges. In the case of active arterial bleeding from parameters, the surgical field is flooded, and the primary sources, such as the uterine arteries or the utero-ovarian arches, are to be found immediately.
At the end of a vaginal hysterectomy, the surgical field is rarely “dry” until the vaginal cuff is closed.
In the technique we used for a vaginal hysterectomy for a non-prolapsed uterus, we adopted the Wertheim manner of closing the peritoneal cavity and the remaining vaginal edges. The main drawback of this maneuver is the closing of the surgical field without controlling the hemostasis until the end of the operation. We modified the technique, closing down the pelvic-peritoneal space and anchoring the superior vagina to the remaining cuffs of the inferior pedicle containing the most substantial elements of suspension – the uterosacral ligaments. With this procedure, the prevention of vaginal vault prolapse is done like the McCall procedure.
The manner we proposed is done in three distinct times:
Closure of the pelvic-subperitoneal posterior space
Closure of the pelvic-subperitoneal anterior space
Full closure of the vaginal cuff
Closure of the pelvic-subperitoneal posterior space
Closing down the pelvic-subperitoneal space is done by running a suture with Vicryl nr. 0 to close the edge of the vagina and the posterior visceral peritoneum, starting from the lower pedicle on one side to the similar pedicle on the other side (Figure 24).
Closure of the pelvic-subperitoneal anterior space
This step usually is not necessary, but when the dissection of the bladder wall is difficult or in the case of an inadvertent wound, closing the space between the bladder and vagina is the best alternative. By joining the wall of the vagina with the visceral vesical peritoneum using a running suture, space is closed down.
Full closure of the vaginal cuff
The vaginal cuff can be fully closed by sutures with separate suture points. The closure of the vaginal cuff is done with Vicryl 0 and with suture points in a figure of eight that starts at the center of the section and goes out towards each lateral vaginal commissure (Figure 25).
Prophylactic apical support
The technique described above refers to the unprolapsed uterus where post-hysterectomy vault prolapse occurs very rarely. For this reason, we do not include in the operative procedure an appropriate step addressed for it. The prevention of vaginal vault prolapse is necessary in case of an association of early forms of uterovaginal prolapse. By the technique described by us, the means of suspension of the upper vagina are preserved as long as the circular (Figure 26).
Closing the posterior pelvic-subperitoneal space by running suture. The edge of the vagina (green arrow) is sutured together with the visceral posterior peritoneum (yellow arrow).
The final closing of the vaginal vault by separate suture points, from middle to lateral.
Superficial incision of the lateral aspect of the vagina allows the section of the lower connective vascular pedicle to anchor the vaginal wall to uterosacral ligaments making prophylaxis of vaginal vault prolapse. (yellow arrows – Vaginal wall).
The incision in the cervix is of interest only to the vaginal mucosa. For cases where early apical prolapse is present, McCall culdoplasty is an excellent way to resuspend the upper vagina at the first level (DeLancey).
The presented technique of vaginal hysterectomy resulted from combining several variants tried by authors over the years of more than 4500 vaginal hysterectomies. From each variant of the technique, we chose the most efficient and safe method to achieve each operator time as a confirmation of the validity of the succession of operating times proposed by us, the International Society of Endoscopic Surgery (ISGE) published in 2020 a set of recommendations on the technique of vaginal hysterectomy on the unprolapsed uterus.
Six recommendations were established similar to the standard technique proposed by us:
Circular incision at the level of the cervical-vagina junction is recommended (grade IC).
Posterior peritoneum should be opened first (grade IC).
Clamping and cutting the uterosacral and cardinal ligaments before or after getting access to the anterior peritoneum are recommended (grade IC).
Routine closure of the peritoneum during vaginal hysterectomy is not recommended (grade IB).
Vertical or horizontal closure of the vaginal vault following vaginal hysterectomy is recommended (grade IC).
To insert the vaginal plug following vaginal hysterectomy is not recommended (grade IB).
..,
There is no standard technique for vaginal hysterectomies. Every case poses different strategical problems. It is not necessary to follow every step of the operation in order as described elsewhere in literature or even in this chapter. The surgeon can treat every operation as a distinct one with a specific strategy.
The disconnection of the leading vascular pedicles causes fewer problems than delivering the uterus from the upper connective vascular pedicle. For large uteri, this operative step is time-consuming and challenging to work for the surgeon.
If during the first steps of the operation, incidental bleeding begins that cannot be managed, the surgeon should not hesitate to convert the vaginal operation to an open abdominal or laparoscopic one. Every minute lost means 250 ml of blood lost from each uterine artery.
In many cases, there is significant blood loss until the uterus is released, and after that, the drama begins. In some cases, the abrupt withdrawal of the uterus from the pelvis causes the sliding of ligatures from a uterine artery. If the bleeding seems to be to one side, you have to look for it on the opposite side.
The most important thing is to finish this partially blind operation without any doubt regarding the safety of the patient.
IntechOpen aims to guarantee that original material is published while at the same time giving significant freedom to our Authors. We uphold a flexible Copyright Policy, guaranteeing that there is no transfer of copyright to the publisher and Authors retain exclusive copyright to their Work.
',metaTitle:"Publication Agreement - Monograph",metaDescription:"IntechOpen aims to guarantee that original material is published while at the same time giving significant freedom to our authors. For that matter, we uphold a flexible copyright policy meaning that there is no transfer of copyright to the publisher and authors retain exclusive copyright to their work.",metaKeywords:null,canonicalURL:"/page/publication-agreement-monograph",contentRaw:'[{"type":"htmlEditorComponent","content":"When submitting a manuscript, the Author is required to accept the Terms and Conditions set out in our Publication Agreement – Monographs/Compacts as follows:
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\\n\\nPolicy last updated: 2018-09-11
\\n"}]'},components:[{type:"htmlEditorComponent",content:'When submitting a manuscript, the Author is required to accept the Terms and Conditions set out in our Publication Agreement – Monographs/Compacts as follows:
\n\nCORRESPONDING AUTHOR'S GRANT OF RIGHTS
\n\nSubject to the following Article, the Author grants to IntechOpen, during the full term of copyright, and any extensions or renewals of that term, the following:
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\n\nThe Author, on his or her own behalf and on behalf of any of the Co-Authors, reserves the following rights in the Work but agrees not to exercise them in such a way as to adversely affect IntechOpen's ability to utilize the full benefit of this Publication Agreement: (i) reprographic rights worldwide, other than those which subsist in the typographical arrangement of the Work as published by IntechOpen; and (ii) public lending rights arising under the Public Lending Right Act 1979, as amended from time to time, and any similar rights arising in any part of the world.
