Parameters of compliance of the development strategy of transport organizations of the Russian Federation with the goals of sustainable growth. Compiled by: [37, 38].
\\n\\n
More than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\\n\\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\\n\\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\\n\\nAdditionally, each book published by IntechOpen contains original content and research findings.
\\n\\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\\n\\n\\n\\n
\\n"}]',published:!0,mainMedia:{caption:"IntechOpen Maintains",originalUrl:"/media/original/113"}},components:[{type:"htmlEditorComponent",content:'
Simba Information has released its Open Access Book Publishing 2020 - 2024 report and has again identified IntechOpen as the world’s largest Open Access book publisher by title count.
\n\nSimba Information is a leading provider for market intelligence and forecasts in the media and publishing industry. The report, published every year, provides an overview and financial outlook for the global professional e-book publishing market.
\n\nIntechOpen, De Gruyter, and Frontiers are the largest OA book publishers by title count, with IntechOpen coming in at first place with 5,101 OA books published, a good 1,782 titles ahead of the nearest competitor.
\n\nSince the first Open Access Book Publishing report published in 2016, IntechOpen has held the top stop each year.
\n\n\n\nMore than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\n\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\n\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\n\nAdditionally, each book published by IntechOpen contains original content and research findings.
\n\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\n\n\n\n
\n'}],latestNews:[{slug:"intechopen-supports-asapbio-s-new-initiative-publish-your-reviews-20220729",title:"IntechOpen Supports ASAPbio’s New Initiative Publish Your Reviews"},{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"}]},book:{item:{type:"book",id:"10719",leadTitle:null,fullTitle:"Diverticular Disease of the Colon - Recent Knowledge of Physiopathology, Endoscopic Approaches, Clinical and Surgical Treatments",title:"Diverticular Disease of the Colon",subtitle:"Recent Knowledge of Physiopathology, Endoscopic Approaches, Clinical and Surgical Treatments",reviewType:"peer-reviewed",abstract:"Diverticular Disease of the Colon - Recent Knowledge of Physiopathology, Endoscopic Approaches, Clinical and Surgical Treatments provides a comprehensive overview of diverticular disease. It explores general aspects of the disease as well as its association with the inflammatory process, complications, diagnosis, and treatment.",isbn:"978-1-83968-579-8",printIsbn:"978-1-83968-578-1",pdfIsbn:"978-1-83968-580-4",doi:"10.5772/intechopen.94689",price:119,priceEur:129,priceUsd:155,slug:"diverticular-disease-of-the-colon-recent-knowledge-of-physiopathology-endoscopic-approaches-clinical-and-surgical-treatments",numberOfPages:104,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"624e74d5b757f0d975221fdb8bf19606",bookSignature:"José Joaquim Ribeiro da Rocha and Marley Ribeiro Feitosa",publishedDate:"February 2nd 2022",coverURL:"https://cdn.intechopen.com/books/images_new/10719.jpg",numberOfDownloads:845,numberOfWosCitations:0,numberOfCrossrefCitations:0,numberOfCrossrefCitationsByBook:0,numberOfDimensionsCitations:0,numberOfDimensionsCitationsByBook:0,hasAltmetrics:0,numberOfTotalCitations:0,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"May 7th 2021",dateEndSecondStepPublish:"June 4th 2021",dateEndThirdStepPublish:"August 3rd 2021",dateEndFourthStepPublish:"October 22nd 2021",dateEndFifthStepPublish:"December 21st 2021",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"34505",title:"Prof.",name:"José Joaquim",middleName:"Joaquim",surname:"Ribeiro Da Rocha",slug:"jose-joaquim-ribeiro-da-rocha",fullName:"José Joaquim Ribeiro Da Rocha",profilePictureURL:"https://mts.intechopen.com/storage/users/34505/images/system/34505.png",biography:"Dr. José