Released this past November, the list is based on data collected from the Web of Science and highlights some of the world’s most influential scientific minds by naming the researchers whose publications over the previous decade have included a high number of Highly Cited Papers placing them among the top 1% most-cited.
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We wish to congratulate all of the researchers named and especially our authors on this amazing accomplishment! We are happy and proud to share in their success!
IntechOpen is proud to announce that 191 of our authors have made the Clarivate™ Highly Cited Researchers List for 2020, ranking them among the top 1% most-cited.
\n\n
Throughout the years, the list has named a total of 261 IntechOpen authors as Highly Cited. Of those researchers, 69 have been featured on the list multiple times.
\n\n\n\n
Released this past November, the list is based on data collected from the Web of Science and highlights some of the world’s most influential scientific minds by naming the researchers whose publications over the previous decade have included a high number of Highly Cited Papers placing them among the top 1% most-cited.
\n\n
We wish to congratulate all of the researchers named and especially our authors on this amazing accomplishment! We are happy and proud to share in their success!
Note: Edited in March 2021
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In subsequent chapters of this book the reader will be familiarized with the issues related to voltage and current harmonics and inter-harmonics generation and elimination, harmonic emission of switch-mode rectifiers, reactive power flow control in power system with non-linear loads, modeling and simulation of power quality issues in power grid, advanced algorithms used for estimating harmonic components, and new methods of measurement and analysis of real time accessible power quality related data.",isbn:null,printIsbn:"978-953-51-2187-9",pdfIsbn:"978-953-51-6392-3",doi:"10.5772/59895",price:119,priceEur:129,priceUsd:155,slug:"power-quality-issues-in-distributed-generation",numberOfPages:156,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"e6a5af4c285e95291db0e96e4850883e",bookSignature:"Jaroslaw Luszcz",publishedDate:"October 21st 2015",coverURL:"https://cdn.intechopen.com/books/images_new/4791.jpg",numberOfDownloads:21232,numberOfWosCitations:15,numberOfCrossrefCitations:20,numberOfCrossrefCitationsByBook:5,numberOfDimensionsCitations:35,numberOfDimensionsCitationsByBook:3,hasAltmetrics:1,numberOfTotalCitations:70,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"November 20th 2014",dateEndSecondStepPublish:"December 11th 2014",dateEndThirdStepPublish:"March 23rd 2015",dateEndFourthStepPublish:"April 8th 2015",dateEndFifthStepPublish:"May 8th 2015",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6,7",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"24994",title:"Dr.",name:"Jaroslaw",middleName:null,surname:"Luszcz",slug:"jaroslaw-luszcz",fullName:"Jaroslaw Luszcz",profilePictureURL:"https://mts.intechopen.com/storage/users/24994/images/4357_n.jpg",biography:"Jaroslaw Luszcz received his M.Sc. and Ph.D. degrees from Gdansk University of Technology in Poland. Currently, he is at the Electrical and Control Engineering Faculty, Gdansk University of Technology. During fifteen years of professional experience in the area of power quality and electromagnetic compatibility, he has been involved in and led a number of grant-funded fundamental research projects and actively cooperated with power electronics industry as an EMC consultant for R&D projects. Mr. Luszcz has published over 50 scientific papers at international conferences and in journals, as well as three book chapters. His current research activities focus on EMC and power quality issues related to the integration of high power static converters with the power grid. Mr. Luszcz is a member of the IEEE EMC Society and Technical Committee 7 - Low Frequency EMC.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"2",totalChapterViews:"0",totalEditedBooks:"1",institution:null}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"769",title:"Power Engineering",slug:"engineering-energy-engineering-power-engineering"}],chapters:[{id:"49069",title:"Distributed Generation and Its Impact on Power Quality in Low-Voltage Distribution Networks",doi:"10.5772/61172",slug:"distributed-generation-and-its-impact-on-power-quality-in-low-voltage-distribution-networks",totalDownloads:2479,totalCrossrefCites:9,totalDimensionsCites:13,hasAltmetrics:0,abstract:"This chapter is dedicated to review and investigate present approaches to power quality assessment in low-voltage (LV) networks with distributed generation (DG). Two complementary approaches are considered: firstly, origin of the emission limits requirement for the DG is searched in general electromagnetic compatibility (EMC) conditions used for the equipment and adopted to DG; secondly, rules and regulation of integration with a power system network is used in order to estimate the possible influence of DG on power quality in point of common coupling (PCC). An example of the regulation is control of reactive power consumption in function of active power generation known as cosφ (P) characteristic. This chapter constitutes the attitude that complementary approach brings improvement to the decision about the possible impact of DG in a power system network. It was shown that a combined approach allows to define a proposition of the limits of particular power quality parameters associated with the investigated node of LV network characterized by apparent short circuit power in the PCC (SkPCC). This combination brings desirable effect of criterion, making for integration of DG with LV networks. Mentioned attitude was investigated using a real case study of a photovoltaic (PV) system consisting of three independent one-phase subsystems. Estimated influence of the investigated PV on power quality parameters in the PCC was verified using real measurement. The measurement procedure allows to verify the real influence of the investigate DG on power quality in the PCC, however, the task in not easy due to problems of separation of the searched influence from the measurement background. One of the proposed approach is to affiliate changes of investigated power quality parameters with activities of the investigated DG, e.g., energy production. As it was presented in the case of influence of the investigated PV static voltage changes or total harmonic distortion in current in the PCC, a correlation index can be also implemented in order to classify the force of the common influence.",signatures:"Tomasz Sikorski and Jacek Rezmer",downloadPdfUrl:"/chapter/pdf-download/49069",previewPdfUrl:"/chapter/pdf-preview/49069",authors:[{id:"175191",title:"D.Sc.",name:"Tomasz",surname:"Sikorski",slug:"tomasz-sikorski",fullName:"Tomasz Sikorski"},{id:"175323",title:"Dr.",name:"Jacek",surname:"Rezmer",slug:"jacek-rezmer",fullName:"Jacek Rezmer"}],corrections:null},{id:"49111",title:"Applications of Switch-Mode Rectifiers on Micro-grid Incorporating with EV and BESS",doi:"10.5772/61248",slug:"applications-of-switch-mode-rectifiers-on-micro-grid-incorporating-with-ev-and-bess",totalDownloads:2246,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:1,abstract:"A switch-mode rectifier (SMR) can provide adjustable and well-regulated DC output voltage from the available AC source with good line drawn power quality. Depending on the input/output voltage transfer characteristics, the schematics, the operation quadrant, and control, SMRs possess many classifications and application. Typical potential application examples include grid powered motor drives, battery chargers, various power electronic facilities, micro-grids, and grid-connected battery energy storage system (BESS), etc. In micro-grids, the SMR can be employed as the AC generator-followed converter to yield better generating efficiency. The SMR operation of its grid-connected inverter let the grid-to-microgrid (G2M) operation be conductable in addition to the microgrid-to-grid (M2G) operation. As for the electric vehicle (EV), the bidirectional inverter can be arranged to perform G2V/V2G operations in idle case, wherein the SMR operation is made in G2V battery charging.",signatures:"K. W. Hu and C. M. Liaw",downloadPdfUrl:"/chapter/pdf-download/49111",previewPdfUrl:"/chapter/pdf-preview/49111",authors:[{id:"37616",title:"Prof.",name:"Chang-Ming",surname:"Liaw",slug:"chang-ming-liaw",fullName:"Chang-Ming Liaw"}],corrections:null},{id:"48982",title:"A Comprehensive Modeling and Simulation of Power Quality Disturbances Using MATLAB/SIMULINK",doi:"10.5772/61209",slug:"a-comprehensive-modeling-and-simulation-of-power-quality-disturbances-using-matlab-simulink",totalDownloads:13289,totalCrossrefCites:9,totalDimensionsCites:20,hasAltmetrics:0,abstract:"This book chapter presents a comprehensive set of MATLAB/Simulink models used to simulate various power quality disturbances. The models presented include distribution line fault, induction motor starting, and transformer energizing that are used to simulate various types of voltage sag event. Capacitor bank switching model used to simulate oscillatory transient event, lightning impulse model used to simulate impulsive transient event, nonlinear load models used to simulate triplen harmonic and voltage notching disturbances generated from the load side, and lastly electric arc furnace model used to simulate flicker disturbance are also presented. This chapter presents each power quality disturbance in MATLAB/Simulink model. The presented models are used to simulate various power quality disturbances and waveforms for power quality analysis research as well as contribute to the development of power quality education and learning curriculum.",signatures:"Rodney H.G. Tan and Vigna K. Ramachandaramurthy",downloadPdfUrl:"/chapter/pdf-download/48982",previewPdfUrl:"/chapter/pdf-preview/48982",authors:[{id:"152137",title:"Dr.",name:"Vigna",surname:"Ramachandaramurthy",slug:"vigna-ramachandaramurthy",fullName:"Vigna Ramachandaramurthy"},{id:"175327",title:"Dr.",name:"Rodney",surname:"Tan",slug:"rodney-tan",fullName:"Rodney Tan"}],corrections:null},{id:"49222",title:"An Application of Simple and Compact Genetic Algorithms for Estimating Harmonic Components",doi:"10.5772/61203",slug:"an-application-of-simple-and-compact-genetic-algorithms-for-estimating-harmonic-components",totalDownloads:1655,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"This work presents an approach for the harmonic components estimation problem present in electrical power systems by making use of evolutionary algorithms. The referential data were obtained by the ATP (Alternative Transients Program) software. Compact and simple genetic algorithms were applied to estimate the parameters of non-linear function to generate a waveform as similar as possible to the one provided by the ATP software. The results yielded by the aforementioned evolutionary algorithms were then compared with one another in a number of scenarios, using the values obtained by the waveform of reference generated by the ATP software. The comparisons were used to seek evidence of which algorithm solved the problem in a setting with limited availability of computational resources. Based on the generated results, it has been found that compact genetic algorithm satisfactorily solves the proposed problem and it is the most indicated method, when less computational effort is required.",signatures:"Andre L. S. Pessoa, Pedro H. C. Ulisses, Hermes M. G. C. Branco and\nRicardo de Andrade Lira Rabêlo",downloadPdfUrl:"/chapter/pdf-download/49222",previewPdfUrl:"/chapter/pdf-preview/49222",authors:[{id:"24989",title:"Prof.",name:"Ricardo",surname:"de Andrade Lira Rabêlo",slug:"ricardo-de-andrade-lira-rabelo",fullName:"Ricardo de Andrade Lira Rabêlo"}],corrections:null},{id:"49008",title:"A Distributed Web-Based System for Temporal and Spatial Power Quality Analysis",doi:"10.5772/61145",slug:"a-distributed-web-based-system-for-temporal-and-spatial-power-quality-analysis",totalDownloads:1565,totalCrossrefCites:2,totalDimensionsCites:2,hasAltmetrics:0,abstract:"A distributed web-based system for temporal and spatial power quality analysis has been realized and tested. Connecting by internet local instruments able to perform high accuracy measurements in real time, the Power Quality information, locally measured, can be sent to a remote central server which aim is to plot them and stored the data for future analysis. The remote instruments have been realized, tested and placed in two Italian cities, Palermo and Rome, where actually work while the server works in Rome. The web application allows to select the single instrument and to show its stored PQ information.",signatures:"Stefano Di Pasquale, Sabino Giarnetti, Fabio Leccese, Daniele\nTrinca, Marco Cagnetti and Maurizio Caciotta",downloadPdfUrl:"/chapter/pdf-download/49008",previewPdfUrl:"/chapter/pdf-preview/49008",authors:[{id:"175331",title:"Prof.",name:"Fabio",surname:"Leccese",slug:"fabio-leccese",fullName:"Fabio Leccese"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"1073",title:"Wireless Power Transfer",subtitle:"Principles and Engineering Explorations",isOpenForSubmission:!1,hash:"539623d2f9a1dca563421e451940e4e1",slug:"wireless-power-transfer-principles-and-engineering-explorations",bookSignature:"Ki Young Kim",coverURL:"https://cdn.intechopen.com/books/images_new/1073.jpg",editedByType:"Edited by",editors:[{id:"12009",title:"Dr.",name:"Ki Young",surname:"Kim",slug:"ki-young-kim",fullName:"Ki Young Kim"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"5413",title:"Thermoelectrics for Power Generation",subtitle:"A Look at Trends in the Technology",isOpenForSubmission:!1,hash:"d81a819e53a5ff35501b9876d5f6b1ab",slug:"thermoelectrics-for-power-generation-a-look-at-trends-in-the-technology",bookSignature:"Sergey Skipidarov and Mikhail Nikitin",coverURL:"https://cdn.intechopen.com/books/images_new/5413.jpg",editedByType:"Edited by",editors:[{id:"16374",title:"Dr.",name:"Mikhail",surname:"Nikitin",slug:"mikhail-nikitin",fullName:"Mikhail Nikitin"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"3177",title:"Wind Power",subtitle:null,isOpenForSubmission:!1,hash:"9a5f2db2003e1dfb3beb19541b2faf87",slug:"wind-power",bookSignature:"S M Muyeen",coverURL:"https://cdn.intechopen.com/books/images_new/3177.jpg",editedByType:"Edited by",editors:[{id:"122699",title:"Prof.",name:"S. 