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Heat stress decreases the secretion of luteinizing hormone and estradiol resulting in reduced length and intensity of estrus expression, increased incidence of anoestrus and silent heat in farm animals. Oocytes exposed to thermal stress lose its competence for fertilization and development into the blastocyst stage, which results in decreased fertility because of the production of poor quality oocytes and embryos. Furthermore, low progesterone secretion limits the endometrial functions, and subsequently embryo development. In addition, the increased secretion of endometrial prostaglandin F2 alpha during heat stress threatens the maintenance of pregnancy. In general, the percentage of conception rate was found to be reduced by 4.6% for each unit increase in temperature humidity index (THI) above 70, and heat stress during pregnancy further slows down the growth of the foetus and results in lower birth weight. In tropical and subtropical regions, during hot days, the testicular temperature may increase and impair both the spermatogenic cycle and semen quality, which culminates in decreased bull fertility. The effects of heat stress on livestock can be minimized via adapting suitable scientific strategies comprising physical modifications of the environment, nutritional management and genetic development of breeds that are less sensitive to heat stress. In addition, the summer infertility may be countered through advanced reproductive technologies involving hormonal treatments, timed artificial insemination and embryo transfer, which may enhance the chances for establishing pregnancy in farm animals.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Govindan Krishnan, Madiajagan Bagath, Prathap Pragna,\nMallenahally Kusha Vidya, Joy Aleena, Payyanakkal Ravindranathan\nArchana, Veerasamy Sejian and Raghavendra Bhatta",authors:[{id:"89780",title:"Dr.",name:"Veerasamy",middleName:null,surname:"Sejian",slug:"veerasamy-sejian",fullName:"Veerasamy Sejian"},{id:"177210",title:"Dr.",name:"Raghavendra",middleName:null,surname:"Bhatta",slug:"raghavendra-bhatta",fullName:"Raghavendra Bhatta"},{id:"177220",title:"Dr.",name:"M",middleName:null,surname:"Bagath",slug:"m-bagath",fullName:"M Bagath"},{id:"201967",title:"Dr.",name:"Govindan",middleName:null,surname:"Krishnan",slug:"govindan-krishnan",fullName:"Govindan Krishnan"},{id:"201968",title:"Ms.",name:"Archana",middleName:null,surname:"Pr",slug:"archana-pr",fullName:"Archana Pr"},{id:"201969",title:"Ms.",name:"Pragna",middleName:null,surname:"Prathap",slug:"pragna-prathap",fullName:"Pragna Prathap"},{id:"201970",title:"Ms.",name:"Aleena",middleName:null,surname:"Joy",slug:"aleena-joy",fullName:"Aleena Joy"},{id:"201971",title:"Dr.",name:"Vidya",middleName:null,surname:"Mk",slug:"vidya-mk",fullName:"Vidya Mk"}]},{id:"55006",doi:"10.5772/intechopen.68650",title:"Immunocastration as Alternative to Surgical Castration in Pigs",slug:"immunocastration-as-alternative-to-surgical-castration-in-pigs",totalDownloads:1931,totalCrossrefCites:11,totalDimensionsCites:22,abstract:"Surgical castration of piglets is a routine practice in pig production used to prevent the incidence of boar taint of pig meat, which may develop in entire male pigs as they reach puberty. This practice is being presently questioned in the European Union, and there is a strong initiative to end it. The initiative is presently voluntary; however, key stakeholders of European pig production sector have signed a declaration, and the actions undertaken by them already affect the business. Before such new concepts in pig production can be implemented, alternative solutions are needed, one of them being immunocastration. The present chapter will thus focus on the presentation of immunocastration as one of the promising alternatives to surgical castration. Theoretical and practical aspects of immunocastration in pig production will be described, and the advantages and disadvantages of this alternative will be summarised. Physiological principles of immunocastration and impacts on metabolism, growth performance, body composition and meat quality will be described and aspects of public acceptability reviewed.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Marjeta Čandek-Potokar, Martin Škrlep and Galia Zamaratskaia",authors:[{id:"23161",title:"Dr.",name:"Marjeta",middleName:null,surname:"Čandek-Potokar",slug:"marjeta-candek-potokar",fullName:"Marjeta Čandek-Potokar"},{id:"198220",title:"Dr.",name:"Martin",middleName:null,surname:"Škrlep",slug:"martin-skrlep",fullName:"Martin Škrlep"},{id:"198221",title:"Prof.",name:"Galia",middleName:null,surname:"Zamaratskaia",slug:"galia-zamaratskaia",fullName:"Galia Zamaratskaia"}]},{id:"55696",doi:"10.5772/intechopen.69444",title:"Estrus Cycle Monitoring in Wild Mammals: Challenges and Perspectives",slug:"estrus-cycle-monitoring-in-wild-mammals-challenges-and-perspectives",totalDownloads:1888,totalCrossrefCites:0,totalDimensionsCites:6,abstract:"The knowledge of reproductive physiology is of paramount importance to guide reproductive management and to make possible future application of assisted reproduction techniques (ARTs) aiming ex situ conservation of wild mammals. Nevertheless, information on the basic reproductive aspects of wild mammals remain scarce, and appropriate management practices have not yet been developed for all the species. This chapter discusses the methods most currently used for reproductive monitoring in wild females. Additionally, the difficulties regarding their use in different species and the possibilities of these procedures in captivity or in free-living mammals are addressed.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Alexandre R. Silva, Nei Moreira, Alexsandra F. Pereira, Gislayne C.X.\nPeixoto, Keilla M. Maia, Lívia B. Campos and Alana A. Borges",authors:[{id:"90066",title:"Dr.",name:"Alexandre",middleName:"Rodrigues",surname:"Silva",slug:"alexandre-silva",fullName:"Alexandre Silva"},{id:"177090",title:"Dr.",name:"Alexsandra Fernandes",middleName:null,surname:"Pereira",slug:"alexsandra-fernandes-pereira",fullName:"Alexsandra Fernandes Pereira"},{id:"177093",title:"MSc.",name:"Gislayne Christianne Xavier",middleName:null,surname:"Peixoto",slug:"gislayne-christianne-xavier-peixoto",fullName:"Gislayne Christianne Xavier Peixoto"},{id:"198314",title:"Prof.",name:"Nei",middleName:null,surname:"Moreira",slug:"nei-moreira",fullName:"Nei Moreira"},{id:"198315",title:"MSc.",name:"Keilla Moreira",middleName:null,surname:"Maia",slug:"keilla-moreira-maia",fullName:"Keilla Moreira Maia"},{id:"198316",title:"MSc.",name:"Lívia Batista",middleName:null,surname:"Campos",slug:"livia-batista-campos",fullName:"Lívia Batista Campos"},{id:"198317",title:"MSc.",name:"Alana Azevedo",middleName:null,surname:"Borges",slug:"alana-azevedo-borges",fullName:"Alana Azevedo Borges"}]},{id:"56522",doi:"10.5772/intechopen.69549",title:"Role of Melatonin in Reproductive Seasonality in Buffaloes",slug:"role-of-melatonin-in-reproductive-seasonality-in-buffaloes",totalDownloads:1772,totalCrossrefCites:2,totalDimensionsCites:5,abstract:"Buffaloes are characterized by seasonal reproductive activity. Anestrus buffalo heifers and lactating buffaloes were used to study the effect of melatonin treatment on the resumption of ovarian activity during out-of-breeding season. Buffaloes of treated group were injected or implanted with melatonin (18 mg melatonin/50 kg body weight). Using CIDR-eCG protocol preceded with melatonin successfully achieved estrus behavior and induced conception rate during out-of-breeding season. Furthermore, the reproductive performance of buffaloes during out-of-breeding season was clearly improved by melatonin implantation in conjunction with CIDR-eCG protocol due to the luteotrophic effect of melatonin expressed as increasing diameter of CL (corpus luteum) and progesterone concentration. This improvement resulted in greater values of conception rate, in melatonin implanted compared to not implanted buffaloes. Melatonin implantation in anestrus buffalo heifers increased the diameter of largest follicles and melatonin concentration but progesterone and luteinizing hormone (LH) concentrations were decreased. In addition, melatonin implantation in anestrus lactating buffaloes increased the SOD (superoxide dismutase) enzyme activity. Sustained release of exogenous melatonin significantly protects against oxidative stress while increasing beneficial total antioxidant capacity (TAC) concentration in summer-stressed anestrus buffaloes. Melatonin implantation in conjunction with CIDR-eCG protocol successfully improved some blood metabolites, in anestrus buffalo heifers during out-of-breeding season under tropical conditions.