Joaquim Ribeiro da Rocha is Professor of Surgery, Faculty of Medicine, University of São Paulo, Brazil. He is also the director of the Division of Coloproctology of the Department of Surgery and Anatomy of the Faculty of Medicine of Ribeirão Preto, University of São Paulo. Dr. da Rocha has conducted research on diffuse peritonitis, intestinal anastomosis, and transanal endoscopic operations. He is editor of Coloproctology - Principles and Practices, which is now in its second edition. He earned a master’s degree and Ph.D. in Surgery at the Department of Surgery and Anatomy, University of São Paulo. He is also a coloproctology surgeon at Hospital São Paulo.",institutionString:"University of Sao Paulo",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"2",totalChapterViews:"0",totalEditedBooks:"2",institution:{name:"University of Sao Paulo",institutionURL:null,country:{name:"Brazil"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:{id:"288676",title:"Ph.D.",name:"Marley",middleName:null,surname:"Feitosa",slug:"marley-feitosa",fullName:"Marley Feitosa",profilePictureURL:"https://mts.intechopen.com/storage/users/288676/images/system/288676.png",biography:"Dr. Marley Ribeiro Feitosa is a surgeon at the Ribeirão Preto Medical School, University of São Paulo, Brazil, where he earned a Ph.D. in Surgery. He currently carries out teaching and research activities at the same university. He is also in private practice at Proctogastroclínica, São Paulo, Brazil.",institutionString:"University of Sao Paulo",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"1",totalChapterViews:"0",totalEditedBooks:"0",institution:{name:"University of Sao Paulo",institutionURL:null,country:{name:"Brazil"}}},coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"181",title:"Gastroenterology",slug:"gastroenterology"}],chapters:[{id:"79596",title:"Introductory Chapter: Diverticule Disease of the Colon—DDC",doi:"10.5772/intechopen.101573",slug:"introductory-chapter-diverticule-disease-of-the-colon-ddc",totalDownloads:86,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:null,signatures:"José Joaquim Ribeiro da Rocha and Marley Ribeiro Feitosa",downloadPdfUrl:"/chapter/pdf-download/79596",previewPdfUrl:"/chapter/pdf-preview/79596",authors:[{id:"34505",title:"Prof.",name:"José Joaquim",surname:"Ribeiro Da Rocha",slug:"jose-joaquim-ribeiro-da-rocha",fullName:"José Joaquim Ribeiro Da Rocha"},{id:"288676",title:"Ph.D.",name:"Marley",surname:"Feitosa",slug:"marley-feitosa",fullName:"Marley Feitosa"}],corrections:null},{id:"78996",title:"Segmental Colitis Associated with Diverticulosis",doi:"10.5772/intechopen.100580",slug:"segmental-colitis-associated-with-diverticulosis",totalDownloads:139,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Segmental colitis associated with diverticulosis is a pathology of recent knowledge, whose pathogenesis is still poorly defined. Diagnosis is mainly based on colonoscopy and histopathological study. Clinical features are chronic diarrhea, abdominal cramps in the lower right quadrant, and intermittent hematochezia. The diagnosis is evidenced by colonoscopy showing inflammation in the colic mucosa between the diverticula, sparing the diverticular orifice associated with an anatomopathological condition showing chronic inflammation. The involvement is preferably sigmoid and may involve a descending colon, sparing the rectum. The treatment is similar to that of inflammatory bowel diseases in mild forms, but recent studies have presented new alternatives with good results. The treatment is not yet well defined, and antibiotics, mesalamine, and corticoid therapy can be used, and surgery can even be performed for refractory cases.",signatures:"Rafael Luís Luporini, Marcel Domeniconi, Ana Carolina Parra, André Rizzo, Daniela Freitas, Sthefânia Frizol and Antonio Tursi",downloadPdfUrl:"/chapter/pdf-download/78996",previewPdfUrl:"/chapter/pdf-preview/78996",authors:[{id:"418996",title:"Prof.",name:"Rafael",surname:"Luporini",slug:"rafael-luporini",fullName:"Rafael