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The book is intended to serve as a source to aid clinicians and researchers in the field, and also life science readers to increase their understanding and awareness of the clinical correlations, genetic aspects, neuropathological findings, and current therapeutic interventions in neurodegenerative diseases. I believe that this book will enlighten the curiosity for neurodegeneration and also encourage researchers to work on potentially effective molecular therapies for still mysterious neurodegenerative disorders.",isbn:"978-1-83880-150-2",printIsbn:"978-1-83880-149-6",pdfIsbn:"978-1-83880-360-5",doi:"10.5772/intechopen.83153",price:119,priceEur:129,priceUsd:155,slug:"neurodegenerative-diseases-molecular-mechanisms-and-current-therapeutic-approaches",numberOfPages:178,isOpenForSubmission:!1,isSalesforceBook:!1,isNomenclature:!1,hash:"bc8be577966ef88735677d7e1e92ed28",bookSignature:"Nagehan Ersoy Tunalı",publishedDate:"January 20th 2021",coverURL:"https://cdn.intechopen.com/books/images_new/9157.jpg",keywords:null,numberOfDownloads:7106,numberOfWosCitations:3,numberOfCrossrefCitations:5,numberOfDimensionsCitations:10,numberOfTotalCitations:18,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"March 26th 2019",dateEndSecondStepPublish:"December 31st 2019",dateEndThirdStepPublish:"February 29th 2020",dateEndFourthStepPublish:"May 19th 2020",dateEndFifthStepPublish:"July 18th 2020",dateConfirmationOfParticipation:null,remainingDaysToSecondStep:"3 years",secondStepPassed:!0,areRegistrationsClosed:!0,currentStepOfPublishingProcess:5,editedByType:"Edited by",kuFlag:!1,biosketch:null,coeditorOneBiosketch:null,coeditorTwoBiosketch:null,coeditorThreeBiosketch:null,coeditorFourBiosketch:null,coeditorFiveBiosketch:null,editors:[{id:"82778",title:"Ph.D.",name:"Nagehan",middleName:null,surname:"Ersoy Tunalı",slug:"nagehan-ersoy-tunali",fullName:"Nagehan Ersoy Tunalı",profilePictureURL:"https://mts.intechopen.com/storage/users/82778/images/system/82778.jpeg",biography:"Nagehan ERSOY TUNALI received her Ph.D., M.Sc., and B.Sc. degrees in Molecular Biology and Genetics from the Boğaziçi University, İstanbul (TR). Her Ph.D. work involved “Molecular Analysis of Polyglutamine Diseases and Investigation of the Interaction Between Huntingtin and Nuclear Receptor Corepressor”. She had the opportunity to gain experience in Huntington’s Disease (HD) research at the University of Manchester (UK), CNR-Istituto di Medicina Sperimentale e Biotecnologie (IT) and the University of Wales College of Medicine (UK). She served as the Editor-in-Chief of the Journal of Cell and Molecular Biology between 2006 and 2016. Nagehan ERSOY TUNALI is currently conducting research on genetic modifiers of HD, localization and interactions of huntingtin, molecular mechanisms of excitotoxicity in HD, diagnostic biomarker discovery in AD, and nanotechnology-based therapeutic approaches in HD and AD.",institutionString:"Istanbul Medeniyet University",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"3",totalChapterViews:"0",totalEditedBooks:"3",institution:{name:"Istanbul Medeniyet University",institutionURL:null,country:{name:"Turkey"}}}],coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"1059",title:"Neuroscience",slug:"mental-and-behavioural-disorders-and-diseases-of-the-nervous-system-neuroscience"}],chapters:[{id:"72599",title:"Cerebellum: Its Anatomy, Functions and 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1. Introduction
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Anxiety, fear and worry are all completely natural human feelings. If these feelings occur and endure for an extended period, it affects both physical and mental health. This leads to clinical anxiety disorders. There are many types of treatment available to treat anxiety disorders. This article outlines more common herbal remedies to treat anxiety disorders.
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Anxiety is an aversive emotional state, in which the feeling of fear is disproportionate to the threat (Weinberger, 2001). Anxiety is implicated in a number of psychiatric disorders, such as depression, panic attacks, phobias, generalized anxiety disorder, obsessive-compulsive disorder and post-traumatic stress disorder (Gross and Hen, 2004). Anxiety disorders are the most common class of neuropsychiatric disorders in USA (Kessler et al., 2005) and many other countries (Alonso and Lepine, 2007). The life time prevalence of panic attacks (a form of anxiety disorder) is around 7-9% in most countries and 1% alone in India with the prevalence of generalized anxiety disorder is very high i.e. 8.5% in the general population (WHO, 2001). Anxiety disorders affect 16.6% of population worldwide (Somers et al., 2006) and numerous efforts have been made to understand the pathophysiology of the disease and treatments.
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According to the Diagnostic and Statistical Manual of Mental Disorders (DSM-IV-TR), anxiety is characterized by a feeling of persistent worry that hinders an individual’s ability to relax [Diagnostic and Statistical Manual of Mental Disorders Washington D.C.: American Psychiatric Association, 4 2000]. Anxiety disorders are described and classified in DSM and several anxiety disorders share common clinical symptoms such as widespread anxiety, physiological anxiety symptoms, and behavioral disturbances.
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2. Common anxiety disorders
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2.1. Generalized anxiety disorders (GAD)
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Generalized anxiety disorder is a syndrome of ongoing anxiety and worry about many events or feelings that the patient generally recognizes as extreme and inappropriate (DSM-IV-TR). Individuals manifest both physical and psychological symptoms leading to significant distress or impairment.
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2.2. Obsessive-compulsive disorder (OCD)
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People suffering from OCD tend to have bothersome and intrusive thoughts that generate anxiety (obsession) and perform repetitive actions (compulsion). Obsessions include unwanted thoughts, impulses, or images that cause great anxiety. Compulsions include repetitive behaviors or mental acts that those affected feel driven to perform.
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2.3. Panic disorder
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People suffering from panic disorders often have panic attacks, defined as discrete periods of sudden symptom onset usually peaking in 10 minutes and can occur with most anxiety disorders.
Anxiety and other psychiatric conditions are one of the most frequent conditions seen by clinicians and often require long-term treatment with medications. Selective serotonin reuptake inhibitor (SSRI) and benzodiazepines are important class of drugs used to treat generalized anxiety disorders (Davidson, 2001; Davidson, 2009) and depression (Bhagya et al., 2008; Bhagya et al., 2011). With the increasing cost of anti-anxiety medications and their increased side effects like suicidal ideation, decreased alertness, sexual dysfunction and dependency (Hu et al., 2004; Gunnell et al., 2005; O\'brien, 2005; Lader et al., 2009), drugs of natural origin are promising alternatives to treat neuropsychiatric disorders (Kienzle-Horn, 2002; Carlini, 2003).
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3. Common herbal remedies for anxiety
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Ayurveda, the Indian traditional system of medicine uses herbs and their preparations to treat various neuropsychiatric disorders. Numerous herbs have been used for centuries in folk and other traditional medicine to calm the mind and positively enhance mood. Herbal medicine which plays an important role in developing countries, are once again becoming popular throughout developing and developed countries. Study by Sparreboom et al. (2004) revealed that use of herbal medicine is increasing enormously in the Western world. In spite of the large number of animal studies evaluating the potential anxiolytic effects of plant extracts, very few controlled studies have been conducted in a clinical setup. The efficacy and safety of utilizing these natural drugs to treat anxiety, has only just begun to be exactly tested in clinical trials within the last 10 to 15 years (Saeed et al., 2007; Garcia-Garcia et al., 2008; Kinrys et al., 2009). For instance, both Kava-kava (Piper methysticum) and St. John’s wort (Hypericum perforatum) showed beneficial effectiveness in double blind, randomized placebo controlled trials to treat anxiety and depression (Ernst, 2002). Also, extracts of valerian, hops, lemon balm and passion flower preparations have been employed for the prevention and treatment of psychiatric disorders such as anxiety, sleep disorders, convulsions, cognitive impairment and depression (Beaubrun and Gray, 2000). The commonly used herbal remedies for treating anxiety disorders are described below.
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3.1. Passion flower
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\n\t\t\t\t\tPassiflora incarnata is a folk remedy for anxiety. The anxiolytic effects of passionflower are well documented in rodents (Dhawan et al., 2001; Dhawan et al., 2002). In randomized double-blind study, passion flower extract was effective in 18 generalised anxiety disorder (GAD) out-patients as compared to oxazepam. Also, impairment in the job performance was increased in oxazepam group as compared to Passiflora extract treated group (Akhondzadeh et al., 2001). In another double-blind placebo-controlled study, preoperative oral Passiflora incarnata reduces anxiety in ambulatory surgery patients (Movafegh et al., 2008).
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3.2. Kava kava (Piper methysticum)
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There is substantial evidence that kava has a positive effect on the symptoms of anxiety disorders. Animal studies have demonstrated anti-anxiety activity of kava (Garrett et al., 2003; Bruner and Anderson, 2009). Several randomized double-blind clinical studies in GAD patients showed beneficial effect of kava-kava in reducing anxiety (Watkins et al., 2001; Connor and Davidson, 2002; Boerner et al., 2003; Sarris et al., 2009). Kava-kava was used in numerous controlled clinical studies to treat anxiety disorders, but the subjects included in these studies were heterogeneous i.e., they were diagnosed with agoraphobia, specific phobia, social phobia, adjustment disorder with anxiety (Volz and Kieser, 1997; Malsch and Kieser, 2001; Gastpar and Klimm, 2003; Lehrl, 2004). In the study by Connor & Davidson, kava extract was compared with placebo in GAD patients (2002). In another 8-week randomized, double-blind multi-center clinical trial, the efficacy of Piper methysticum was compared with two anxiolytic drugs opipramol and buspirone in GAD patients (Boerner et al., 2003). Meta-analysis study by Pittler and Ernst reinforced the anxiolytic effect of kava in generalized anxiety patients and indicated a significant reduction in anxiety parameters evaluated by the Hamilton Anxiety (HAMA) scale (Pittler and Ernst, 2000; \n\t\t\t\t\t\t2002\n\t\t\t\t\t).
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3.3. St. John’s wort (Hypericum perforatum)
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St. John’s wort is a popular supplement for treating depression but is much less popular for treating anxiety disorders. Studies conducted by Flausino et al. and Singewald et al. have shown that chronic administration of Hypericum perforatum induced an antidepressant-like effect in Magnesium-depleted mice in the forced swim test and anxiolytic effect in the elevated T-maze and the light/dark transition test (Flausino, Jr. et al., 2002; Singewald et al., 2004). St. John’s wort administration resulted in anti-anxiety effect in animal models of restraint stress and sleep deprivation (Flausino, Jr. et al., 2002; Singewald et al., 2004; Kumar and Singh, 2007; Kumar et al., 2010). Hypericum perforatum inhibits the reuptake of serotonin, noradrenaline, dopamine (Wonnemann et al., 2000) and modulates neuronal excitability via glutamatergic and GABAergic mechanisms (Langosch et al., 2002).
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Studies specifically testing the effects of St. John’s wort on patients with anxiety are extremely limited. The evidence of positive effects of St. John’s wort on anxiety disorders is weak. No placebo-controlled, randomized, double-blind trials have shown St. John’s wort to be effective in treating generalized anxiety disorder, post-traumatic stress disorder, obsessive-compulsive disorder (OCD), or phobias. Volz et al. (2002) showed that Hypericum extract to 149 out patients diagnosed with somatization disorder, undifferentiated somatoform disorder, or somatoform autonomic dysfunctions, significantly reduced anxiety scores in HAMA scale. Another open-label uncontrolled observation with 500 subjects showed beneficial effect of St. John’s wort extract in reducing anxiety disorder symptoms in patients diagnosed with depression comorbid with anxiety (Muller et al., 2003). However, stronger evidence is needed before St. John’s wort should be considered as a treatment option for patients with diagnosable anxiety disorders.