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Tamer Awad Ramadan",authors:[{id:"197651",title:"Dr.",name:"Tamer",middleName:"Awad",surname:"Ramadan",slug:"tamer-ramadan",fullName:"Tamer Ramadan"}]},{id:"54974",doi:"10.5772/intechopen.68651",title:"Markers for Sperm Freezability and Relevance of Transcriptome Studies in Semen Cryopreservation: A Review",slug:"markers-for-sperm-freezability-and-relevance-of-transcriptome-studies-in-semen-cryopreservation-a-re",totalDownloads:1618,totalCrossrefCites:0,totalDimensionsCites:4,abstract:"Advances in sperm assessment techniques have offered new perspectives to improve the technology of semen cryopreservation. This review addresses some recent achievements in the proteomics of seminal plasma and spermatozoa and exemplifies its importance as markers for sperm fertility following cryopreservation. Recent advances in transcriptome studies on sperm RNA-Seq data have generated new information aimed to unravel the physiological roles of RNAs in the sperm-egg fertilization processes and their associations with male fertility. The relevance of the sperm freezability markers and the potential associations of RNA-profiling sequences with the sperm biological functions have been discussed.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Leyland Fraser",authors:[{id:"199650",title:"Dr.",name:"Leyland",middleName:null,surname:"Fraser",slug:"leyland-fraser",fullName:"Leyland Fraser"}]}],mostDownloadedChaptersLast30Days:[{id:"79344",title:"Epidemiology of Bovine Mastitis and Its Diagnosis, Prevention, and Control",slug:"epidemiology-of-bovine-mastitis-and-its-diagnosis-prevention-and-control",totalDownloads:312,totalCrossrefCites:0,totalDimensionsCites:1,abstract:"Mastitis is an inflammation of mammary glands that is prevalent in dairy bovines. It causes a significant proportion of economic losses to the dairy farmers in India. Cattle and buffalo farming contribute significantly to the economy of the state. Various infectious agents such as bacteria, fungi, and algae may cause mastitis. Hence, it is essential to understand the etiological agents and predisposing factors that lead to mastitis in susceptible bovine populations in Madhya Pradesh state so that appropriate prevention and control strategies can be implemented. In this chapter, epidemiology, diagnosis, prevention, and control measures of mastitis in general and in India, the state of Madhya Pradesh, in particular, will be presented.",book:{id:"10589",slug:"mastitis-in-dairy-cattle-sheep-and-goats",title:"Mastitis in Dairy Cattle, Sheep and Goats",fullTitle:"Mastitis in Dairy Cattle, Sheep and Goats"},signatures:"S.D. Audarya, D. Chhabra, R. Sharda, R. Gangil, R. Sikrodia, J. Jogi and N. Shrivastava",authors:[{id:"291434",title:"Dr.",name:"N.",middleName:null,surname:"Shrivastav",slug:"n.-shrivastav",fullName:"N. Shrivastav"},{id:"317236",title:"Dr.",name:"S.D.",middleName:null,surname:"Audarya",slug:"s.d.-audarya",fullName:"S.D. Audarya"},{id:"344698",title:"Dr.",name:"D.",middleName:null,surname:"Chhabra",slug:"d.-chhabra",fullName:"D. Chhabra"},{id:"344699",title:"Dr.",name:"R.",middleName:null,surname:"Sharda",slug:"r.-sharda",fullName:"R. Sharda"},{id:"344700",title:"Dr.",name:"R.",middleName:null,surname:"Gangil",slug:"r.-gangil",fullName:"R. Gangil"},{id:"344702",title:"Dr.",name:"R.",middleName:null,surname:"Sikrodia",slug:"r.-sikrodia",fullName:"R. Sikrodia"},{id:"344703",title:"Dr.",name:"J.",middleName:null,surname:"Jogi",slug:"j.-jogi",fullName:"J. Jogi"}]},{id:"55696",title:"Estrus Cycle Monitoring in Wild Mammals: Challenges and Perspectives",slug:"estrus-cycle-monitoring-in-wild-mammals-challenges-and-perspectives",totalDownloads:1886,totalCrossrefCites:0,totalDimensionsCites:6,abstract:"The knowledge of reproductive physiology is of paramount importance to guide reproductive management and to make possible future application of assisted reproduction techniques (ARTs) aiming ex situ conservation of wild mammals. Nevertheless, information on the basic reproductive aspects of wild mammals remain scarce, and appropriate management practices have not yet been developed for all the species. This chapter discusses the methods most currently used for reproductive monitoring in wild females. Additionally, the difficulties regarding their use in different species and the possibilities of these procedures in captivity or in free-living mammals are addressed.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Alexandre R. Silva, Nei Moreira, Alexsandra F. Pereira, Gislayne C.X.\nPeixoto, Keilla M. Maia, Lívia B. Campos and Alana A. Borges",authors:[{id:"90066",title:"Dr.",name:"Alexandre",middleName:"Rodrigues",surname:"Silva",slug:"alexandre-silva",fullName:"Alexandre Silva"},{id:"177090",title:"Dr.",name:"Alexsandra Fernandes",middleName:null,surname:"Pereira",slug:"alexsandra-fernandes-pereira",fullName:"Alexsandra Fernandes Pereira"},{id:"177093",title:"MSc.",name:"Gislayne Christianne Xavier",middleName:null,surname:"Peixoto",slug:"gislayne-christianne-xavier-peixoto",fullName:"Gislayne Christianne Xavier Peixoto"},{id:"198314",title:"Prof.",name:"Nei",middleName:null,surname:"Moreira",slug:"nei-moreira",fullName:"Nei Moreira"},{id:"198315",title:"MSc.",name:"Keilla Moreira",middleName:null,surname:"Maia",slug:"keilla-moreira-maia",fullName:"Keilla Moreira Maia"},{id:"198316",title:"MSc.",name:"Lívia Batista",middleName:null,surname:"Campos",slug:"livia-batista-campos",fullName:"Lívia Batista Campos"},{id:"198317",title:"MSc.",name:"Alana Azevedo",middleName:null,surname:"Borges",slug:"alana-azevedo-borges",fullName:"Alana Azevedo Borges"}]},{id:"76529",title:"Mastitis in Small Ruminants",slug:"mastitis-in-small-ruminants",totalDownloads:226,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Bacterial mastitis in small ruminants is a complex disease, with massive economic loss in dairy sheep/goat industry due to poor productivity. The current mastitis prevention strategy relies on culling of infected ewes or does and or the use of antimicrobial agents to eliminate the bacterial infection. This has a potential risk for developing antibiotic resistant bacteria, posing human health risk from consumption of raw sheep or goat dairy products. Existing experimental and licensed vaccines on the market are ineffective against reducing the risk of mastitis in herds or flocks. Raising the needs for development of improved vaccines against mastitis for use in sheep and goats. This review examines, current understanding of the pathological processes and immunological responses against bacterial mastitis, using S. aureus as an example. By highlighting the protective defense mechanism induced in the udder against S. aureus mastitis. Based on evidence from published studies on pathological process and protective immune response mechanism, the need for improved vaccines for prevention of mastitis in small ruminant is highlighted and the development of a vaccine capable of enhancing immune response mechanism, that reduce the establishment of intramammary infection through induction of local IgA, IgG2 and Th17 immune responses is proposed.",book:{id:"10589",slug:"mastitis-in-dairy-cattle-sheep-and-goats",title:"Mastitis in Dairy Cattle, Sheep and Goats",fullTitle:"Mastitis in Dairy Cattle, Sheep and Goats"},signatures:"Christine T. Mwenge Kahinda",authors:[{id:"335924",title:"Dr.",name:"Christine T.",middleName:"Christine",surname:"Mwenge Kahinda",slug:"christine-t.