Luporini"},{id:"435433",title:"Mr.",name:"Marcel",surname:"Domeniconi",slug:"marcel-domeniconi",fullName:"Marcel Domeniconi"},{id:"435435",title:"Ms.",name:"Ana Carolina",surname:"Parra",slug:"ana-carolina-parra",fullName:"Ana Carolina Parra"},{id:"435436",title:"Mr.",name:"André",surname:"Rizzo",slug:"andre-rizzo",fullName:"André Rizzo"},{id:"435437",title:"Ms.",name:"Daniela",surname:"Freitas",slug:"daniela-freitas",fullName:"Daniela Freitas"},{id:"435438",title:"Ms.",name:"Sthefânia",surname:"Frizol",slug:"sthefania-frizol",fullName:"Sthefânia Frizol"},{id:"437772",title:"Prof.",name:"Antonio",surname:"Tursi",slug:"antonio-tursi",fullName:"Antonio Tursi"}],corrections:null},{id:"78713",title:"Complicated Colonic Diverticular Disease – Diagnostic and Therapeutic Difficulties",doi:"10.5772/intechopen.100277",slug:"complicated-colonic-diverticular-disease-diagnostic-and-therapeutic-difficulties",totalDownloads:82,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Diverticular disease is one of the most common problems encountered by general surgeons and gastroenterologists. The term refers to complications that occur from colonic diverticulosis. In diverticular colonic disease the sigmoid colon is usually the most commonly involved, while right acute colonic diverticulitis is rarer. In establishing the diagnosis of ALCD, objective clinical examination plays an important role in addition to biological paraclinical examinations (C-reactive protein - CRP and increased leukocyte count) and radiological paraclinical examinations: CT abdomen. CRP is a useful tool in predicting the clinical severity of acute diverticulitis. The treatment applied to patients with uncomplicated colonic diverticular disease can be represented by antibiotic therapy, water regime, hydro-electrolytic rebalancing. In patients with multiple comorbidities, hemodynamic instability, the Hartmann procedure is recommended for the treatment of acute peritonitis caused by perforated colonic diverticulitis and in hemodynamically stable patients without comorbidities, colonic resection with primary anastomosis with or without stoma is suggested.",signatures:"Cristian Mesina, Theodor Viorel Dumitrescu, Mihai Calin Ciorbagiu, Cosmin Vasile Obleaga and Mihaela-Iustina Mesina Botoran",downloadPdfUrl:"/chapter/pdf-download/78713",previewPdfUrl:"/chapter/pdf-preview/78713",authors:[{id:"315413",title:"Ph.D.",name:"Cristian",surname:"Mesina",slug:"cristian-mesina",fullName:"Cristian Mesina"},{id:"315416",title:"Dr.",name:"Theodor Viorel",surname:"Dumitrescu",slug:"theodor-viorel-dumitrescu",fullName:"Theodor Viorel Dumitrescu"},{id:"315417",title:"Dr.",name:"Mihai Calin",surname:"Ciorbagiu",slug:"mihai-calin-ciorbagiu",fullName:"Mihai Calin Ciorbagiu"},{id:"315418",title:"Dr.",name:"Cosmin Vasile",surname:"Obleaga",slug:"cosmin-vasile-obleaga",fullName:"Cosmin Vasile Obleaga"},{id:"428615",title:"Dr.",name:"Mihaela-Iustina",surname:"Mesina Botoran",slug:"mihaela-iustina-mesina-botoran",fullName:"Mihaela-Iustina Mesina Botoran"}],corrections:null},{id:"79144",title:"Inflammatory Complication of Diverticular Disease",doi:"10.5772/intechopen.100460",slug:"inflammatory-complication-of-diverticular-disease",totalDownloads:157,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Diverticular disease is the most common morphological abnormality of the colon. It is increasing in prevalence proportionally to progressive aging and modern alimentary diet. The majority of the diverticular disease affects the sigmoid colon and the segmental inflammatory process can have different outcomes, from self-limited, low-grade inflammation to severe cases evolving to complications such as abscess, fistulas to different organs, free perforation and peritonitis, sepsis, intestinal obstruction, and hemorrhage. In this chapter, we will focus on a few of these complications—focal low-grade inflammation, intra-abdominal abscess, and fistulas.",signatures:"Luciano Dias de Oliveira Reis, Marcos Ricardo da Silva Rodrigues, Celso Augusto Milani Cardoso Filho, Cassiana Franco Dias dos Reis and Alex Antonio de Paula