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3.4. Valeriana officinalis\n\t\t\t\t
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Valerian is one of the most popularly used herbal medicines for insomnia (Donath et al., 2000) and is also used to treat anxiety. Hydroalcoholic and aqueous extracts of valerian roots have shown affinity for the GABA-A receptor in the brains of rats (Benke et al., 2009). In humans, valerian has been successful in the treatment of insomnia and tension (Schmidt-Voigt, 1986; Vorbach, 1996; Leathwood, 1985; Donath et al., 2000; Stevinson and Ernst, 2000; Ziegler, 2002). Andreatini et al. (2002) compared the extract of Valeriana officinalis L. (81mg of valepotriates as active ingredients) with placebo and diazepam (6.5 mg) in patients with GAD (DSM-III-R, 12 patients per group). Only the diazepam and valepotriates groups showed a significant reduction in the psychic factor of HAMA scale and the preliminary data obtained in the present study suggest that the valepotriates may have a potential anxiolytic effect on the psychic symptoms of anxiety. The limitations of this study are small sample size and a low dose of diazepam, such studies should be replicated with improved methodological design.
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3.5. Ginkgo biloba\n\t\t\t\t
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Extract of Ginkgo biloba (EGb 761) significantly reduced the detrimental effect of learned helplessness in a subsequent conditioned avoidance task. In the elevated plus maze, senescent mice treated with EGb 761 spent more time in open arms than those treated with vehicle control (Ward et al., 2002). Woelke et al. (2007) compared a standardized extract of Ginkgo biloba L. (EGb 761) in doses of 480mg and 240mg with placebo for four weeks, involving patients with GAD and adjustment disorder with anxious mood (DSM-III-R). The two doses of EGb 761 showed a greater reduction in HAMA scores compared to placebo, as well as a statistically significant reduction in somatic symptoms compared to baseline (which was not observed in the placebo group).
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3.6. Galphimia glauca\n\t\t\t\t
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\n\t\t\t\t\tGalphimia glauca Cav. is a plant used in Mexican traditional medicine as a "nerve tranquilizer". Previous studies have demonstrated anxiolytic effect of methanolic extract from this plant species. Herrera-Arellano et al. (2007) conducted a controlled study comparing the extract Galphimia glauca Cav. with lorazepam in patients with GAD with 72 and 80 patients per group, respectively. Both groups of patients showed a significant reduction in scores of HAMA, without any difference between treatments.
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3.7. Matricaria recutita (chamomile)
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Chamomile is one of the most popular single ingredient of herbal teas, or tisanes. Chamomile tea, brewed from dried flower heads is used traditionally for several medicinal purposes like gastrointestinal tract ailments. Other uses include allergic rhinitis, attention deficit-hyperactivity disorder (ADHD), restlessness, insomnia, dysmenorrhea, mastitis and varicose ulcers. Chamomile contains flavonoids, which exert benzodiazepine-like activity (Avallone et al., 2000) and also has a phosphodiesterase inhibitory action, which leads to increased cAMP levels (Kuppusamy and Das, 1992). A recent study evaluated the efficacy of a standardized extract of Matricaria recutita (L), compared with placebo for eight weeks in patients with mild to moderate GAD (DSM-IV). There was a statistically significant reduction in the scores of HAMA in the group treated with extract compared to placebo-treated group (Amsterdam et al., 2009).
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3.8. Astragalus membranaceus\n\t\t\t\t
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\n\t\t\t\t\tAstragalus membranaceus (AM) is a useful Korean herb that has been clinically prescribed for stress-related illness. AM significantly restores learning and memory deficits in chronically stressed rats. In the elevated plus maze, AM treatment significantly increases the time spent in the open arms compared to control group. It also enhanced choline acetyltransferase (ChAT) expression in stressed rats (Park et al., 2009). No clinical data is available for its anxiolytic effect. But one clinical study demonstrated the protective effect of astragalous on oxidative stress status in maintenance of hemodialysis patients (Qu et al., 2008).
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4. Indian traditional herbs
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4.1. Centella asiatica (Mandookaparni or Gotu Kola)
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\n\t\t\t\t\tCentella asiatica is reputed for its beneficial effects in various neurological disorders. Gotu Kola has been used for centuries in Ayurvedic and traditional Chinese medicine to alleviate symptoms of depression and anxiety. Recent studies in the rat have shown that long-term pretreatment with Gotu Kola decreases locomotor activity, enhance elevated-plus maze performance and attenuate acoustic startle response (Chen et al., 2006; Wijeweera et al., 2006). In a double-blind, placebo-controlled study, the anxiolytic activity of Centella asiatica in healthy subjects was undertaken and compared to placebo, Gotu Kola significantly reduced peak acoustic startle response amplitude 30 and 60 minutes after treatment (Bradwejn et al., 2000). In another clinical study, 70% hydro-ethanolic extract of Centella asiatica was given to 33 participants for two months and Hamilton\'s Brief Psychiatric Rating Scale (BPRS) was used to screen the subjects. The results show that, Mandookaparni significantly attenuated anxiety related disorders (Jana et al., 2010). These preliminary findings suggest that Centella asiatica has anxiolytic activity in humans and it remains to be seen whether this herb has therapeutic efficacy in the treatment of anxiety syndromes in large population.
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4.2. Bacopa monnieri (Brahmi)\n\t\t\t\t
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In Indian traditional medicine, several herbs have been used as nerve tonics. The most popular of these herbs is brahmi, a well known memory booster. This herb is used by Ayurvedic medical practitioners for almost 3000 years. The traditional use of brahmi as an anti-anxiety remedy in Ayurvedic medicine is supported by both animal and clinical studies. Brahmi is used in Indian tradition medicine in treatment of number of brain disorders namely anxiety and poor memory (Singh and Dhawan, 1997). Pharmacologically, Bacopa monnieri comprises of five major saponins: bacoside A3, bacopaside II, bacopasaponin C isomer, bacopasaponin C and bacopaside I (Phrompittayarat et al., 2007). Bacopa monniera extract or its constituent bacosides showed anxiolytic activity in animals (Bhattacharya and Ghosal, 1998: Shankar and Singh, 2000; Singh et al., 1979: Singh and Singh, 1980) and Singh et al. (1996) suggest an involvement of the GABA-ergic activity in brahmi’s action on central nervous system. Brahmi not only enhances memory, it also shows an anti-stress effect. Pretreatment with Bacosides resulted in decrease Hsp expression in the hippocampus; it restored P450 enzyme activity and increased superoxide dismutase activity in the stressed rats. Brahmi modulates the activities of Hsp70, P450 and SOD and thereby protects the brain from deleterious effect of stress (Kar Chowdhury et al., 2002). In another study, pretreatment with brahmi restored both acute and chronic immobilization stress-induced changes in ulcer index, adrenal gland weight, creatine kinase, and aspartate aminotransferase (Rai et al., 2003). Treatment with Bacopa monnieri extract 40 mg/kg/day effectively reversed behavioral deficits of PCAPP mice in open field tests compared with non-transgenic controls (Holcomb et al., 2006).
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Previous clinical study demonstrated that administration of brahmi syrup to 35 patients diagnosed with anxiety neurosis resulted in significant decrease in anxiety symptoms and level of anxiety (Asthana et al., 1996). In a recent randomized, double-blind, placebo controlled clinical trial, effect of standardized Bacopa monniera extract in healthy elderly patients on anxiety, depression and recall memory was evaluated. Bacopa participants had enhanced delayed word recall memory scores in Rey Auditory Verbal Learning Test (AVLT) compared to placebo. Affective measures like depression scores, anxiety scores, and heart rate decreased in due course for the Bacopa group but increased for the placebo group (Calabrese et al., 2008). In a study by Stough et al., the chronic effects of brahmi extract were examined on memory function in forty six healthy human subjects aged between 18 to 60 years. The study was a double-blind placebo-controlled independent group design in which subjects were randomly allocated to one of the two treatment conditions, i.e., brahmi extract (300 mg) or placebo. Neuropsychological tests were conducted pre-baseline and at 5 and 12 weeks post-drug administration. Brahmi extract significantly improved speed of visual information processing measured by the Inspection Time, learning rate and memory consolidation measured by Auditory Verbal Learning Test, and state anxiety examined using Strait-Trait Anxiety Inventory. The results of the clinical trial suggested that brahmi extract improved higher order cognitive processes that are critically dependent on the input of information from our environment such as learning and memory (Stough et al., 2001). Another study to measure the effect of brahmi extract on human memory was conducted by Roodenrys et al. (2002). Seventy six adults aged between 40 and 65 years volunteered for the double-blind randomized, placebo control study in which various memory functions were tested and levels of anxiety measured in three testing sessions: one prior to the trial, one after three months on the trial, and one six weeks after the completion of the trial. The results showed a significant effect of brahmi on the test for the retention of new information. In the follow-up tests it was found that the rate of learning was unaffected, suggesting that brahmi decreases the rate of forgetting of newly acquired information.
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4.3. Withania somnifera (ashwagandha)\n\t\t\t\t
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This has been an important herb in use within Ayurvedic and indigenous medical systems for over 3000 years. Both preclinical and clinical studies demonstrate the use of ashwagandha for anxiety, inflammation, Parkinson’s disease, cognitive and neurological disorders. It is also used therapeutically as an adaptogen in nervous exhaustion, insomnia, debility due to stress (Mishra et al., 2000; Withania, Monograph 2004). Preclinically, the extract of Withania somnifera (WS) root exhibited anxiolytic activity in the elevated plus-maze, social interaction and feeding latency in an unfamiliar environment (Bhattacharya et al., 2000). Chronic stress-induced hyperglycemia, cognitive deficits, immunosupression and depression was attenuated by ashwagandha. The results indicate that ashwagandha has significant antistress adaptogenic activity, confirming the clinical use of the plant in Ayurveda (Bhattacharya and Muruganandam, 2003). A recent study has demonstrated the anxiolytic potential of a compound natural health product which had Withania as the main herb in an open label human trial (Seely and Singh, 2007). Also, studies have demonstrated that WS possesses GABA-mimetic properties (Kulkarni and Verma, 1993a; Mehta et al., 1991). Since GABA agonism has been linked to anxiolysis (Stahl, 1998), the extracts of WS may have beneficial effect in anxiety and related disorders. A double blind placebo control study in patients with ICD-10 anxiety disorders, 6 weeks treatment with ethanolic extract of W. somnifera showed anxiolytic activity over placebo. The extract was well tolerated and did not cause more adverse effects than placebo. So, it was concluded that the ethanolic extract of WS has useful anxiolytic potential (Andrade et al., 2000).
Mentat (BR-16A) is an herbal medication contains 20 different ingredients. The main herbs present in the mentat are Brahmi (Bacopa monnieri), Mandookparni (Centella asiatica). Ashwagandha (Withania somnifera), Jatamansi (Nardostachys jatamansi), Shankhapuspi (Evolvulus alsinoides), Tagar (Valeriana wallichi). Vach (Acorus calamus), Guduchi (Tinospora cordifolia), Malkangni (Celastrus paniculatus), Kuth (Saussurea lappa) Amla (Embelica officinalis), Terminalia chebula and Terminalia belerica. Some of these plants namely, B. monnieri, C. asiatica, W. somnifera, N. jatamansi, E. alsinoides, V. wallichi, A. calamus, T. cordifolia and C. paniculatus, have been classified in Ayurveda as Medharasayanas and claimed to improve memory and intellect (Sharma, 1978). Polyherbal formulations are generally used in Ayurveda, based on the concept that such combinations provide synergistic therapeutic effect. Mice show a natural aversion to open and high spaces and therefore, spend more time in enclosed arms. Mice receiving chronic treatment with BR-16A-Mentat (100 mg/kg) followed by ethanol failed to show any withdrawal-induced anxiety. There was a significant decrease in the time spent in closed arms. The duration and the number of entries in open arms increased significantly as compared with the ethanol withdrawn group (Kulkarni and Verma, 1993b). Also, the anti-stress effect of mentat was evident against social isolation-induced stress in mice (Kumar and Kulkarni, 2006).
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\n\t\t\t\tAgrawal et al. (1990a,b) reported that BR-16A improves memory parameters and decreases anxiety parameters in normal volunteers. Also, mentat (BR-16) brought about marked improvement in memory in all age groups and caused decrease in anxiety level and neuroticism index (Agrawal et al., 1991). Mentat in the form of syrup was given to patients of anxiety neurosis and depression in a placebo controlled study. Both anxiety and depressive patients showed memory impairment and also increased fatiguability. 3 month treatment with Mentat improved memory and decreased fatiguability in these patients (Sharma et al., 1990). Psychological problems like stress, anxiety and depression play an important role in the prognosis, quality of life as well as the survival rate of cancer patients. Treatment with mentat in cancer patients reduced stress, anxiety and depressive symptoms (Durgesh Kumar, 2000).