-mwenge-kahinda",fullName:"Christine T. Mwenge Kahinda"}]},{id:"55491",title:"Mitigation of the Heat Stress Impact in Livestock Reproduction",slug:"mitigation-of-the-heat-stress-impact-in-livestock-reproduction",totalDownloads:4337,totalCrossrefCites:10,totalDimensionsCites:24,abstract:"Heat stress affects the fertility and reproductive livestock performance by compromising the physiology reproductive tract, through hormonal imbalance, decreased oocyte quality and poor semen quality, and decreased embryo development and survival. Heat stress decreases the secretion of luteinizing hormone and estradiol resulting in reduced length and intensity of estrus expression, increased incidence of anoestrus and silent heat in farm animals. Oocytes exposed to thermal stress lose its competence for fertilization and development into the blastocyst stage, which results in decreased fertility because of the production of poor quality oocytes and embryos. Furthermore, low progesterone secretion limits the endometrial functions, and subsequently embryo development. In addition, the increased secretion of endometrial prostaglandin F2 alpha during heat stress threatens the maintenance of pregnancy. In general, the percentage of conception rate was found to be reduced by 4.6% for each unit increase in temperature humidity index (THI) above 70, and heat stress during pregnancy further slows down the growth of the foetus and results in lower birth weight. In tropical and subtropical regions, during hot days, the testicular temperature may increase and impair both the spermatogenic cycle and semen quality, which culminates in decreased bull fertility. The effects of heat stress on livestock can be minimized via adapting suitable scientific strategies comprising physical modifications of the environment, nutritional management and genetic development of breeds that are less sensitive to heat stress. In addition, the summer infertility may be countered through advanced reproductive technologies involving hormonal treatments, timed artificial insemination and embryo transfer, which may enhance the chances for establishing pregnancy in farm animals.",book:{id:"5861",slug:"theriogenology",title:"Theriogenology",fullTitle:"Theriogenology"},signatures:"Govindan Krishnan, Madiajagan Bagath, Prathap Pragna,\nMallenahally Kusha Vidya, Joy Aleena, Payyanakkal Ravindranathan\nArchana, Veerasamy Sejian and Raghavendra Bhatta",authors:[{id:"89780",title:"Dr.",name:"Veerasamy",middleName:null,surname:"Sejian",slug:"veerasamy-sejian",fullName:"Veerasamy Sejian"},{id:"177210",title:"Dr.",name:"Raghavendra",middleName:null,surname:"Bhatta",slug:"raghavendra-bhatta",fullName:"Raghavendra Bhatta"},{id:"177220",title:"Dr.",name:"M",middleName:null,surname:"Bagath",slug:"m-bagath",fullName:"M Bagath"},{id:"201967",title:"Dr.",name:"Govindan",middleName:null,surname:"Krishnan",slug:"govindan-krishnan",fullName:"Govindan Krishnan"},{id:"201968",title:"Ms.",name:"Archana",middleName:null,surname:"Pr",slug:"archana-pr",fullName:"Archana Pr"},{id:"201969",title:"Ms.",name:"Pragna",middleName:null,surname:"Prathap",slug:"pragna-prathap",fullName:"Pragna Prathap"},{id:"201970",title:"Ms.",name:"Aleena",middleName:null,surname:"Joy",slug:"aleena-joy",fullName:"Aleena Joy"},{id:"201971",title:"Dr.",name:"Vidya",middleName:null,surname:"Mk",slug:"vidya-mk",fullName:"Vidya Mk"}]},{id:"79839",title:"Antimicrobial Usage for the Management of Mastitis in the USA: Impacts on Antimicrobial Resistance and Potential Alternative Approaches",slug:"antimicrobial-usage-for-the-management-of-mastitis-in-the-usa-impacts-on-antimicrobial-resistance-an",totalDownloads:176,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Mastitis is the most frequently diagnosed disease of dairy cattle responsible for the reduction in milk quantity and quality and major economic losses. Dairy farmers use antibiotics for the prevention and treatment of mastitis. Frequent antimicrobial usage (AMU) undeniably increased antimicrobial resistance (AMR) in bacteria from dairy farms. Antimicrobial-resistant bacteria (ARB) from dairy farms can spread to humans directly through contact with carrier animals or indirectly through the consumption of raw milk or undercooked meat from culled dairy cows. Indirect spread from dairy farms to humans can also be through dairy manure fertilized vegetables or run-off waters from dairy farms to the environment. The most frequently used antibiotics in dairy farms are medically important and high-priority classes of antibiotics. As a result, dairy farms are considered one of the potential reservoirs of ARB and antimicrobial resistance genes (ARGs). To mitigate the rise of ARB in dairy farms, reducing AMU by adopting one or more of alternative disease control methods such as good herd health management, selective dry-cow therapy, probiotics, and others is critically important. This chapter is a concise review of the effects of antimicrobials usage to control mastitis in dairy cattle farms and its potential impact on human health.",book:{id:"10589",slug:"mastitis-in-dairy-cattle-sheep-and-goats",title:"Mastitis in Dairy Cattle, Sheep and Goats",fullTitle:"Mastitis in Dairy Cattle, Sheep and Goats"},signatures:"Benti D. Gelalcha, Getahun E. Agga and Oudessa Kerro Dego",authors:[{id:"283019",title:"Dr.",name:"Oudessa",middleName:null,surname:"Kerro Dego",slug:"oudessa-kerro-dego",fullName:"Oudessa Kerro Dego"},{id:"332974",title:"Ph.D. Student",name:"Benti D.",middleName:"Deresa",surname:"Gelalcha",slug:"benti-d.-gelalcha",fullName:"Benti D. 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",coverUrl:"https://cdn.intechopen.com/series/covers/23.jpg",latestPublicationDate:"August 17th, 2022",hasOnlineFirst:!0,numberOfPublishedBooks:0,editor:{id:"280770",title:"Dr.",name:"Katherine K.M.",middleName:null,surname:"Stavropoulos",slug:"katherine-k.m.-stavropoulos",fullName:"Katherine K.M. Stavropoulos",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRdFuQAK/Profile_Picture_2022-05-24T09:03:48.jpg",biography:"Katherine Stavropoulos received her BA in Psychology from Trinity College, in Connecticut, USA and her Ph.D. in Experimental Psychology from the University of California, San Diego. She completed her postdoctoral work at the Yale Child Study Center with Dr. James McPartland. Dr. Stavropoulos’ doctoral dissertation explored neural correlates of reward anticipation to social versus nonsocial stimuli in children with and without autism spectrum disorders (ASD). She has been a faculty member at the University of California, Riverside in the School of Education since 2016. Her research focuses on translational studies to explore the reward system in ASD, as well as how anxiety contributes to social challenges in ASD. She also investigates how behavioral interventions affect neural activity, behavior, and school performance in children with ASD. She is also involved in the diagnosis of children with ASD and is a licensed clinical psychologist in California. 