Costa",downloadPdfUrl:"/chapter/pdf-download/79144",previewPdfUrl:"/chapter/pdf-preview/79144",authors:[{id:"421131",title:"M.Sc.",name:"Luciano Dias",surname:"de Oliveira Reis",slug:"luciano-dias-de-oliveira-reis",fullName:"Luciano Dias de Oliveira Reis"},{id:"438348",title:"Dr.",name:"Marcos Ricardo da Silva",surname:"Rodrigues",slug:"marcos-ricardo-da-silva-rodrigues",fullName:"Marcos Ricardo da Silva Rodrigues"},{id:"438349",title:"Dr.",name:"Celso Augusto Milani Cardoso",surname:"Filho",slug:"celso-augusto-milani-cardoso-filho",fullName:"Celso Augusto Milani Cardoso Filho"},{id:"438350",title:"Dr.",name:"Cassiana Franco Dias dos",surname:"Reis",slug:"cassiana-franco-dias-dos-reis",fullName:"Cassiana Franco Dias dos Reis"},{id:"438351",title:"Dr.",name:"Alex Antonio de Paula",surname:"Costa",slug:"alex-antonio-de-paula-costa",fullName:"Alex Antonio de Paula Costa"}],corrections:null},{id:"79124",title:"The Use of Antibiotics in Diverticulitis: An Update in Non-operative Management",doi:"10.5772/intechopen.100578",slug:"the-use-of-antibiotics-in-diverticulitis-an-update-in-non-operative-management",totalDownloads:199,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Diverticulosis is a common disease among Western and developed nations. Approximately 20% of patients with diverticulosis will become symptomatic. Acute diverticulitis is a common manifestation of diverticular disease. Different classifications exist to try to categorize it but, it is generally considered as complicated or uncomplicated. Eighty-five percent of patients with an acute onset of diverticulitis will have an uncomplicated presentation. The best way to assess the degree and severity of the disease is a CT scan along with some biochemical parameters like CRP. Recent guidelines from associations all over the world accept non-antibiotic therapy as a valid strategy of treatment for the non-complicated diverticulitis. Antibiotics are still compulsory in immune-compromised patients, the elderly, those with comorbidities, and those with signs of sepsis. Recommendations should be made on a case-by-case basis.",signatures:"Mariana Morales-Cruz and Paulina Moctezuma Velázquez",downloadPdfUrl:"/chapter/pdf-download/79124",previewPdfUrl:"/chapter/pdf-preview/79124",authors:[{id:"277767",title:"M.D.",name:"Mariana",surname:"Morales-Cruz",slug:"mariana-morales-cruz",fullName:"Mariana Morales-Cruz"},{id:"421216",title:"Dr.",name:"Paulina",surname:"Moctezuma Velázquez",slug:"paulina-moctezuma-velazquez",fullName:"Paulina Moctezuma Velázquez"}],corrections:null},{id:"78412",title:"Colonoscopy after Diverticulitis",doi:"10.5772/intechopen.99921",slug:"colonoscopy-after-diverticulitis",totalDownloads:183,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Patients suffering from diverticulitis are at increased risk for colorectal cancer and should undergo colonoscopy to rule out colorectal cancer. The prevalence of colorectal cancer in this population was estimated to range between 1.9 and 2.3%. This prevalence is higher in patients with complicated diverticulitis (abscess, perforation) and ranges between 6.1% and 7.9%. Therefore, interval colonoscopy is strongly recommended after an episode of complicated diverticulitis. The prevalence of colorectal cancer is lower in patients with uncomplicated diverticulitis and approaches the prevalence from screened populations. 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\r\n\r\n\tThe book intends to revisit some of the typical prison problems (e.g., overcrowding, violence, mental health, drugs, sexuality, suicide, etc) in light of recent research, also providing international indicators of how recidivism is influenced by the way governments change their penal laws. The efficacy of correctional treatment programs and community-based programs on offenders’ recidivism rates will be also discussed. Studies concerning specific groups of the prison population – female prisoners, young prisoners, lifers, but also guards, and other staff members – will be considered to allow the implementation of tailored interventions.