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Another polyherbal formulation Geriforte showed significant anxiolytic effect in clinical studies. Geriforte contains Chyavanprash concentrate and the extracts of Asparagus adscendens, Withania somnifera, Glycyrrhiza glabra, Centella asiatica, Mucuna pruriens, Shilajeet, Asparagus racemosus, Terminalia arjuna, Makardhwaj and Piper longum, besides some others. An earlier open study demonstrated the beneficial effects of Geriforte in anxiety patients as per DSM III R criteria. There was significant reduction in the total Hamilton Anxiety Rating Scale (HARS) score at the end of four weeks (Boral et al., 1989; Shah et al., 1990). Another double-blind, placebo-controlled study authors have observed improvement in HARS scores in patients of mixed anxiety-depression following 4 weeks of Geriforte treatment in comparison with placebo (Shah et al., 1993; Upadhyaya et al., 1990). Preclinical studies show that Geriforte stimulates antioxidant defense system in both mice and rats (Vandana et al., 1998). Various studies have demonstrated the efficacy of Geriforte as an anti-stress adaptogen. The prolongation of survival time and prevention of stress-induced changes in adrenals, prevention of stress-induced ulcers and milk-induced leucocytosis, indicate the anti-stress properties of Geriforte (Singh et al., 1978).
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Another common polyherbal formulation Euphytose, which is a combination of six extracts: Crataegus, Ballota, Passiflora and Valeriana, which have mild sedative effects, and Cola and Paullinia, which mainly act as mild stimulants. Euphytose reduced HAMA scores in outpatients with adjustment disorder with anxious mood in multicenter, double-blind, placebo-controlled study (Bourin et al., 1997).
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Recent preclinical studies have shown anxiolytic activity of several herbal drugs. Securidaca longepedunculata is a savannah shrub commonly used by traditional medicine practitioners in Nigeria. The aqueous root extract of Securidaca longepedunculata showed anxiolytic activity in the elevated plus maze (EPM) by significantly increasing time spent in the open arms as compared to control (Adeyemi et al., 2010). Another herbal medicine yokukansan improved age related anxiety in the open filed and EPM (Mizoguchi et al., 2010). Petiveria alliacea L has been traditionally used in South America and Brazil for anxiety and whole plant extract of Petiveria alliacea caused anxiolytic-like effects in mice subjected to the EPM (Blainski et al., 2010). Cirsium rivulare (Jacq.) All. (Asteraceae) is an herbaceous perennial plant traditionally used in Polish folk medicine to treat anxiety. In a recent study, methanolic extracts from flowers and leaves of Cirsium rivulare produced anxiolytic activity in the EPM. Extract from flowers in addition to its anxiolytic effects, improves memory of the appetitively and aversively motivated tasks (Walesiuk et al., 2010). In Brazil, Erythrina mulungu and Erythrina velutina (Fabaceae) are widely used as a tranquilizer and/or sedative, and their extract exerts an anxiolytic-like effect profile in animal models. In herbal medicine, a leaf or bark decoction or tincture from mulungu is considered to calm agitation and other disorders of the nervous system, including insomnia and depression. Chronic Erythrina mulungu exerted anxiolytic effect in the elevated T maze inhibitory avoidance and in the light/dark transition model (Onusic et al., 2003). Erythrina velutina administration increased the percentage of open arm entries in the elevated plus maze (Raupp et al., 2008). No clinical data is available to substantiate anxiolytic effect of these herbs.
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Our own studies have demonstrated the role of different herbs and herbal formulations namely Euphorbia hirta, Celastrus paniculatus Willd and Sumind in amelioration of anxiety, depression, cognitive deficits and associated neurodegeneration in these disorders (Anuradha et al., 2008; 2010; Nanjappa et al., 2007). Recent studies have shown that treatments with the crude extract of Astragalus membranaceus reduced repeated stress induced anxiety and memory loss (Park et al., 2009). In similar lines, our previous work demonstrated that Euphorbia hirta (Eh) reverses chronic immobilization stress-induced anxiety behavior in elevated plus maze and open field test. Extracts of Eh Linn have been found to possess central analgesic, antipyretic, anti-inflammatory properties in addition to its central antidepressant, sedative and anxiolytic effects (Lanhers et al., 1990; Lanhers et al., 1991; Johnson et al., 1999). The anxiolytic activity of this drug has been established in mice subjected to two-compartment, staircase and light/dark choice situation tests (Lanhers et al., 1990). Euphorbia hirta produces its anxiolytic effect in an animal model of chronic stress through GABAA receptor-benzodiazepine receptor-Cl− channel complex. Eh also appears to mediate its anxiolytic action through this complex since all of the three antagonists, flumazenil, bicuculline and picrotoxin inhibited Eh-induced increase in open arm exploration and also recovered the acetylcholinesterase (AChE) activity in discrete regions of the brain (Anuradha et al., 2008; 2010).
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\n\t\t\t\tCelastrus paniculatus Willd has been known for centuries as “the elixir of life”. Ayurveda describes drug the Jyotishmati (Celastrus paniculata) as early as 1500BC in Charaka samhita (the most ancient and authoritative text book of ayurveda) for diseases of the brain and as buddhiprada (enhancing intellect), smritiprada (enhancing memory). Jyotishmati translates as Jyoti and mati (enlightens intellect). Celastrus paniculatus (CP), a plant belonging to Celastraceae was in use from time immemorial to treat brain related disorders and to enhance learning and memory. CP treated rats exhibited a significantly increased learning curve compared with vehicle treated animals in the avoidance paradigm (Karanth et al., 1980). In another study, rats treated daily with 850 mg/kg of CP oil for 15 days exhibited a significant improvement in their retention time in a two-way passive avoidance task. CP also produced a significant decrease in the content of norepinephrine, dopamine and serotonin and certain of their respective metabolites in the brain (Nalini et al., 1995). Previous findings indicate that the aqueous extract of CP seed has cognitive-enhancing properties and an antioxidant effect might be involved (Kumar and Gupta, 2002). CP enhanced learning and memory in naïve rats when tested in a partially baited radial arm maze task by altering acetyl cholinesterase activity in the hippocampus and frontal cortex (Lekha et al., 2010a). Acute and chronic immobilisation-induced oxidative stress was restored back to normal after CP oil treatment (Lekha et al., 2010b). Recently we have demonstrated that chronic stress-induced learning impairment in radial arm maze task was restored by chronic CP oil treatment. The behavioural recovery was associated with restoration of both hippocampal long-term potentiation and cholinergic activity. This opens up the possibility of developing novel agents from nature to enhance synaptic plasticity as a means of treating a variety of psychiatric diseases, including depression (Unpublished data). An in vitro study has demonstrated neuroprotective effect of CP water extract in forebrain primary neuronal cell cultures. Pre-treatment of neuronal cells with CP-water extract significantly attenuated glutamate-induced neuronal death. Also, CP significantly and reversibly inhibited whole-cell NMDA currents (Godkar et al., 2004).
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6. Conclusion
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Despite a large number of animal studies evaluating the potential anxiolytic effects of herbal drugs, very few controlled clinical studies have been conducted. These studies have methodological problems like small number of subjects, lack of placebo and control groups, and inclusion of heterogeneous subjects and short treatment duration, which hinders consistent conclusion about these herbal preparations. Some herbs like kava-kava, gingko showed promising results with substantial clinical significance when compared with benzodiazepines, buspirone and antidepressants. Although evidence of effectiveness of herbs and their preparations in treating neuropsychiatric disorders is increasing, translating these results to treat patients effectively is slowed down by the limited knowledge regarding chemical composition of the products, lack of standardization of these preparations and the paucity of well controlled studies. Preliminary evidence suggests that herbal medicines may have a role in the treatment of anxiety disorders and warrants further research. However, we would like to clearly warn that most of the remedies are not approved for clinical use and herbal remedies are not solely alternatives of clinical treatment regimens. Also some of the herbal remedies may interact with other medicines leading to drug-drug interactions, which may cause severe side effects and in some cases it may be fatal. Accordingly, it is advised to use herbal drugs under strict supervision of qualified ayurvedic physicians with periodic follow-ups.
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Acknowledgments
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We acknowledge the financial support from the Council of Scientific and Industrial Research (CSIR), New Delhi, India through a Senior Research Associate fellowship to BV, Research grants from Department of Biotechnology (DBT) and Department of Science and Technology (DST), Government of India to BSS, Fondation pour la recherche médicale (FRM) fellowship to BNS.
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\n',keywords:null,chapterPDFUrl:"https://cdn.intechopen.com/pdfs/19371.pdf",chapterXML:"https://mts.intechopen.com/source/xml/19371.xml",downloadPdfUrl:"/chapter/pdf-download/19371",previewPdfUrl:"/chapter/pdf-preview/19371",totalDownloads:18585,totalViews:2297,totalCrossrefCites:0,totalDimensionsCites:3,totalAltmetricsMentions:1,impactScore:2,impactScorePercentile:76,impactScoreQuartile:4,hasAltmetrics:1,dateSubmitted:"November 26th 2010",dateReviewed:"April 8th 2011",datePrePublished:null,datePublished:"September 12th 2011",dateFinished:null,readingETA:"0",abstract:null,reviewType:"peer-reviewed",bibtexUrl:"/chapter/bibtex/19371",risUrl:"/chapter/ris/19371",book:{id:"511",slug:"different-views-of-anxiety-disorders"},signatures:"Bhagya Venkanna Rao, Bettadapura N. Srikumar and Byrathnahalli S. Shankaranarayana Rao",authors:[{id:"52282",title:"Prof.",name:"Byrathnahalli S.",middleName:null,surname:"Shankaranarayana Rao",fullName:"Byrathnahalli S. Shankaranarayana Rao",slug:"byrathnahalli-s.-shankaranarayana-rao",email:"bssrao@nimhans.kar.nic.in",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institution:null}],sections:[{id:"sec_1",title:"1. Introduction",level:"1"},{id:"sec_2",title:"2. Common anxiety disorders",level:"1"},{id:"sec_2_2",title:"2.1. Generalized anxiety disorders (GAD)",level:"2"},{id:"sec_3_2",title:"2.2. Obsessive-compulsive disorder (OCD)",level:"2"},{id:"sec_4_2",title:"2.3. Panic disorder",level:"2"},{id:"sec_5_2",title:"2.4. Post-traumatic stress disorder (PTSD)",level:"2"},{id:"sec_7",title:"3. Common herbal remedies for anxiety",level:"1"},{id:"sec_7_2",title:"3.1. Passion flower",level:"2"},{id:"sec_8_2",title:"3.2. Kava kava (Piper methysticum)",level:"2"},{id:"sec_9_2",title:"3.3. St. John’s wort (Hypericum perforatum)",level:"2"},{id:"sec_10_2",title:"3.4. Valeriana officinalis\n\t\t\t\t",level:"2"},{id:"sec_11_2",title:"3.5. Ginkgo biloba\n\t\t\t\t",level:"2"},{id:"sec_12_2",title:"3.6. Galphimia glauca\n\t\t\t\t",level:"2"},{id:"sec_13_2",title:"3.7. Matricaria recutita (chamomile)",level:"2"},{id:"sec_14_2",title:"3.8. Astragalus membranaceus\n\t\t\t\t",level:"2"},{id:"sec_16",title:"4. Indian traditional herbs ",level:"1"},{id:"sec_16_2",title:"4.1. Centella asiatica (Mandookaparni or Gotu Kola)",level:"2"},{id:"sec_17_2",title:"4.2. Bacopa monnieri (Brahmi)\n\t\t\t\t",level:"2"},{id:"sec_18_2",title:"4.3. Withania somnifera (ashwagandha)\n\t\t\t\t",level:"2"},{id:"sec_20",title:"5. Polyherbal formulations",level:"1"},{id:"sec_21",title:"6. Conclusion",level:"1"},{id:"sec_22",title:"Acknowledgments",level:"1"}],chapterReferences:[{id:"B1",body:'\n\t\t\t\t\n\t\t\t\t\t\n\t\t\t\t\t\t\n\t\t\t\t\t\t\tAdamec\n\t\t\t\t\t\t\tR. 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Department of Neurophysiology, National Institute of Mental Health and Neuro Sciences, Deemed University, Bengaluru, India
'},{corresp:null,contributorFullName:"Bettadapura N. Srikumar",address:null,affiliation:'
Laboratoire "Physiologie Cellulaire de la Synapse", UMR 5091 CNRS, Université Bordeaux 2, Institut François Magendie, Bordeaux Cedex, France
'},{corresp:null,contributorFullName:"Byrathnahalli S. Shankaranarayana Rao",address:null,affiliation:'
Department of Neurophysiology, National Institute of Mental Health and Neuro Sciences, Deemed University, Bengaluru, India
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1. Introduction
Energy conversion is a current concern for developing countries because the industrial development is premium strategic target and the traditional fuel is increasingly scarce. Solar thermal energy conversion is deployed massively in countries near the equator due to the availability and stability of solar intensity. Converting thermal radiation into hot air is widely applied in drying agriculture, space heating, desiccant regeneration, timber seasoning, and natural ventilation. A solar air heater (SAH) has a simple structure and is easily made from local materials [1]. However, it has the disadvantage that the convection heat transfer coefficient (HTC) of the air is low, and the heat loss is considerable. Therefore, solutions to enhance heat transfer are proposed and applied. It may be the addition of inserts into the SAH duct to remove the viscous sublayer close to the absorption plate. They can be vortex generators [2, 3, 4], baffles [5, 6, 7], fins [8], or ribs [9]. Increasing the number of air passes in the SAH duct is also a measure to reduce heat loss due to the high temperature of the absorber plate. SAH having two, three, or four passes with or without airflow recycling has demonstrated a high thermohydraulic performance. The solution method for the mathematical model of a multiple-pass SAH has always been of interest to researchers since the SAH has several glasses, absorber plate, back plate, and multiple airflows. There are two commonly used analytical models: local solution and mean solution. The local solution establishes ordinary differential equations (ODEs) along with the air temperature boundary conditions. The mean solution approximates the temperature gradients to the temperature differences in each air pass to form a system of linear algebraic equations. It is obvious that the mean solution is more straightforward than the local solution and able to calculate by hand. However, the local solution can predict the temperature of fluid flow and heat exchanger surfaces along the collector length. From these temperature profiles, temperature cross or temperature meet phenomena can be detected and local corrections can be made. Table 1 presents literature review on solutions studied on multiple-pass SAH during the last 15 years. Both the solutions are almost equally used by researchers. Typically, there are four research groups on the analytical model of multiple-pass SAH. The research group of Ho et al. employed the local solution. Meanwhile, the research teams of Velmurugan et al. and Matheswaran et al. applied the mean solution. Our research group (Phu et al.) used both the solutions.