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He graduated from the Physics Department of the University of Crete and continued his post-graduate studies at the University Paris 7-Denis Diderot (D.E.A. in Didactic of Physics), University Paris 5-René Descartes-Sorbonne (D.E.A. in Science Education) and received his Ph.D. degree at the University Paris 5-René Descartes-Sorbonne (PhD in Science Education). His research interests include science education in early childhood, science teaching and learning, e-learning, the use of ICT in science education, games simulations, and mobile learning. He has published over 120 articles in international conferences and journals and has served on the program committees of numerous international conferences.",institutionString:"University of Crete",institution:{name:"University of Crete",institutionURL:null,country:{name:"Greece"}}},editorTwo:{id:"422488",title:"Dr.",name:"Maria",middleName:null,surname:"Ampartzaki",slug:"maria-ampartzaki",fullName:"Maria Ampartzaki",profilePictureURL:"https://mts.intechopen.com/storage/users/422488/images/system/422488.jpg",biography:"Dr Maria Ampartzaki is an Assistant Professor in Early Childhood Education in the Department of Preschool Education at the University of Crete. Her research interests include ICT in education, science education in the early years, inquiry-based and art-based learning, teachers’ professional development, action research, and the Pedagogy of Multiliteracies, among others. She has run and participated in several funded and non-funded projects on the teaching of Science, Social Sciences, and ICT in education. She also has the experience of participating in five Erasmus+ projects.",institutionString:"University of Crete",institution:{name:"University of Crete",institutionURL:null,country:{name:"Greece"}}},editorThree:null},{id:"90",title:"Human Development",coverUrl:"https://cdn.intechopen.com/series_topics/covers/90.jpg",isOpenForSubmission:!0,editor:{id:"191040",title:"Dr.",name:"Tal",middleName:null,surname:"Dotan Ben-Soussan",slug:"tal-dotan-ben-soussan",fullName:"Tal Dotan Ben-Soussan",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bSBf1QAG/Profile_Picture_2022-03-18T07:56:11.jpg",biography:"Tal Dotan Ben-Soussan, Ph.D., is the director of the Research Institute for Neuroscience, Education and Didactics (RINED) – Paoletti Foundation. Ben-Soussan leads international studies on training and neuroplasticity from neurophysiological and psychobiological perspectives. As a neuroscientist and bio-psychologist, she has published numerous articles on neuroplasticity, movement and meditation. She acts as an editor and reviewer in several renowned journals and coordinates international conferences integrating theoretical, methodological and practical approaches on various topics, such as silence, logics and neuro-education. 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He is currently a professor at the Institute of Biomaterials and Bioengineering (IBB), Tokyo Medical and Dental University (TMDU). From 2010 to 2012, he was the dean of the Graduate School of Biomedical Science. Since 2012, he has served as the vice dean of the Graduate School of Medical and Dental Sciences. He has been the director of the IBB since 2020. Dr. Kagechika’s major research interests are the medicinal chemistry of retinoids, vitamins D/K, and nuclear receptors. 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Prof. Emeje’s several international fellowships include the prestigious Raman fellowship. He has published more than 150 articles and patents. He is also the head of R&D at NIPRD and holds a visiting professor position at Nnamdi Azikiwe University, Nigeria. He has a postgraduate certificate in Project Management from Walden University, Minnesota, as well as a professional teaching certificate and a World Bank certification in Public Procurement. Prof. Emeje was a national chairman of academic pharmacists in Nigeria and the 2021 winner of the May & Baker Nigeria Plc–sponsored prize for professional service in research and innovation.",institutionString:"National Institute for Pharmaceutical Research and Development",institution:{name:"National Institute for Pharmaceutical Research and Development",country:{name:"Nigeria"}}},{id:"436430",title:"Associate Prof.",name:"Mesut",middleName:null,surname:"Işık",slug:"mesut-isik",fullName:"Mesut Işık",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/436430/images/19686_n.jpg",biography:null,institutionString:null,institution:{name:"Bilecik University",country:{name:"Turkey"}}},{id:"268659",title:"Ms.",name:"Xianquan",middleName:null,surname:"Zhan",slug:"xianquan-zhan",fullName:"Xianquan Zhan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/268659/images/8143_n.jpg",biography:"Dr. Zhan received his undergraduate and graduate training in the fields of preventive medicine and epidemiology and statistics at the West China University of Medical Sciences in China during 1989 to 1999. He received his post-doctoral training in oncology and cancer proteomics for two years at the Cancer Research Institute of Human Medical University in China. In 2001, he went to the University of Tennessee Health Science Center (UTHSC) in USA, where he was a post-doctoral researcher and focused on mass spectrometry and cancer proteomics. Then, he was appointed as an Assistant Professor of Neurology, UTHSC in 2005. He moved to the Cleveland Clinic in USA as a Project Scientist/Staff in 2006 where he focused on the studies of eye disease proteomics and biomarkers. He returned to UTHSC as an Assistant Professor of Neurology in the end of 2007, engaging in proteomics and biomarker studies of lung diseases and brain tumors, and initiating the studies of predictive, preventive, and personalized medicine (PPPM) in cancer. In 2010, he was promoted to Associate Professor of Neurology, UTHSC. Currently, he is a Professor at Xiangya Hospital of Central South University in China, Fellow of Royal Society of Medicine (FRSM), the European EPMA National Representative in China, Regular Member of American Association for the Advancement of Science (AAAS), European Cooperation of Science and Technology (e-COST) grant evaluator, Associate Editors of BMC Genomics, BMC Medical Genomics, EPMA Journal, and Frontiers in Endocrinology, Executive Editor-in-Chief of Med One. He has\npublished 116 peer-reviewed research articles, 16 book chapters, 2 books, and 2 US patents. His current main research interest focuses on the studies of cancer proteomics and biomarkers, and the use of modern omics techniques and systems biology for PPPM in cancer, and on the development and use of 2DE-LC/MS for the large-scale study of human proteoforms.",institutionString:null,institution:{name:"Xiangya Hospital Central South University",country:{name:"China"}}},{id:"40482",title:null,name:"Rizwan",middleName:null,surname:"Ahmad",slug:"rizwan-ahmad",fullName:"Rizwan Ahmad",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/40482/images/system/40482.jpeg",biography:"Dr. Rizwan Ahmad is a University Professor and Coordinator, Quality and Development, College of Medicine, Imam Abdulrahman bin Faisal University, Saudi Arabia. Previously, he was Associate Professor of Human Function, Oman Medical College, Oman, and SBS University, Dehradun. Dr. Ahmad completed his education at Aligarh Muslim University, Aligarh. He has published several articles in peer-reviewed journals, chapters, and edited books. His area of specialization is free radical biochemistry and autoimmune diseases.",institutionString:"Imam Abdulrahman Bin Faisal University",institution:{name:"Imam Abdulrahman Bin Faisal University",country:{name:"Saudi Arabia"}}},{id:"41865",title:"Prof.",name:"Farid A.",middleName:null,surname:"Badria",slug:"farid-a.