\r\n\r\n\tFinally, the discussion about the future of the prison system and the alternatives related to community sentences or other diversion strategies will be considered, in light of corrections’ sustainability and under the therapeutic justice paradigm.
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Wood is a sustainable and renewable bio-composite material, which has a long history of serving human beings in the form of fuel, construction materials, furniture, paper, sports equipment, musical instruments, and transportation components. Wood is “manufactured” in a living tree with aims to grow it by transporting water and minerals and providing strength and rigidity to anchor it to the ground. A tree is optimally “designed” to resist the loads created by gravity, wind, snow, and others, rather than produce lumber and boards. The anatomical structure of wood is adapted to generate maximum strength in the stressed directions; yet in other directions, the strength is quite low [1]. This results in the anisotropic nature of wood, i.e., the properties of wood in a given direction are different from those in another. In addition, wood, as a biomaterial, maintains its fairly high variability of anatomical structures and physical properties; therefore, it requires a very large sampling size in research practice.
The dimensions of solid wood are entirely dependent on the dimensions of trees. The largest tree in the world is, in terms of the overall volume of its trunk, reported to be the Giant Sequoia (
An EWP is a product fabricated with wood materials and adhesives and/or fasteners (such as nails) targeted mainly for structural applications. An EWP has gone through an engineering design, which is often inspired by nature, and innovative technology. With the great efforts made by scientists and engineers in the last century, EWPs have grown into an extended family. Figure 1 illustrates commonly used EWPs and their respective abbreviations.
Major types of engineered wood products and their abbreviations (source: images obtained from
EWPs offer many advantages over traditional solid timber products [5, 6]: (1) EWPs can reach a size that is not confined by the tree dimension. Theoretically, EWPs are only limited in width and length under transportation considerations; (2) EWPs accommodate a wide spectrum of species and sizes of trees, allowing more efficient utilization of raw wood materials in the form of fibers, strands, veneers, and lumber; (3) EWPs have more uniform and reliable properties than solid wood, since the strength-reducing defects present in solid wood can be removed to a large degree or placed in a less critical zone(s) in the products; (4) EWPs exhibit greater dimensional stability and tolerances than sawn timber, due to the use of adhesives, dry wood elements, heat and pressure during their manufacturing processes; and (5) EWPs can make themselves much easier to adapt to market requirements than solid wood due to their designability. Figure 2 illustrates the yields of raw wood material usage from logs to various EWPs. It can be found that laminated strand lumber (LSL) and oriented strand board (OSB) have a higher yield (larger than 75%) than plywood, laminated veneer lumber (LVL), and parallel strand lumber (PSL) (less than 65%). It can also be reasonably estimated that finger-jointed lumber, glue laminated timber (GLT), cross laminated timber (CLT), nail laminated timber (NLT), or dowel laminated timber (DLT) has a yield being less than that of sawn lumber due to the loss of wood materials during their manufacturing. A higher raw wood material yield means less waste and lower production cost, suggesting that EWPs are a great solution to the utilization of wood resources.
Raw wood material yields of sawn lumber and EWPs from logs (data from [
However, there are some disadvantages associated with EWPs [5, 6], one of which is that the process of manufacturing of an EWP requires more variables to manipulate than that of sawn lumber. Thus, highly automated equipment and technologically intense processes are essential in the production of an EWP, which significantly increases the capital cost of establishing an EWP mill. Therefore, the production of an EWP with the existing technologies is very costly compared to that of sawn lumber. Another shortcoming of most EWPs is that the use of adhesives in those glue-bonded EWPs causes a negative impact on the ecological image of wood as a natural biomaterial [5].