From the above extensive literature review, there has not been a study on comparing the heat transfer model for a multiple-pass SAH using both the solutions. Hence, in this chapter, both the solutions are applied to a typical double-pass SAH to realize the mathematical model, the solution method, and the result. From the analysis in this chapter, it can be developed for a variety of air collectors and further research on hydraulics and energy performance.
2. Model description
Figure 1 depicts the physical model of a double-pass solar air heater. It consists of a glass cover, an absorber plate, and a back plate. Solar radiation penetrates the glass to the absorber plate and heats the absorber plate. Airflow travels over the plate surface and receives heat. In addition, the air can receive more heat from the glass and back plate because these surfaces absorb thermal radiation from the absorber plate. The air moves from the top to the bottom channel forming two passes. The following subsection presents the five-temperature calculation models of the double-pass SAH, including glass (Tg), air in first pass (Tf1), absorption plate (Tp), air in second pass (Tf2), and the back plate (Tb).
Figure 1.
Double-pass solar air heater.
2.1 Local solution
In this solution, the temperature of the collector components is a function of x-direction, i.e., T(x). The energy balance for the glass cover is shown in Eq. (1). Solar energy arriving at the collector (I) and absorbed by the glass is balanced with the heat exchanged by convection and radiation above the glass surface, convection to the air in the first pass, and radiation to the absorber plate [24]:
The interpretation of the symbols can be found in Table 2 and Figure 1. The heat transfer coefficients (h) can be viewed in Eqs. (16)–(20). The variation of the air temperature in the first pass in the direction of flow is described by Eq. (2). The change in air temperature is due to the convective heat exchange with the glass cover and the absorber plate [25]:
Parameter
Symbol
Value
Collector length
L
2 m
Collector width
W
0.46 m
Air channel depth
D
25 mm
Solar radiation
I
1000 W/m2
Inlet air temperature
Ta
27°C
Absorptivity of glass cover
αg
0.06
Absorptivity of absorber plate
αp
0.95
Emissivity of glass cover
εg
0.94
Emissivity of absorber plate
εp
0.94
Emissivity of back plate
εb
0.94
Transmissivity of glass cover
τg
0.84
Air specific heat
cp
1005 J/kg K
Air thermal conductivity
k
0.02566 W/m K
Thermal conductivity of insulation layer
ki
0.025 W/m K
Air viscosity
μ
0.00001858 kg/m s
Air density
ρ
1.176 kg/m3
Thickness of insulation layer
ti
50 mm
Wind velocity
Vwind
1.5 m/s
Stefan constant
Σ
5.67 × 10−8 W/m2-K4
Air mass flow rate
ṁ
0.01 kg/s
Table 2.
Input parameters.
dTf1xdx=Whf1,gTgx−Tf1x+Whf1,pTpx−Tf1xṁcp.E2
Like the glass cover, the heat balance for the absorber plate is expressed as follows:
The variation of air temperature in the second pass is
dTf2xdx=Whf2,bTbx−Tf2x+Whf2,pTpx−Tf2xṁcp.E4
The energy balance of the back plate is
hr,b,pTbx−Tpx+hf2,bTbx−Tf2x+hbTbx−Ta=0.E5
In this model, the air temperature equations are ordinary differential equations (ODEs); boundary conditions for ODEs (2) and (4) are [25]
Tf1x=0=TaE6
Tf1x=L=Tf2x=L.E7
2.2 Mean solution
In this solution, the collector temperature components (Tg, Tf1, Tp, Tf2, and Tb) are the mean temperatures. Like the five governing equations in the local solution, the five corresponding governing equations in the mean solution are written as follows:
Two new variables (Tf1,o and To) can be resolved by the arithmetic mean of terminal temperatures [16]:
Tf1=0.5Ta+Tf1,oE13
Tf2=0.5To+Tf1,o.E14
2.3 Common equations
The common equations of the two models above are presented in this section. The sky temperature (Tsky) is calculated as follows [22]:
Tsky=0.0552Ta1.5.E15
The convective heat transfer coefficient of the wind on the glass cover is written as follows [17]:
hw=5.7+3.8Vwind.E16
The radiant heat transfer coefficient of the glass cover and the sky is
hra=σεgTg2+Tsky2Tg+Tsky.E17
The radiant heat transfer coefficient of the absorber plate and the back plate is
hr,b,p=σTb2+Tp2Tb+Tp1/εb+1/εp−1.E18
The radiant heat transfer coefficient of the absorber plate and the glass cover is
hr,g,p=σTg2+Tp2Tg+Tp1/εg+1/εp−1.E19
It should be noted that in the local solution, the temperature of the collector components varies in the x-direction. Hence, the radiant heat transfer coefficients also change with the x-direction. The forced convection heat transfer coefficients of the air in the passes and surfaces (hf1,g, hf1,p, hf2,p, and hf2,b) is calculated from the following equation [22]:
h=0.018Re0.8Pr0.4k/DeE20
where Re is the Reynolds number, Pr is the Prandtl number, and De is the hydraulic diameter. These quantities can be estimated as
Re=ρDeV/μE21
Pr=μcp/kE22
De=4WD2W+D.E23
The air velocity in a pass (V) and air mass flow rate (ṁ) are correlated by
ṁ=WDρV.E24
The heat transfer coefficient from the back plate to the surroundings is evaluated as follows:
hb=ki/ti.E25
The heat gain of air received when passing through the collector is
Q=ṁcpTo−Ta.E26
The thermal efficiency of the collector is
ηth=QLWI.E27
2.4 Solution strategy and validation
Table 2 presents the fixed parameters to be entered into the mathematical models to calculate the five temperatures in the double-pass solar air heater. For the local solution, the mathematical model consists of ODEs, so a certain understanding of numerical methods and computer skills is required. In our study, we use the integral function in EES software (F-chart software). The program will calculate iteratively until the difference between the temperatures Tf1(x = L) and Tf2(x = L) is very small. For the mean solution, Eqs. (8)–(12) can be rearranged into a system of linear algebraic equations that can be solved by hand or by applying an iterative method. We also write the code in EES software because of its convenience in solving a system of equations. The computation time of the local solution is about 0.9 s. Meanwhile, the results can be obtained immediately for the mean solution. The validation of both the solutions can be seen in our previous studies [24, 25]. Figure 2a presents a comparison of the air temperature distribution along the collector length between the local solution and that of Ramani et al. [11]. Figure 2b confirms the calculation results of the collector using mean solution with the published data by Ramadan et al. [30]. It is clear that there is good agreement between the present study and the published results.
Figure 2.
Validation of local air temperature in local solution (a) [25] and collector efficiency in mean solution (b) [24].
3. Results and discussion
Figure 3 presents the fluid temperature through the two approaches. For the local solution (curves), it is possible to clearly observe that the temperature profiles rise along the flow direction. The air temperature leaving the first pass coincides with the air temperature entering the second pass, i.e., the temperatures at x = 2 m. This proves that the iterative solution has high accuracy. For the mean solution (horizontal lines), the air temperature in a pass is an average value. It is obviously deduced that the mean temperature is in the middle of the temperature distribution of the local solution, which confirms the accuracy of both the approaches.
Figure 3.
Air temperature in passes for mean solution (horizontal lines) and local solution (curves).
Figure 4 is to compare the temperatures of the heat transfer surfaces obtained by the two solutions. The glass and back plate temperatures of the two methods are quite similar. However, the absorber plate temperature of the mean solution is insignificantly higher than that of the local solution. Observing the absorber plate temperature profile in the local solution, the maximum temperature is at x = 0.7 m. This is because the two air currents across the surface of the absorber plate are in opposite directions. This complexity leads to small deviations between the two approaches in predicting the absorber plate temperature. The maximum deviation of the absorber plate temperature is 2.6%, which occurs at x = 2 m. The glass cover and back plate temperatures increase with the airflow direction, as expected. It is suggested that the back plate insulation should be as well as possible, i.e., increasing ti and decreasing ki. Thereby, the heat loss to the environment can be reduced, and the back plate temperature approaches that of the absorber plate.
Figure 4.
Temperature of plates and glass cover for mean solution (horizontal lines) and local solution (curves).
The comparison of radiant heat transfer coefficient (HTC) is shown in Figure 5. In terms of magnitude, the radiant heat transfer coefficient between the absorber plate and the back plate (hr,b,p) is the largest, and the radiant heat transfer coefficient between the glass and the sky (hra) is the smallest. These are because the temperature of the absorber plate is the highest and the temperature of the glass is the lowest. The error in the prediction of the radiant heat transfer coefficient between the absorber plate and the glass cover is the largest. This can be explained by the highest difference between the glass and absorber plate temperatures compared to other temperature differences (Figure 4).
Figure 5.
Radiant heat transfer coefficients for mean solution (horizontal lines) and local solution (curves).
Expanding the investigation, the influence of air mass flow rate in the range 0.01–0.1 kg/s on the outlet temperature and the thermal efficiency can be seen in Figure 6. As the flow increases, the temperature is reduced because the heater is well cooled. The increased flow rate increases the convection heat transfer rate, thus increasing the thermal efficiency. It can be concluded that the error in predicting the outcome parameters of the two methods is negligible. The air temperature of the mean solution is higher than that of the local solution, resulting in a higher thermal efficiency of the mean solution. The highest deviation of 2.1% is observed at the lowest airflow rate. The deviation reduced sharply with the flow rate. However, this difference is not of concern for a practical application.
Figure 6.
Outlet air temperature and thermal efficiency for local and mean solutions.
4. Conclusion
Two analytical models for calculating heat transfer in a double-pass solar air heater were presented in this chapter. These included local solution and mean solution, which were commonly used to predict the performance of multiple-pass solar heaters. Some comparative results of the two models were drawn as follows:
The deviation in the two solutions was not significant. Designers can choose one of them depending on calculation requirements and computer skills.
The mean solution was simple in calculation.
The local solution predicted the temperature distribution of plates, fluids, and glass covers.
The mean solution predicted a slightly higher temperature than that of the local solution.
Both the models can be easily customized to predict heat transfer in a solar air heater with various modifications, such as multiple-pass collector, finned or ribbed or baffled absorber plate, and airflow recirculation as well.
Conflict of interest
The authors declare no conflict of interest.
Acknowledgements
The first author acknowledges the support of time and facilities from Ho Chi Minh City University of Technology (HCMUT), VNU-HCM for this study.