-badria",fullName:"Farid A. Badria",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/41865/images/system/41865.jpg",biography:"Farid A. Badria, Ph.D., is the recipient of several awards, including The World Academy of Sciences (TWAS) Prize for Public Understanding of Science; the World Intellectual Property Organization (WIPO) Gold Medal for best invention; Outstanding Arab Scholar, Kuwait; and the Khwarizmi International Award, Iran. He has 250 publications, 12 books, 20 patents, and several marketed pharmaceutical products to his credit. He continues to lead research projects on developing new therapies for liver, skin disorders, and cancer. Dr. Badria was listed among the world’s top 2% of scientists in medicinal and biomolecular chemistry in 2019 and 2020. He is a member of the Arab Development Fund, Kuwait; International Cell Research Organization–United Nations Educational, Scientific and Cultural Organization (ICRO–UNESCO), Chile; and UNESCO Biotechnology France",institutionString:"Mansoura University",institution:{name:"Mansoura University",country:{name:"Egypt"}}},{id:"329385",title:"Dr.",name:"Rajesh K.",middleName:"Kumar",surname:"Singh",slug:"rajesh-k.-singh",fullName:"Rajesh K. Singh",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/329385/images/system/329385.png",biography:"Dr. Singh received a BPharm (2003) and MPharm (2005) from Panjab University, Chandigarh, India, and a Ph.D. (2013) from Punjab Technical University (PTU), Jalandhar, India. He has more than sixteen years of teaching experience and has supervised numerous postgraduate and Ph.D. students. He has to his credit more than seventy papers in SCI- and SCOPUS-indexed journals, fifty-five conference proceedings, four books, six Best Paper Awards, and five projects from different government agencies. He is currently an editorial board member of eight international journals and a reviewer for more than fifty scientific journals. He received Top Reviewer and Excellent Peer Reviewer Awards from Publons in 2016 and 2017, respectively. He is also on the panel of The International Reviewer for reviewing research proposals for grants from the Royal Society. He also serves as a Publons Academy mentor and Bentham brand ambassador.",institutionString:"Punjab Technical University",institution:{name:"Punjab Technical University",country:{name:"India"}}},{id:"142388",title:"Dr.",name:"Thiago",middleName:"Gomes",surname:"Gomes Heck",slug:"thiago-gomes-heck",fullName:"Thiago Gomes Heck",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/142388/images/7259_n.jpg",biography:null,institutionString:null,institution:{name:"Universidade Regional do Noroeste do Estado do Rio Grande do Sul",country:{name:"Brazil"}}},{id:"336273",title:"Assistant Prof.",name:"Janja",middleName:null,surname:"Zupan",slug:"janja-zupan",fullName:"Janja Zupan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/336273/images/14853_n.jpeg",biography:"Janja Zupan graduated in 2005 at the Department of Clinical Biochemistry (superviser prof. dr. Janja Marc) in the field of genetics of osteoporosis. Since November 2009 she is working as a Teaching Assistant at the Faculty of Pharmacy, Department of Clinical Biochemistry. In 2011 she completed part of her research and PhD work at Institute of Genetics and Molecular Medicine, University of Edinburgh. She finished her PhD entitled The influence of the proinflammatory cytokines on the RANK/RANKL/OPG in bone tissue of osteoporotic and osteoarthritic patients in 2012. From 2014-2016 she worked at the Institute of Biomedical Sciences, University of Aberdeen as a postdoctoral research fellow on UK Arthritis research project where she gained knowledge in mesenchymal stem cells and regenerative medicine. She returned back to University of Ljubljana, Faculty of Pharmacy in 2016. She is currently leading project entitled Mesenchymal stem cells-the keepers of tissue endogenous regenerative capacity facing up to aging of the musculoskeletal system funded by Slovenian Research Agency.",institutionString:null,institution:{name:"University of Ljubljana",country:{name:"Slovenia"}}},{id:"357453",title:"Dr.",name:"Radheshyam",middleName:null,surname:"Maurya",slug:"radheshyam-maurya",fullName:"Radheshyam Maurya",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/357453/images/16535_n.jpg",biography:null,institutionString:null,institution:{name:"University of Hyderabad",country:{name:"India"}}},{id:"418340",title:"Dr.",name:"Jyotirmoi",middleName:null,surname:"Aich",slug:"jyotirmoi-aich",fullName:"Jyotirmoi Aich",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000038Ugi5QAC/Profile_Picture_2022-04-15T07:48:28.png",biography:"Biotechnologist with 15 years of research including 6 years of teaching experience. Demonstrated record of scientific achievements through consistent publication record (H index = 13, with 874 citations) in high impact journals such as Nature Communications, Oncotarget, Annals of Oncology, PNAS, and AJRCCM, etc. Strong research professional with a post-doctorate from ACTREC where I gained experimental oncology experience in clinical settings and a doctorate from IGIB where I gained expertise in asthma pathophysiology. A well-trained biotechnologist with diverse experience on the bench across different research themes ranging from asthma to cancer and other infectious diseases. An individual with a strong commitment and innovative mindset. Have the ability to work on diverse projects such as regenerative and molecular medicine with an overall mindset of improving healthcare.",institutionString:"DY Patil Deemed to Be University",institution:null},{id:"349288",title:"Prof.",name:"Soumya",middleName:null,surname:"Basu",slug:"soumya-basu",fullName:"Soumya Basu",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000035QxIDQA0/Profile_Picture_2022-04-15T07:47:01.jpg",biography:"Soumya Basu, Ph.D., is currently working as an Associate Professor at Dr. D. Y. Patil Biotechnology and Bioinformatics Institute, Dr. D. Y. Patil Vidyapeeth, Pune, Maharashtra, India. With 16+ years of trans-disciplinary research experience in Drug Design, development, and pre-clinical validation; 20+ research article publications in journals of repute, 9+ years of teaching experience, trained with cross-disciplinary education, Dr. Basu is a life-long learner and always thrives for new challenges.\r\nHer research area is the design and synthesis of small molecule partial agonists of PPAR-γ in lung cancer. She is also using artificial intelligence and deep learning methods to understand the exosomal miRNA’s role in cancer metastasis. Dr. Basu is the recipient of many awards including the Early Career Research Award from the Department of Science and Technology, Govt. of India. She is a reviewer of many journals like Molecular Biology Reports, Frontiers in Oncology, RSC Advances, PLOS ONE, Journal of Biomolecular Structure & Dynamics, Journal of Molecular Graphics and Modelling, etc. She has edited and authored/co-authored 21 journal papers, 3 book chapters, and 15 abstracts. She is a Board of Studies member at her university. She is a life member of 'The Cytometry Society”-in India and 'All India Cell Biology Society”- in India.",institutionString:"Dr. D.Y. Patil Vidyapeeth, Pune",institution:{name:"Dr. D.Y. Patil Vidyapeeth, Pune",country:{name:"India"}}},{id:"354817",title:"Dr.",name:"Anubhab",middleName:null,surname:"Mukherjee",slug:"anubhab-mukherjee",fullName:"Anubhab Mukherjee",position:null,profilePictureURL:"https://intech-files.s3.amazonaws.com/0033Y0000365PbRQAU/ProfilePicture%202022-04-15%2005%3A11%3A18.480",biography:"A former member of Laboratory of Nanomedicine, Brigham and Women’s Hospital, Harvard University, Boston, USA, Dr. Anubhab Mukherjee is an ardent votary of science who strives to make an impact in the lives of those afflicted with cancer and other chronic/acute ailments. He completed his Ph.D. from CSIR-Indian Institute of Chemical Technology, Hyderabad, India, having been skilled with RNAi, liposomal drug delivery, preclinical cell and animal studies. He pursued post-doctoral research at College of Pharmacy, Health Science Center, Texas A & M University and was involved in another postdoctoral research at Department of Translational Neurosciences and Neurotherapeutics, John Wayne Cancer Institute, Santa Monica, California. In 2015, he worked in Harvard-MIT Health Sciences & Technology as a visiting scientist. He has substantial experience in nanotechnology-based formulation development and successfully served various Indian organizations to develop pharmaceuticals and nutraceutical products. He is an inventor in many US patents and an author in many peer-reviewed articles, book chapters and books published in various media of international repute. Dr. Mukherjee is currently serving as Principal Scientist, R&D at Esperer Onco Nutrition (EON) Pvt. Ltd. and heads the Hyderabad R&D center of the organization.",institutionString:"Esperer Onco Nutrition Pvt Ltd.",institution:null},{id:"319365",title:"Assistant Prof.",name:"Manash K.",middleName:null,surname:"Paul",slug:"manash-k.