From Figure 1, it can be easily distinguished that there exist two groups, i.e., beam-like and panel-like EWPs. The beam-like EWPs is a group of relatively large length and depth compared to width, which is commonly used for beams and columns. The beam-like EWPs include finger-jointed lumber, GLT, LVL, PSL, LSL, and oriented strand lumber (OSL). The panel-like EWPs are of relatively small thickness and large width and length, which are usually used for floors, walls, and roofs. The panel-like EWPs can be further classified into two sub-groups, in terms of thickness: (1) thick-panel-like EWPs, containing CLT, NLT, and DLT, and (2) thin-panel-like EWPs, consisting of plywood and OSB. However, there is not a widely accepted criterion for sorting EWPs according to their dimensions and shape. For example, GLT can be used flat as panels for decking like NLT. For another example, LSL can be manufactured in the form of panels at the beginning and then ripped along the panel length direction to make beam-like or lumber-like products. In addition to those EWPs listed in Figure 1, there are many other types of EWPs such as I-joist (or I-beam), timber concrete composite (TCC), and fiberglass-reinforced GLT. It is noteworthy that Figure 1 also lists two types of fiber-based EWPs, which are made of wood fibers as “fibers” and plastic or cement as “matrix”. These two fiber-based EWPs are not commonly used for structural components in wood buildings nowadays, but they can be used for ceilings and decking. Wood plastic composite (WPC) has found its applications in the automotive, marine, and construction industries. Wood cement fiberboard (WCF) has also been steadily invading the housing and construction market.
With advancing wood-based nanotechnology, nanomaterials, such as nanocrystalline cellulose (NCC), have been derived from woody biomass and other cellulose sources such as straws. NCC is the celluloses in their crystalline form, which can be extracted by removing the amorphous sections from the celluloses and processed into solid flake, liquid, and gel forms. NCC can be employed, for instance, to reinforce the adhesive bond in EWPs. There is another innovative EWP called scrimber that is made of “scrims”, a kind of interconnected loose webs. The steps of manufacturing scrims include crushing small diameter logs into webs, drying the webs, applying an adhesive into the webs, cutting the webs to the required length and width, laying up the webs into a mat, and pressing the mat into a billet using a radio frequency heating press [5]. However, scrimber has not been well commercialized because of the application of large quantity of adhesive (causing the high cost of production), and damaged wood generated while preparing scrims (reducing the strength of wood).
EWPs (usually excluding fiber-based ones) can be also classified into parallel and cross-laminated groups. The parallel-laminated EWPs include LSL, OSL, LVL, PSL, GLT, NLT, and DLT; meanwhile, cross-laminated EWPs contain OSB, plywood, and CLT. The parallel-laminated EWPs are usually used for load-carrying members such as beams and headers; while the cross-laminated EWPs are used for floor plates and sheathing sheets. The way of lamination inspires a philosophy of designing EWPs, which will be briefly outlined in Section 2 “Stress” of this chapter.
Another way of grouping EWPs is rooted in the wood elements that make them, which include fiber, strand, veneer, and lumber-based EWPs, shown in Figure 3. It should be noted that PSL is made of long veneer strands (also called veneer strips). Thus, PSL is classified into the group of veneer-based EWPs rather than the group of strand-based EWPs albeit it has “strand” in its name. The wood elements largely govern, in terms of their dimensions, shape, moisture content (MC), species, the physical and mechanical properties of the product made from them. For instance, the density of an LVL made of yellow poplar is just slightly greater than that of yellow poplar veneer, which is attributed to the use of an adhesive(s) and slightly densified veneer during manufacturing. For another example, the equilibrium moisture content (
Classification of EWPs in terms of the wood elements used for making them.