\n',keywords:"temperature gradient, numerical integration, multiple-pass heat exchanger, convection heat transfer, radiation heat transfer",chapterPDFUrl:"https://cdn.intechopen.com/pdfs/82016.pdf",chapterXML:"https://mts.intechopen.com/source/xml/82016.xml",downloadPdfUrl:"/chapter/pdf-download/82016",previewPdfUrl:"/chapter/pdf-preview/82016",totalDownloads:6,totalViews:0,totalCrossrefCites:0,dateSubmitted:"February 18th 2022",dateReviewed:"May 3rd 2022",datePrePublished:"May 29th 2022",datePublished:null,dateFinished:"May 29th 2022",readingETA:"0",abstract:"Multipass air collectors are commonly used because they produce higher air temperature than that of a single-pass one due to reduced top heat loss. In this chapter, two mathematical models of convection and radiant heat transfer in a double-pass solar air heater were presented. They included an average temperature model and a model of temperature variation along the airflow direction. The method for solving these two mathematical models was reported. The average temperature model was solved by dealing with a system of linear algebraic equations, whereas the other model was derived as ordinary differential equations and solved by a numerical integration. The calculation programs were developed in EES software. The computation time of temperature variation model was about 0.9 s, but that of the average temperature model was negligible. Outcomes from two solutions were almost identical. The largest error of the outlet air temperature was 2.1%. The models are applicable to multipass collectors with or without recycling airflow.",reviewType:"peer-reviewed",bibtexUrl:"/chapter/bibtex/82016",risUrl:"/chapter/ris/82016",signatures:"Nguyen Van Hap and Nguyen Minh Phu",book:{id:"11161",type:"book",title:"Heat Transfer",subtitle:null,fullTitle:"Heat Transfer",slug:null,publishedDate:null,bookSignature:"Prof. Md Salim Newaz Kazi",coverURL:"https://cdn.intechopen.com/books/images_new/11161.jpg",licenceType:"CC BY 3.0",editedByType:null,isbn:"978-1-80355-940-7",printIsbn:"978-1-80355-939-1",pdfIsbn:"978-1-80355-941-4",isAvailableForWebshopOrdering:!0,editors:[{id:"93483",title:"Prof.",name:"Md Salim Newaz",middleName:null,surname:"Kazi",slug:"md-salim-newaz-kazi",fullName:"Md Salim Newaz Kazi"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:null,sections:[{id:"sec_1",title:"1. Introduction",level:"1"},{id:"sec_2",title:"2. Model description",level:"1"},{id:"sec_2_2",title:"2.1 Local solution",level:"2"},{id:"sec_3_2",title:"2.2 Mean solution",level:"2"},{id:"sec_4_2",title:"2.3 Common equations",level:"2"},{id:"sec_5_2",title:"2.4 Solution strategy and validation",level:"2"},{id:"sec_7",title:"3. Results and discussion",level:"1"},{id:"sec_8",title:"4. Conclusion",level:"1"},{id:"sec_13",title:"Conflict of interest",level:"1"},{id:"sec_9",title:"Acknowledgements",level:"1"}],chapterReferences:[{id:"B1",body:'Phu NM, Luan NT. A review of energy and exergy analyses of a roughened solar air heater. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences. 2021;77(2):160-175'},{id:"B2",body:'Menni Y, Ameur H. Improvement of the performance of solar channels by using vortex generators and hydrogen fluid. Journal of Thermal Analysis and Calorimetry. 2020;147:1-22'},{id:"B3",body:'Phu NM, Bao TT, Hung HN, Tu NT, Van Hap N. Analytical predictions of exergoeconomic performance of a solar air heater with surface roughness of metal waste. Journal of Thermal Analysis and Calorimetry. 2021;144(5):1727-1740'},{id:"B4",body:'Ngo TT, Zhou T, Nguyen HV, Nguyen PM, Lee GS. New design of a hot mixing chamber for lowering its surface temperature by adopting a perforated inner cylinder. Journal of Mechanical Science and Technology. 2021;35(12):5723-5731'},{id:"B5",body:'Thao PB, Truyen DC, Phu NM. CFD analysis and Taguchi-based optimization of the Thermohydraulic performance of a solar air heater duct baffled on a Back plate. Applied Sciences. 2021;11(10):4645'},{id:"B6",body:'Phu NM, Thao PB, Van Hap N. Effective efficiency assessment of a solar air heater having baffles spaced with different successive ratios. Case Studies in Thermal Engineering. 2021;28:101486'},{id:"B7",body:'Menasria F, Zedairia M, Moummi A. 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Arabian Journal for Science and Engineering. 2015;40(4):1173-1186'},{id:"B18",body:'Velmurugan P, Kalaivanan R. Thermal performance studies on multi-pass flat-plate solar air heater with longitudinal fins: An analytical approach. Arabian Journal for Science and Engineering. 2015;40(4):1141-1150'},{id:"B19",body:'Velmurugan P, Kalaivanan R. Energy and exergy analysis in double-pass solar air heater. Sādhanā. 2016;41(3):369-376'},{id:"B20",body:'Singh S, Dhiman P. Analytical and experimental investigations of packed bed solar air heaters under the collective effect of recycle ratio and fractional mass flow rate. Journal of Energy Storage. 2018;16:167-186'},{id:"B21",body:'Ho C-D, Chang H, Hsiao C-F, Huang C-C. Device performance improvement of recycling double-pass cross-corrugated solar air collectors. Energies. 2018;11(2):338'},{id:"B22",body:'Matheswaran M, Arjunan T, Somasundaram D. Analytical investigation of solar air heater with jet impingement using energy and exergy analysis. Solar Energy. 2018;161:25-37'},{id:"B23",body:'Matheswaran M, Arjunan T, Somasundaram D. Energetic, exergetic and enviro-economic analysis of parallel pass jet plate solar air heater with artificial roughness. Journal of Thermal Analysis and Calorimetry. 2019;136(1):5-19'},{id:"B24",body:'Nguyen Thanh L, Nguyen MP. First and second law evaluation of multipass flat-plate solar air collector and optimization using preference selection index method. Mathematical Problems in Engineering. 2021;2021:5563882'},{id:"B25",body:'Phu NM, Tu NT, Hap NV. Thermohydraulic performance and entropy generation of a triple-pass solar air heater with three inlets. Energies. 2021;14(19):6399'},{id:"B26",body:'Ahmadkhani A, Sadeghi G, Safarzadeh H. An in depth evaluation of matrix, external upstream and downstream recycles on a double pass flat plate solar air heater efficacy. Thermal Science and Engineering Progress. 2021;21:100789'},{id:"B27",body:'Ho C-D, Chang H, Hsiao C-F, Lin Y-C. Optimizing thermal efficiencies of double-pass cross-corrugated solar air heaters on various configurations with external recycling. Energies. 2021;14(13):4019'},{id:"B28",body:'Phu NM, Tu NT. One-dimensional modeling of triple-pass concentric tube heat exchanger in the parabolic trough solar air. The Collector. 2021. DOI: 10.5772/intechopen.100008'},{id:"B29",body:'Phu NM, Van Hap N, Nhan PT, Hien HP. A one-dimensional analysis and optimum air flow rate of a triple-pass solar air heater. In: 2021 24th International Conference on Mechatronics Technology (ICMT). Singapore: IEEE; 2021'},{id:"B30",body:'Ramadan MRI, El-Sebaii AA, Aboul-Enein S, El-Bialy E. Thermal performance of a packed bed double-pass solar air heater. Energy. 2007;32(8):1524-1535'}],footnotes:[],contributors:[{corresp:null,contributorFullName:"Nguyen Van Hap",address:null,affiliation:'
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UK Research and Innovation (former Research Councils UK (RCUK) - including AHRC, BBSRC, ESRC, EPSRC, MRC, NERC, STFC.) Processing charges for books/book chapters can be covered through RCUK block grants which are allocated to most universities in the UK, which then handle the OA publication funding requests. It is at the discretion of the university whether it will approve the request.)
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However, despite the existing belief, there is no universal RFID system on the commercial market that could be used in all user applications. All components of a developed solution should be carefully selected or designed according to the specification of objects being recognized and characteristics of their environment. In order to determine parameters of propagation or inductively coupled system, especially when it is dedicated to uncommon applications, a multiaspect analysis has to be taken into consideration. Due to complexity, the problem is reduced to analytical or experimental determination of RFID system operation range and a “trial and error” method is mostly used in the industry practice. In order to cope with the barriers existing in the RFID technology, the authors give the review of latest achievements in this field. They focus on the definition, comprehensive characteristics and determination of the antenna parameters. They also pay attention to the 3D interrogation zone (IZ) that is the main parameter in which multitude technical aspects of the RFID systems are gathered simultaneously, as regards the theoretical synthesis as well as market needs.",book:{id:"5368",slug:"radio-frequency-identification",title:"Radio Frequency Identification",fullTitle:"Radio Frequency Identification"},signatures:"Piotr Jankowski-Mihułowicz and Mariusz Węglarski",authors:[{id:"5982",title:"Associate Prof.",name:"Piotr",middleName:null,surname:"Jankowski-Mihułowicz",slug:"piotr-jankowski-mihulowicz",fullName:"Piotr Jankowski-Mihułowicz"}]},{id:"66114",doi:"10.5772/intechopen.85075",title:"Combined Deep Learning and Traditional NLP Approaches for Fire Burst Detection Based on Twitter Posts",slug:"combined-deep-learning-and-traditional-nlp-approaches-for-fire-burst-detection-based-on-twitter-post",totalDownloads:828,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"The current chapter introduces a procedure that aims at determining regions that are on fire, based on Twitter posts, as soon as possible. The proposed scheme utilizes a deep learning approach for analyzing the text of Twitter posts announcing fire bursts. Deep learning is becoming very popular within different text applications involving text generalization, text summarization, and extracting text information. A deep learning network is to be trained so as to distinguish valid Twitter fire-announcing posts from junk posts. Next, the posts labeled as valid by the network have undergone traditional NLP-based information extraction where the initial unstructured text is converted into a structured one, from which potential location and timestamp of the incident for further exploitation are derived. Analytic processing is then implemented in order to output aggregated reports which are used to finally detect potential geographical areas that are probably threatened by fire. So far, the part that has been implemented is the traditional NLP-based and has already derived promising results under real-world conditions’ testing. The deep learning enrichment is to be implemented and expected to build upon the performance of the existing architecture and further improve it.",book:{id:"8511",slug:"cyberspace",title:"Cyberspace",fullTitle:"Cyberspace"},signatures:"Konstantinos-George Thanos, Andrianna Polydouri, Antonios Danelakis, Dimitris Kyriazanos and Stelios C.A. Thomopoulos",authors:null},{id:"66610",doi:"10.5772/intechopen.85362",title:"Text Mining to Facilitate Domain Knowledge Discovery",slug:"text-mining-to-facilitate-domain-knowledge-discovery",totalDownloads:1080,totalCrossrefCites:1,totalDimensionsCites:2,abstract:"The high-precision observation and measurement techniques have accelerated the rapid development of geoscience research in the past decades and have produced large amounts of research outputs. Many findings and discoveries were recorded in the geological literature, which is regarded as unstructured data. For these data, traditional research methods have limited functions for integrating and mining them to make knowledge discovery. Text mining based on natural language processing (NLP) provides the necessary method and technology to analyze unstructured geological literature. In this book chapter, we will review the latest researches of text mining in the domain of geoscience and present results from a few case studies. The research includes three major parts: (1) structuralization of geological literature, (2) information extraction and visualization for geological literature, and (3) geological text mining to assist database construction and knowledge discovery.",book:{id:"8511",slug:"cyberspace",title:"Cyberspace",fullTitle:"Cyberspace"},signatures:"Chengbin Wang and Xiaogang Ma",authors:null}],mostDownloadedChaptersLast30Days:[{id:"68505",title:"Research Design and Methodology",slug:"research-design-and-methodology",totalDownloads:24839,totalCrossrefCites:7,totalDimensionsCites:16,abstract:"There are a number of approaches used in this research method design. The purpose of this chapter is to design the methodology of the research approach through mixed types of research techniques. The research approach also supports the researcher on how to come across the research result findings. In this chapter, the general design of the research and the methods used for data collection are explained in detail. It includes three main parts. The first part gives a highlight about the dissertation design. The second part discusses about qualitative and quantitative data collection methods. The last part illustrates the general research framework. 