-paul",fullName:"Manash K. Paul",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/319365/images/system/319365.png",biography:"Manash K. Paul is a scientist and Principal Investigator at the University of California Los Angeles. He has contributed significantly to the fields of stem cell biology, regenerative medicine, and lung cancer. His research focuses on various signaling processes involved in maintaining stem cell homeostasis during the injury-repair process, deciphering the lung stem cell niche, pulmonary disease modeling, immuno-oncology, and drug discovery. He is currently investigating the role of extracellular vesicles in premalignant lung cell migration and detecting the metastatic phenotype of lung cancer via artificial intelligence-based analyses of exosomal Raman signatures. Dr. Paul also works on spatial multiplex immunofluorescence-based tissue mapping to understand the immune repertoire in lung cancer. Dr. Paul has published in more than sixty-five peer-reviewed international journals and is highly cited. He is the recipient of many awards, including the UCLA Vice Chancellor’s award and the 2022 AAISCR-R Vijayalaxmi Award for Innovative Cancer Research. He is a senior member of the Institute of Electrical and Electronics Engineers (IEEE) and an editorial board member for several international journals.",institutionString:"University of California Los Angeles",institution:{name:"University of California Los Angeles",country:{name:"United States of America"}}},{id:"311457",title:"Dr.",name:"Júlia",middleName:null,surname:"Scherer Santos",slug:"julia-scherer-santos",fullName:"Júlia Scherer Santos",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/311457/images/system/311457.jpg",biography:"Dr. Júlia Scherer Santos works in the areas of cosmetology, nanotechnology, pharmaceutical technology, beauty, and aesthetics. Dr. Santos also has experience as a professor of graduate courses. Graduated in Pharmacy, specialization in Cosmetology and Cosmeceuticals applied to aesthetics, specialization in Aesthetic and Cosmetic Health, and a doctorate in Pharmaceutical Nanotechnology. Teaching experience in Pharmacy and Aesthetics and Cosmetics courses. She works mainly on the following subjects: nanotechnology, cosmetology, pharmaceutical technology, aesthetics.",institutionString:"Universidade Federal de Juiz de Fora",institution:{name:"Universidade Federal de Juiz de Fora",country:{name:"Brazil"}}},{id:"219081",title:"Dr.",name:"Abdulsamed",middleName:null,surname:"Kükürt",slug:"abdulsamed-kukurt",fullName:"Abdulsamed Kükürt",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/219081/images/system/219081.png",biography:"Dr. Kükürt graduated from Uludağ University in Turkey. He started his academic career as a Research Assistant in the Department of Biochemistry at Kafkas University. In 2019, he completed his Ph.D. program in the Department of Biochemistry at the Institute of Health Sciences. He is currently working at the Department of Biochemistry, Kafkas University. He has 27 published research articles in academic journals, 11 book chapters, and 37 papers. He took part in 10 academic projects. He served as a reviewer for many articles. He still serves as a member of the review board in many academic journals. He is currently working on the protective activity of phenolic compounds in disorders associated with oxidative stress and inflammation.",institutionString:null,institution:{name:"Kafkas University",country:{name:"Turkey"}}},{id:"178366",title:"Dr.",name:"Volkan",middleName:null,surname:"Gelen",slug:"volkan-gelen",fullName:"Volkan Gelen",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/178366/images/system/178366.jpg",biography:"Volkan Gelen is a Physiology specialist who received his veterinary degree from Kafkas University in 2011. Between 2011-2015, he worked as an assistant at Atatürk University, Faculty of Veterinary Medicine, Department of Physiology. In 2016, he joined Kafkas University, Faculty of Veterinary Medicine, Department of Physiology as an assistant professor. Dr. Gelen has been engaged in various academic activities at Kafkas University since 2016. There he completed 5 projects and has 3 ongoing projects. He has 60 articles published in scientific journals and 20 poster presentations in scientific congresses. His research interests include physiology, endocrine system, cancer, diabetes, cardiovascular system diseases, and isolated organ bath system studies.",institutionString:"Kafkas University",institution:{name:"Kafkas University",country:{name:"Turkey"}}},{id:"418963",title:"Dr.",name:"Augustine Ododo",middleName:"Augustine",surname:"Osagie",slug:"augustine-ododo-osagie",fullName:"Augustine Ododo Osagie",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/418963/images/16900_n.jpg",biography:"Born into the family of Osagie, a prince of the Benin Kingdom. I am currently an academic in the Department of Medical Biochemistry, University of Benin. Part of the duties are to teach undergraduate students and conduct academic research.",institutionString:null,institution:{name:"University of Benin",country:{name:"Nigeria"}}},{id:"192992",title:"Prof.",name:"Shagufta",middleName:null,surname:"Perveen",slug:"shagufta-perveen",fullName:"Shagufta Perveen",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/192992/images/system/192992.png",biography:"Prof. Shagufta Perveen is a Distinguish Professor in the Department of Pharmacognosy, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia. Dr. Perveen has acted as the principal investigator of major research projects funded by the research unit of King Saud University. She has more than ninety original research papers in peer-reviewed journals of international repute to her credit. She is a fellow member of the Royal Society of Chemistry UK and the American Chemical Society of the United States.",institutionString:"King Saud University",institution:{name:"King Saud University",country:{name:"Saudi Arabia"}}},{id:"49848",title:"Dr.",name:"Wen-Long",middleName:null,surname:"Hu",slug:"wen-long-hu",fullName:"Wen-Long Hu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/49848/images/system/49848.jpg",biography:"Wen-Long Hu is Chief of the Division of Acupuncture, Department of Chinese Medicine at Kaohsiung Chang Gung Memorial Hospital, as well as an adjunct associate professor at Fooyin University and Kaohsiung Medical University. Wen-Long is President of Taiwan Traditional Chinese Medicine Medical Association. He has 28 years of experience in clinical practice in laser acupuncture therapy and 34 years in acupuncture. He is an invited speaker for lectures and workshops in laser acupuncture at many symposiums held by medical associations. He owns the patent for herbal preparation and producing, and for the supercritical fluid-treated needle. Dr. Hu has published three books, 12 book chapters, and more than 30 papers in reputed journals, besides serving as an editorial board member of repute.",institutionString:"Kaohsiung Chang Gung Memorial Hospital",institution:{name:"Kaohsiung Chang Gung Memorial Hospital",country:{name:"Taiwan"}}},{id:"298472",title:"Prof.",name:"Andrey V.",middleName:null,surname:"Grechko",slug:"andrey-v.