In the course of discussing EWPs, it is worth introducing another two terms: structural composite lumber (SCL) and mass timber products (MTPs). SCL refers to those products that combine dried strands, veneer, or other small wood elements bonded with an exterior structural adhesive(s) to form thick-panel-like or beam-like EWPs [6, 9]. SCL basically includes LVL, LSL, OSL, and PSL. One outstanding characteristic of SCL is that the grain of the wood elements used is essentially aligned parallel to the length direction of its products with an aim to maximize its structural properties in this direction. Thus, SCL products are broadly used for beams and columns in wood buildings. MTPs connote a family of EWPs of a large section size, which can be employed to make strong but light load-bearing components for structural applications such as floors and walls [9]. MTPs basically include lumber-based EWPs, i.e., CLT, GLT, NLT, and DLT. However, MTPs also include SCL, TCC, and other large-size EWPs such as fiberglass-reinforced GLT, see Figure 4. Among EWPs, the lumber-based MTPs also possess other unique features, such as wood-look appearance, environmental friendliness, and low carbon emission. MTPs have been, since the mid-1990s, attracting architects, engineers, and builders to employ them in their design and construction of tall and large buildings with an aim to compete with or even substitute steel and concrete.
Classification of commonly used EWPs.
The philosophy of designing a timber structure/component/connection is largely rooted in two aspects: safety, limiting the maximum load-carrying capacity (i.e., strength) and serviceability, restricting excessive deflection (i.e., deformation) [10, 11]. The reaction of a material (such as wood) or a product (such as EWP) to the action of external forces is indicated by its mechanical properties, or otherwise known as engineering properties, including tensile strength, compressive strength, shear strength, bending capacity, ductility, and creep. When an external load is applied on a wood component/connection/structure, it causes the stresses inside the wood component/connection/structure, generating deformations and eventually leading to failure. Failure can be, from an engineering point of view, defined as a fracture, when stress exceeds the strength of the wood component/connection/structure or failure as deformation exceeds the design value.
Under certain assumptions, such as ignorance of natural growth characteristics (e.g., knots and eccentricity) and growth ring curvature, a three-dimensional Cartesian coordinate system can be introduced in Figure 5, representing the wood/lumber longitudinal or EWP major direction (X), wood/lumber tangential or EWP minor direction (Y), and wood/lumber radial or EWP thickness direction (Z). On this basis, an orthotropic model can be built to simulate the mechanical behavior of wood, lumber, and EWPs in scientific research and engineering design. As mentioned above, the mechanical properties of natural wood vary much more than those of EWPs, which is illustrated in Figure 6. The lumber product has a relatively wide distribution of strength due to the nature of its biomaterial, and the EWP has a fairly narrow range since it goes through an engineering design during its manufacturing. Overall, the EWP has greater design stress, 5th percentile, and mean values than sawn lumber. The following two sections will discuss these two basic mechanical terms (stress and deformation) from the standpoint of tree growth and wood uses.
Cartesian coordinate system for wood/lumber (left), LVL (middle) or PSL (right).
Probability density functions for strength of lumber and EWP.
The strength of wood is a measure of its resistance to failure. If the stress applied to the wood exceeds the strength of the wood, will break. Stress accompanies wood during its formation in a living tree and its services over its life span. As mentioned, a tree is subjected to various types of stresses during its growth. Mattheck and Kubler depicted external loading and internal stresses distributed in a tree [1], Figure 7. By neglecting the weights of the stem and branches, and loads generated by wind and snow, they simplified their model by only considering the weights of the upper and lateral crowns (F1 and F2). The compressive stresses (σ1) produced by F1 act on the area (A1) of the stem above the lateral branch, equaling to F1/A1. The bending moment generated by F2 is applied on the lateral branches, which increases linearly towards the stem. Thus, the stem below the branch joint bears both bending moment (tensile and compressive stresses) and axial compressive stress (σ1).
Combined axial stresses and bending stresses in a tree generated by its crown weights [
These stresses refer to the mechanical stresses permanently supported by wood in a living tree during its growth, which are called tree growth stresses. The tree growth stresses result from the combined effects of the increase of dead weight and maturation of cell walls [12]. There is an interesting phenomenon that can be viewed in a leaning stem when it is subjected to a bending moment. In this situation, the stem tries to resume its original, usually upright, position, thus, it needs to counteract the bending moment. In such a stem, the growth stresses often differ on its two opposite sides, resulting in abnormally wide growth rings appearing in the upper or lower side of a leaning stem, Figure 8. The wood of such abnormally wide growth rings is called reaction wood. Reaction wood in hardwoods or softwoods is named tension wood or compression wood, respectively. Understanding compression wood is of great importance since softwood lumber is commonly used in construction of wood buildings. Compression wood has a relatively large longitudinal shrinkage compared to normal wood, which can reach 1–2% [13], around 10 times as large as that of normal wood. As a result, warping and even cracks, often emerge in softwood lumber. In comparison to normal wood, compression wood has a relatively high density but similar strength, resulting in a low strength-to-weight ratio [13].