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Then, the chapter will discuss three aspects of 5G which are, namely, (1) Regulations, (2) security, and (3) the 5 enabling Technologies. Then, the chapter will discuss the real-life case of South Korea mobile carrier.",book:{id:"8511",slug:"cyberspace",title:"Cyberspace",fullTitle:"Cyberspace"},signatures:"Evon Abu-Taieh, Issam H. Al Hadid and Ali Zolait",authors:null},{id:"68561",title:"Cyberspace and Artificial Intelligence: The New Face of Cyber-Enhanced Hybrid Threats",slug:"cyberspace-and-artificial-intelligence-the-new-face-of-cyber-enhanced-hybrid-threats",totalDownloads:1236,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"While, until recently, cyber operations have constituted a specific subset of defense and security concerns, the synergization of cyberspace and artificial intelligence (AI), which are driving the Fourth Industrial Revolution, has raised the threat level of cyber operations, making them a centerpiece of what are called hybrid threats. The concept of hybrid threat is presently a key concern for the defense and security community; cyber-enabled and cyber-enhanced hybrid operations have been amplified in scope, frequency, speed, and threat level due to the synergies that come from the use of cyberspace and machine learning (ML)-based solutions. In the present work, we address the relevance of cyberspace-based operations and artificial intelligence for the implementation of hybrid operations and reflect on what this cyber dimension of hybrid operations implies for the concept of what constitutes a cyberweapon, the concept of hybrid human intelligence (hybrid HUMINT) and possible responses to the hybrid threat patterns.",book:{id:"8511",slug:"cyberspace",title:"Cyberspace",fullTitle:"Cyberspace"},signatures:"Carlos Pedro Gonçalves",authors:[{id:"278948",title:"Dr.",name:"Carlos Pedro",middleName:null,surname:"Gonçalves",slug:"carlos-pedro-goncalves",fullName:"Carlos Pedro Gonçalves"}]},{id:"52156",title:"Case Study: Installing RFID Systems in Supermarkets",slug:"case-study-installing-rfid-systems-in-supermarkets",totalDownloads:2471,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Radio frequency identification technology (RFID) is considered as the reference technology for wireless identification and item traceability. Supermarkets are one of those scenarios where the RFID potential can be harnessed. In theory, RFID in supermarkets shows several advantages compared with traditional barcode systems, offering real‐time inventory, stock control, cash queues, among others. In practice, its massive and global implementation is still being delayed due to the high quantity of factors that degrade the RFID system performance in these scenarios, causing uncontrolled items and identification losses and, at the end, economical losses. Some works in the scientific literature studied a single or a set of problems related to RFID performance, mostly focused on a specific communication layer: antennas and hardware design, interferences at physical layer, medium access control (MAC) protocols, security issues, or middleware challenges. However, there are no works describing in depth the set of factors affecting RFID performance in a specific scenario and contemplating the entire communication layer stack. The first challenge of this chapter is to provide a complete analysis of those physical and environmental factors, hardware and software limitations, and standard and regulation restrictions that have a direct impact on the RFID system performance in supermarkets. This analysis is addressed by communication layers, paying attention to the point of view of providers, supermarket companies, and final customers. Some of the most feasible and influential research works that address individual problems are also enumerated. Finally, taking the results extracted from this study, this chapter provides a Guide of Good Practices (GGPs), giving a global vision for addressing a successful RFID implementation project, useful for researchers, developers, and installers.",book:{id:"5368",slug:"radio-frequency-identification",title:"Radio Frequency Identification",fullTitle:"Radio Frequency Identification"},signatures:"María-Victoria Bueno‐Delgado, Francesc Burrull and Pablo Pavón‐\nMariño",authors:[{id:"186584",title:"Dr.",name:"M.V.",middleName:null,surname:"Bueno-Delgado",slug:"m.v.-bueno-delgado",fullName:"M.V. 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He also obtained an MSc in Molecular and Genetic Medicine, and a Ph.D. in Clinical Immunology and Human Genetics from the University of Sheffield, UK. He also completed a short-term fellowship in Pediatric Clinical Immunology and Bone Marrow Transplantation at Newcastle General Hospital, England. Dr. Rezaei is a Full Professor of Immunology and Vice Dean of International Affairs and Research, at the School of Medicine, Tehran University of Medical Sciences, and the co-founder and head of the Research Center for Immunodeficiencies. He is also the founding president of the Universal Scientific Education and Research Network (USERN). Dr. Rezaei has directed more than 100 research projects and has designed and participated in several international collaborative projects. He is an editor, editorial assistant, or editorial board member of more than forty international journals. He has edited more than 50 international books, presented more than 500 lectures/posters in congresses/meetings, and published more than 1,100 scientific papers in international journals.",institutionString:"Tehran University of Medical Sciences",institution:{name:"Tehran University of Medical Sciences",country:{name:"Iran"}}},{id:"180733",title:"Dr.",name:"Jean",middleName:null,surname:"Engohang-Ndong",slug:"jean-engohang-ndong",fullName:"Jean Engohang-Ndong",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/180733/images/system/180733.png",biography:"Dr. Jean Engohang-Ndong was born and raised in Gabon. After obtaining his Associate Degree of Science at the University of Science and Technology of Masuku, Gabon, he continued his education in France where he obtained his BS, MS, and Ph.D. in Medical Microbiology. He worked as a post-doctoral fellow at the Public Health Research Institute (PHRI), Newark, NJ for four years before accepting a three-year faculty position at Brigham Young University-Hawaii. Dr. Engohang-Ndong is a tenured faculty member with the academic rank of Full Professor at Kent State University, Ohio, where he teaches a wide range of biological science courses and pursues his research in medical and environmental microbiology. Recently, he expanded his research interest to epidemiology and biostatistics of chronic diseases in Gabon.",institutionString:"Kent State University",institution:{name:"Kent State University",country:{name:"United States of America"}}},{id:"188773",title:"Prof.",name:"Emmanuel",middleName:null,surname:"Drouet",slug:"emmanuel-drouet",fullName:"Emmanuel Drouet",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/188773/images/system/188773.png",biography:"Emmanuel Drouet, PharmD, is a Professor of Virology at the Faculty of Pharmacy, the University Grenoble-Alpes, France. As a head scientist at the Institute of Structural Biology in Grenoble, Dr. Drouet’s research investigates persisting viruses in humans (RNA and DNA viruses) and the balance with our host immune system. He focuses on these viruses’ effects on humans (both their impact on pathology and their symbiotic relationships in humans). He has an excellent track record in the herpesvirus field, and his group is engaged in clinical research in the field of Epstein-Barr virus diseases. He is the editor of the online Encyclopedia of Environment and he coordinates the Universal Health Coverage education program for the BioHealth Computing Schools of the European Institute of Science.",institutionString:null,institution:{name:"Grenoble Alpes University",country:{name:"France"}}},{id:"131400",title:"Prof.",name:"Alfonso J.",middleName:null,surname:"Rodriguez-Morales",slug:"alfonso-j.-rodriguez-morales",fullName:"Alfonso J. Rodriguez-Morales",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/131400/images/system/131400.png",biography:"Dr. Rodriguez-Morales is an expert in tropical and emerging diseases, particularly zoonotic and vector-borne diseases (especially arboviral diseases). He is the president of the Travel Medicine Committee of the Pan-American Infectious Diseases Association (API), as well as the president of the Colombian Association of Infectious Diseases (ACIN). He is a member of the Committee on Tropical Medicine, Zoonoses, and Travel Medicine of ACIN. He is a vice-president of the Latin American Society for Travel Medicine (SLAMVI) and a Member of the Council of the International Society for Infectious Diseases (ISID). Since 2014, he has been recognized as a Senior Researcher, at the Ministry of Science of Colombia. He is a professor at the Faculty of Medicine of the Fundacion Universitaria Autonoma de las Americas, in Pereira, Risaralda, Colombia. He is an External Professor, Master in Research on Tropical Medicine and International Health, Universitat de Barcelona, Spain. He is also a professor at the Master in Clinical Epidemiology and Biostatistics, Universidad Científica del Sur, Lima, Peru. In 2021 he has been awarded the “Raul Isturiz Award” Medal of the API. Also, in 2021, he was awarded with the “Jose Felix Patiño” Asclepius Staff Medal of the Colombian Medical College, due to his scientific contributions to COVID-19 during the pandemic. He is currently the Editor in Chief of the journal Travel Medicine and Infectious Diseases. His Scopus H index is 47 (Google Scholar H index, 68).",institutionString:"Institución Universitaria Visión de las Américas, Colombia",institution:null},{id:"332819",title:"Dr.",name:"Chukwudi Michael",middleName:"Michael",surname:"Egbuche",slug:"chukwudi-michael-egbuche",fullName:"Chukwudi Michael Egbuche",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/332819/images/14624_n.jpg",biography:"I an Dr. Chukwudi Michael Egbuche. I am a Senior Lecturer in the Department of Parasitology and Entomology, Nnamdi Azikiwe University, Awka.",institutionString:null,institution:{name:"Nnamdi Azikiwe University",country:{name:"Nigeria"}}},{id:"284232",title:"Mr.",name:"Nikunj",middleName:"U",surname:"Tandel",slug:"nikunj-tandel",fullName:"Nikunj Tandel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/284232/images/8275_n.jpg",biography:'Mr. Nikunj Tandel has completed his Master\'s degree in Biotechnology from VIT University, India in the year of 2012. He is having 8 years of research experience especially in the field of malaria epidemiology, immunology, and nanoparticle-based drug delivery system against the infectious diseases, autoimmune disorders and cancer. He has worked for the NIH funded-International Center of Excellence in Malaria Research project "Center for the study of complex malaria in India (CSCMi)" in collaboration with New York University. The preliminary objectives of the study are to understand and develop the evidence-based tools and interventions for the control and prevention of malaria in different sites of the INDIA. Alongside, with the help of next-generation genomics study, the team has studied the antimalarial drug resistance in India. Further, he has extended his research in the development of Humanized mice for the study of liver-stage malaria and identification of molecular marker(s) for the Artemisinin resistance. At present, his research focuses on understanding the role of B cells in the activation of CD8+ T cells in malaria. Received the CSIR-SRF (Senior Research Fellow) award-2018, FIMSA (Federation of Immunological Societies of Asia-Oceania) Travel Bursary award to attend the IUIS-IIS-FIMSA Immunology course-2019',institutionString:"Nirma University",institution:{name:"Nirma University",country:{name:"India"}}},{id:"334383",title:"Ph.D.",name:"Simone",middleName:"Ulrich",surname:"Ulrich Picoli",slug:"simone-ulrich-picoli",fullName:"Simone Ulrich Picoli",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/334383/images/15919_n.jpg",biography:"Graduated in Pharmacy from Universidade Luterana do Brasil (1999), Master in Agricultural and Environmental Microbiology from Federal University of Rio Grande do Sul (2002), Specialization in Clinical Microbiology from Universidade de São Paulo, USP (2007) and PhD in Sciences in Gastroenterology and Hepatology (2012). She is currently an Adjunct Professor at Feevale University in Medicine and Biomedicine courses and a permanent professor of the Academic Master\\'s Degree in Virology. She has experience in the field of Microbiology, with an emphasis on Bacteriology, working mainly on the following topics: bacteriophages, bacterial resistance, clinical microbiology and food microbiology.",institutionString:null,institution:{name:"Universidade Feevale",country:{name:"Brazil"}}},{id:"229220",title:"Dr.",name:"Amjad",middleName:"Islam",surname:"Aqib",slug:"amjad-aqib",fullName:"Amjad Aqib",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229220/images/system/229220.png",biography:"Dr. Amjad Islam Aqib obtained a DVM and MSc (Hons) from University of Agriculture Faisalabad (UAF), Pakistan, and a PhD from the University of Veterinary and Animal Sciences Lahore, Pakistan. Dr. Aqib joined the Department of Clinical Medicine and Surgery at UAF for one year as an assistant professor where he developed a research laboratory designated for pathogenic bacteria. Since 2018, he has been Assistant Professor/Officer in-charge, Department of Medicine, Manager Research Operations and Development-ORIC, and President One Health Club at Cholistan University of Veterinary and Animal Sciences, Bahawalpur, Pakistan. He has nearly 100 publications to his credit. His research interests include epidemiological patterns and molecular analysis of antimicrobial resistance and modulation and vaccine development against animal pathogens of public health concern.",institutionString:"Cholistan University of Veterinary and Animal Sciences",institution:null},{id:"62900",title:"Prof.",name:"Fethi",middleName:null,surname:"Derbel",slug:"fethi-derbel",fullName:"Fethi Derbel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/62900/images/system/62900.jpeg",biography:"Professor Fethi Derbel was born in 1960 in Tunisia. He received his medical degree from the Sousse Faculty of Medicine at Sousse, University of Sousse, Tunisia. He completed his surgical residency in General Surgery at the University Hospital Farhat Hached of Sousse and was a member of the Unit of Liver Transplantation in the University of Rennes, France. He then worked in the Department of Surgery at the Sahloul University Hospital in Sousse. Professor Derbel is presently working at the Clinique les Oliviers, Sousse, Tunisia. His hospital activities are mostly concerned with laparoscopic, colorectal, pancreatic, hepatobiliary, and gastric surgery. He is also very interested in hernia surgery and performs ventral hernia repairs and inguinal hernia repairs. He has been a member of the GREPA and Tunisian Hernia Society (THS). During his residency, he managed patients suffering from diabetic foot, and he was very interested in this pathology. For this reason, he decided to coordinate a book project dealing with the diabetic foot. Professor Derbel has published many articles in journals and collaborates intensively with IntechOpen Access Publisher as an editor.",institutionString:"Clinique les Oliviers",institution:null},{id:"300144",title:"Dr.",name:"Meriem",middleName:null,surname:"Braiki",slug:"meriem-braiki",fullName:"Meriem Braiki",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/300144/images/system/300144.jpg",biography:"Dr. Meriem Braiki is a specialist in pediatric surgeon from Tunisia. She was born in 1985. She received her medical degree from the University of Medicine at Sousse, Tunisia. She achieved her surgical residency training periods in Pediatric Surgery departments at University Hospitals in Monastir, Tunis and France.\r\nShe is currently working at the Pediatric surgery department, Sidi Bouzid Hospital, Tunisia. Her hospital activities are mostly concerned with laparoscopic, parietal, urological and digestive surgery. She has published several articles in diffrent journals.",institutionString:"Sidi Bouzid Regional Hospital",institution:null},{id:"229481",title:"Dr.",name:"Erika M.",middleName:"Martins",surname:"de Carvalho",slug:"erika-m.