-grechko",fullName:"Andrey V. Grechko",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/298472/images/system/298472.png",biography:"Andrey Vyacheslavovich Grechko, Ph.D., Professor, is a Corresponding Member of the Russian Academy of Sciences. He graduated from the Semashko Moscow Medical Institute (Semashko National Research Institute of Public Health) with a degree in Medicine (1998), the Clinical Department of Dermatovenerology (2000), and received a second higher education in Psychology (2009). Professor A.V. Grechko held the position of Сhief Physician of the Central Clinical Hospital in Moscow. He worked as a professor at the faculty and was engaged in scientific research at the Medical University. Starting in 2013, he has been the initiator of the creation of the Federal Scientific and Clinical Center for Intensive Care and Rehabilitology, Moscow, Russian Federation, where he also serves as Director since 2015. He has many years of experience in research and teaching in various fields of medicine, is an author/co-author of more than 200 scientific publications, 13 patents, 15 medical books/chapters, including Chapter in Book «Metabolomics», IntechOpen, 2020 «Metabolomic Discovery of Microbiota Dysfunction as the Cause of Pathology».",institutionString:"Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology",institution:null},{id:"199461",title:"Prof.",name:"Natalia V.",middleName:null,surname:"Beloborodova",slug:"natalia-v.-beloborodova",fullName:"Natalia V. Beloborodova",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/199461/images/system/199461.jpg",biography:'Natalia Vladimirovna Beloborodova was educated at the Pirogov Russian National Research Medical University, with a degree in pediatrics in 1980, a Ph.D. in 1987, and a specialization in Clinical Microbiology from First Moscow State Medical University in 2004. She has been a Professor since 1996. Currently, she is the Head of the Laboratory of Metabolism, a division of the Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology, Moscow, Russian Federation. N.V. Beloborodova has many years of clinical experience in the field of intensive care and surgery. She studies infectious complications and sepsis. She initiated a series of interdisciplinary clinical and experimental studies based on the concept of integrating human metabolism and its microbiota. Her scientific achievements are widely known: she is the recipient of the Marie E. Coates Award \\"Best lecturer-scientist\\" Gustafsson Fund, Karolinska Institutes, Stockholm, Sweden, and the International Sepsis Forum Award, Pasteur Institute, Paris, France (2014), etc. Professor N.V. Beloborodova wrote 210 papers, five books, 10 chapters and has edited four books.',institutionString:"Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology",institution:null},{id:"354260",title:"Ph.D.",name:"Tércio Elyan",middleName:"Azevedo",surname:"Azevedo Martins",slug:"tercio-elyan-azevedo-martins",fullName:"Tércio Elyan Azevedo Martins",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/354260/images/16241_n.jpg",biography:"Graduated in Pharmacy from the Federal University of Ceará with the modality in Industrial Pharmacy, Specialist in Production and Control of Medicines from the University of São Paulo (USP), Master in Pharmaceuticals and Medicines from the University of São Paulo (USP) and Doctor of Science in the program of Pharmaceuticals and Medicines by the University of São Paulo. Professor at Universidade Paulista (UNIP) in the areas of chemistry, cosmetology and trichology. Assistant Coordinator of the Higher Course in Aesthetic and Cosmetic Technology at Universidade Paulista Campus Chácara Santo Antônio. Experience in the Pharmacy area, with emphasis on Pharmacotechnics, Pharmaceutical Technology, Research and Development of Cosmetics, acting mainly on topics such as cosmetology, antioxidant activity, aesthetics, photoprotection, cyclodextrin and thermal analysis.",institutionString:null,institution:{name:"University of Sao Paulo",country:{name:"Brazil"}}},{id:"334285",title:"Ph.D. Student",name:"Sameer",middleName:"Kumar",surname:"Jagirdar",slug:"sameer-jagirdar",fullName:"Sameer Jagirdar",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/334285/images/14691_n.jpg",biography:"I\\'m a graduate student at the center for biosystems science and engineering at the Indian Institute of Science, Bangalore, India. I am interested in studying host-pathogen interactions at the biomaterial interface.",institutionString:null,institution:{name:"Indian Institute of Science Bangalore",country:{name:"India"}}},{id:"329248",title:"Dr.",name:"Md. Faheem",middleName:null,surname:"Haider",slug:"md.-faheem-haider",fullName:"Md. Faheem Haider",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/329248/images/system/329248.jpg",biography:"Dr. Md. Faheem Haider completed his BPharm in 2012 at Integral University, Lucknow, India. In 2014, he completed his MPharm with specialization in Pharmaceutics at Babasaheb Bhimrao Ambedkar University, Lucknow, India. He received his Ph.D. degree from Jamia Hamdard University, New Delhi, India, in 2018. He was selected for the GPAT six times and his best All India Rank was 34. Currently, he is an assistant professor at Integral University. Previously he was an assistant professor at IIMT University, Meerut, India. He has experience teaching DPharm, Pharm.D, BPharm, and MPharm students. He has more than five publications in reputed journals to his credit. Dr. Faheem’s research area is the development and characterization of nanoformulation for the delivery of drugs to various organs.",institutionString:"Integral University",institution:{name:"Integral University",country:{name:"India"}}},{id:"329795",title:"Dr.",name:"Mohd Aftab",middleName:"Aftab",surname:"Siddiqui",slug:"mohd-aftab-siddiqui",fullName:"Mohd Aftab Siddiqui",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/329795/images/system/329795.png",biography:"Dr. Mohd Aftab Siddiqui is an assistant professor in the Faculty of Pharmacy, Integral University, Lucknow, India, where he obtained a Ph.D. in Pharmacology in 2020. He also obtained a BPharm and MPharm from the same university in 2013 and 2015, respectively. His area of research is the pharmacological screening of herbal drugs/natural products in liver cancer and cardiac diseases. He is a member of many professional bodies and has guided many MPharm and PharmD research projects. Dr. Siddiqui has many national and international publications and one German patent to his credit.",institutionString:"Integral University",institution:null}]}},subseries:{item:{id:"1",type:"subseries",title:"Oral Health",keywords:"Oral Health, Dental Care, Diagnosis, Diagnostic Imaging, Early Diagnosis, Oral Cancer, Conservative Treatment, Epidemiology, Comprehensive Dental Care, Complementary Therapies, Holistic Health",scope:"\r\n\tThis topic aims to provide a comprehensive overview of the latest trends in Oral Health based on recent scientific evidence. Subjects will include an overview of oral diseases and infections, systemic diseases affecting the oral cavity, prevention, diagnosis, treatment, epidemiology, as well as current clinical recommendations for the management of oral, dental, and periodontal diseases.
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