-de-carvalho",fullName:"Erika M. de Carvalho",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229481/images/6397_n.jpg",biography:null,institutionString:null,institution:{name:"Oswaldo Cruz Foundation",country:{name:"Brazil"}}},{id:"186537",title:"Prof.",name:"Tonay",middleName:null,surname:"Inceboz",slug:"tonay-inceboz",fullName:"Tonay Inceboz",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/186537/images/system/186537.jfif",biography:"I was graduated from Ege University of Medical Faculty (Turkey) in 1988 and completed his Med. PhD degree in Medical Parasitology at the same university. I became an Associate Professor in 2008 and Professor in 2014. I am currently working as a Professor at the Department of Medical Parasitology at Dokuz Eylul University, Izmir, Turkey.\n\nI have given many lectures, presentations in different academic meetings. I have more than 60 articles in peer-reviewed journals, 18 book chapters, 1 book editorship.\n\nMy research interests are Echinococcus granulosus, Echinococcus multilocularis (diagnosis, life cycle, in vitro and in vivo cultivation), and Trichomonas vaginalis (diagnosis, PCR, and in vitro cultivation).",institutionString:"Dokuz Eylül University",institution:{name:"Dokuz Eylül University",country:{name:"Turkey"}}},{id:"71812",title:"Prof.",name:"Hanem Fathy",middleName:"Fathy",surname:"Khater",slug:"hanem-fathy-khater",fullName:"Hanem Fathy Khater",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/71812/images/1167_n.jpg",biography:"Prof. Khater is a Professor of Parasitology at Benha University, Egypt. She studied for her doctoral degree, at the Department of Entomology, College of Agriculture, Food and Natural Resources, University of Missouri, Columbia, USA. She has completed her Ph.D. degrees in Parasitology in Egypt, from where she got the award for “the best scientific Ph.D. dissertation”. She worked at the School of Biological Sciences, Bristol, England, the UK in controlling insects of medical and veterinary importance as a grant from Newton Mosharafa, the British Council. Her research is focused on searching of pesticides against mosquitoes, house flies, lice, green bottle fly, camel nasal botfly, soft and hard ticks, mites, and the diamondback moth as well as control of several parasites using safe and natural materials to avoid drug resistances and environmental contamination.",institutionString:null,institution:{name:"Banha University",country:{name:"Egypt"}}},{id:"99780",title:"Prof.",name:"Omolade",middleName:"Olayinka",surname:"Okwa",slug:"omolade-okwa",fullName:"Omolade Okwa",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/99780/images/system/99780.jpg",biography:"Omolade Olayinka Okwa is presently a Professor of Parasitology at Lagos State University, Nigeria. She has a PhD in Parasitology (1997), an MSc in Cellular Parasitology (1992), and a BSc (Hons) Zoology (1990) all from the University of Ibadan, Nigeria. She teaches parasitology at the undergraduate and postgraduate levels. She was a recipient of a Commonwealth fellowship supported by British Council tenable at the Centre for Entomology and Parasitology (CAEP), Keele University, United Kingdom between 2004 and 2005. She was awarded an Honorary Visiting Research Fellow at the same university from 2005 to 2007. \nShe has been an external examiner to the Department of Veterinary Microbiology and Parasitology, University of Ibadan, MSc programme between 2010 and 2012. She is a member of the Nigerian Society of Experimental Biology (NISEB), Parasitology and Public Health Society of Nigeria (PPSN), Science Association of Nigeria (SAN), Zoological Society of Nigeria (ZSN), and is Vice Chairperson of the Organisation of Women in Science (OWSG), LASU chapter. She served as Head of Department of Zoology and Environmental Biology, Lagos State University from 2007 to 2010 and 2014 to 2016. She is a reviewer for several local and international journals such as Unilag Journal of Science, Libyan Journal of Medicine, Journal of Medicine and Medical Sciences, and Annual Research and Review in Science. \nShe has authored 45 scientific research publications in local and international journals, 8 scientific reviews, 4 books, and 3 book chapters, which includes the books “Malaria Parasites” and “Malaria” which are IntechOpen access publications.",institutionString:"Lagos State University",institution:{name:"Lagos State University",country:{name:"Nigeria"}}},{id:"273100",title:"Dr.",name:"Vijay",middleName:null,surname:"Gayam",slug:"vijay-gayam",fullName:"Vijay Gayam",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/273100/images/system/273100.jpeg",biography:"Dr. Vijay Bhaskar Reddy Gayam is currently practicing as an internist at Interfaith Medical Center in Brooklyn, New York, USA. He is also a Clinical Assistant Professor at the SUNY Downstate University Hospital and Adjunct Professor of Medicine at the American University of Antigua. He is a holder of an M.B.B.S. degree bestowed to him by Osmania Medical College and received his M.D. at Interfaith Medical Center. His career goals thus far have heavily focused on direct patient care, medical education, and clinical research. He currently serves in two leadership capacities; Assistant Program Director of Medicine at Interfaith Medical Center and as a Councilor for the American\r\nFederation for Medical Research. As a true academician and researcher, he has more than 50 papers indexed in international peer-reviewed journals. He has also presented numerous papers in multiple national and international scientific conferences. His areas of research interest include general internal medicine, gastroenterology and hepatology. He serves as an editor, editorial board member and reviewer for multiple international journals. His research on Hepatitis C has been very successful and has led to multiple research awards, including the 'Equity in Prevention and Treatment Award” from the New York Department of Health Viral Hepatitis Symposium (2018) and the 'Presidential Poster Award” awarded to him by the American College of Gastroenterology (2018). He was also awarded 'Outstanding Clinician in General Medicine” by Venus International Foundation for his extensive research expertise and services, perform over and above the standard expected in the advancement of healthcare, patient safety and quality of care.",institutionString:"Interfaith Medical Center",institution:{name:"Interfaith Medical Center",country:{name:"United States of America"}}},{id:"93517",title:"Dr.",name:"Clement",middleName:"Adebajo",surname:"Meseko",slug:"clement-meseko",fullName:"Clement Meseko",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/93517/images/system/93517.jpg",biography:"Dr. Clement Meseko obtained DVM and PhD degree in Veterinary Medicine and Virology respectively. He has worked for over 20 years in both private and public sectors including the academia, contributing to knowledge and control of infectious disease. Through the application of epidemiological skill, classical and molecular virological skills, he investigates viruses of economic and public health importance for the mitigation of the negative impact on people, animal and the environment in the context of Onehealth. \r\nDr. Meseko’s field experience on animal and zoonotic diseases and pathogen dynamics at the human-animal interface over the years shaped his carrier in research and scientific inquiries. He has been part of the investigation of Highly Pathogenic Avian Influenza incursions in sub Saharan Africa and monitors swine Influenza (Pandemic influenza Virus) agro-ecology and potential for interspecies transmission. He has authored and reviewed a number of journal articles and book chapters.",institutionString:"National Veterinary Research Institute",institution:{name:"National Veterinary Research Institute",country:{name:"Nigeria"}}},{id:"158026",title:"Prof.",name:"Shailendra K.",middleName:null,surname:"Saxena",slug:"shailendra-k.-saxena",fullName:"Shailendra K. Saxena",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRET3QAO/Profile_Picture_2022-05-10T10:10:26.jpeg",biography:"Professor Dr. Shailendra K. Saxena is a vice dean and professor at King George's Medical University, Lucknow, India. His research interests involve understanding the molecular mechanisms of host defense during human viral infections and developing new predictive, preventive, and therapeutic strategies for them using Japanese encephalitis virus (JEV), HIV, and emerging viruses as a model via stem cell and cell culture technologies. His research work has been published in various high-impact factor journals (Science, PNAS, Nature Medicine) with a high number of citations. He has received many awards and honors in India and abroad including various Young Scientist Awards, BBSRC India Partnering Award, and Dr. JC Bose National Award of Department of Biotechnology, Min. of Science and Technology, Govt. of India. Dr. Saxena is a fellow of various international societies/academies including the Royal College of Pathologists, United Kingdom; Royal Society of Medicine, London; Royal Society of Biology, United Kingdom; Royal Society of Chemistry, London; and Academy of Translational Medicine Professionals, Austria. He was named a Global Leader in Science by The Scientist. He is also an international opinion leader/expert in vaccination for Japanese encephalitis by IPIC (UK).",institutionString:"King George's Medical University",institution:{name:"King George's Medical University",country:{name:"India"}}},{id:"94928",title:"Dr.",name:"Takuo",middleName:null,surname:"Mizukami",slug:"takuo-mizukami",fullName:"Takuo Mizukami",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/94928/images/6402_n.jpg",biography:null,institutionString:null,institution:{name:"National Institute of Infectious Diseases",country:{name:"Japan"}}},{id:"233433",title:"Dr.",name:"Yulia",middleName:null,surname:"Desheva",slug:"yulia-desheva",fullName:"Yulia Desheva",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/233433/images/system/233433.png",biography:"Dr. Yulia Desheva is a leading researcher at the Institute of Experimental Medicine, St. Petersburg, Russia. She is a professor in the Stomatology Faculty, St. Petersburg State University. She has expertise in the development and evaluation of a wide range of live mucosal vaccines against influenza and bacterial complications. 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\r\n\tIf we aim to prosper as a society and as a species, there is no alternative to sustainability-oriented development and growth. Sustainable development is no longer a choice but a necessity for us all. Ecosystems and preserving ecosystem services and inclusive urban development present promising solutions to environmental problems. Contextually, the emphasis on studying these fields will enable us to identify and define the critical factors for territorial success in the upcoming decades to be considered by the main-actors, decision and policy makers, technicians, and public in general.
\r\n
\r\n\tHolistic urban planning and environmental management are therefore crucial spheres that will define sustainable trajectories for our urbanizing planet. This urban and environmental planning topic aims to attract contributions that address sustainable urban development challenges and solutions, including integrated urban water management, planning for the urban circular economy, monitoring of risks, contingency planning and response to disasters, among several other challenges and solutions.
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Much of biochemistry is devoted to enzymes, proteins that catalyze chemical reactions, enzyme structures, mechanisms of action and their roles within cells. Biochemistry also studies small signaling molecules, coenzymes, inhibitors, vitamins, and hormones, which play roles in life processes. Biochemical experimentation, besides coopting classical chemistry methods, e.g., chromatography, adopted new techniques, e.g., X-ray diffraction, electron microscopy, NMR, radioisotopes, and developed sophisticated microbial genetic tools, e.g., auxotroph mutants and their revertants, fermentation, etc. More recently, biochemistry embraced the ‘big data’ omics systems. 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Dr. Blumenberg’s research is focused on the epidermis, expression of keratin genes, transcription profiling, keratinocyte differentiation, inflammatory diseases and cancers, and most recently the effects of the microbiome on the skin. 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In recent years, the application of chemistry to biological molecules has gained significant interest in medicinal and pharmacological studies. This topic will be devoted to understanding the interplay between biomolecules and chemical compounds, their structure and function, and their potential applications in related fields. Being a part of the biochemistry discipline, the ideas and concepts that have emerged from Chemical Biology have affected other related areas. 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Behind these definitions are hidden all the aspects of normal and pathological functioning of all processes that the topic ‘Metabolism’ will cover within the Biochemistry Series. 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Thus proteomics, an area of research that detects all protein forms expressed in an organism, including splice isoforms and post-translational modifications, is more suitable than genomics for a comprehensive understanding of the biochemical processes that govern life. The most common proteomics applications are currently in the clinical field for the identification, in a variety of biological matrices, of biomarkers for diagnosis and therapeutic intervention of disorders. From the comparison of proteomic profiles of control and disease or different physiological states, which may emerge, changes in protein expression can provide new insights into the roles played by some proteins in human pathologies. Understanding how proteins function and interact with each other is another goal of proteomics that makes this approach even more intriguing. Specialized technology and expertise are required to assess the proteome of any biological sample. Currently, proteomics relies mainly on mass spectrometry (MS) combined with electrophoretic (1 or 2-DE-MS) and/or chromatographic techniques (LC-MS/MS). MS is an excellent tool that has gained popularity in proteomics because of its ability to gather a complex body of information such as cataloging protein expression, identifying protein modification sites, and defining protein interactions. 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