Reaction wood in a leaning stem: (a) tension wood in hardwood, and (b) compression wood in softwood (modified from [
Wood is a complicated hollow structure consisting of substances and voids. The substance is the basic building materials constructing cell walls made of an ordered association of cellulose, hemicellulose, and lignin, with an average density of 1.5 g/cm3 under oven-dry conditions [13]. The voids in wood appear in the form of cell lumens, pit openings, pit cavities, and intercellular spaces. The density of wood is largely governed by these voids, i.e., if a wood species has a larger volume of voids, its wood has a lower value of density. Figure 9 illustrates the tensile strength values of wood at various levels. At the molecular level, the strength of wood is extremely high in the longitudinal direction, with estimates exceeding 7000 MPa [14]. Wood strength is about 15 times larger than that of structural steel, which has a strength of 400–550 MPa. Bundles of cellulose molecules form so-called microfibrils, the basic cell wall elements constituting cell walls in association with hemicellulose and lignin. From the composite theory point of view, wood is a natural composite, i.e., nature’s fiberglass, in which celluloses are the “fibers” and hemicellulose and lignin are the “matrix”. Microfibrils have a strength of about 480 MPa and individual cells are estimated to have a strength of about 140 MPa [14]. The tensile strength of clear softwoods in the longitudinal direction has values ranging from 40 to 200 MPa [5]. However, lumber has, in the same longitudinal direction, a tensile strength of only 15–40 MPa [5] due to the existence of many strength-reducing characteristics such as knots, the slope of grain, checks, and splits. In the derivation of the design value of lumber, its characteristic strength properties, such as characteristic tensile strength in the longitudinal direction, are determined using the lower 5th percentile value of the Weibull distribution, which is much lower than the mean. From here, an allowable property value can be calculated by dividing the 5th percentile with a property reduction factor (n), or a so-called adjustment factor. For example, allowable tensile strength is equal to the 5th percentile divided by n, where n = 2.1 [15]. Finally, design value can be derived by multiplying the allowable property value with modification factors such as load duration, service condition, size, treatment, system, and other factors. For instance, the tensile strength of wood in the longitudinal direction can be as low as 2.5 MPa in the design of a structural component, which is fully attributed to the biomaterial nature of wood and its service conditions.
Tensile strength of wood at various levels.
The above discussion suggests that human beings have not fully utilized the strength of wood. Contributed by the recent technological progress, the optimized use of wood has been improved to a certain degree in terms of strength. Song et al. selected three hardwood species (basswood, oak, and poplar) and two softwood species (western red cedar and eastern white pine) as test materials, and took two steps to transform bulk natural wood directly into super strong and tough densified wood [16], Figure 10. Step 1 used a chemical treatment to partially remove lignin/hemicelluloses and Step 2 mechanically hot-pressed the chemically treated wood at 100°C to reduce its thickness by about 80%. They discovered that the tensile strength of densified wood reached about 550 MPa, which was 12 times as large as that of natural wood. This value is higher than that of microfibrils (about 480 MPa). They indicated that most of the densified wood consisted of well-aligned cellulose nanofibers, greatly enhanced hydrogen bond formation among neighboring nanofibers. Their research provides a promising method of maximizing the use of wood strength by removing most voids and some lignin/hemicellulose. As mentioned in Section 1, NCC derived from wood attracts increasing attention due to the non-renewability of petroleum and the global promotion of green materials and products. NCC made from bleached softwood kraft pulp exhibits a diameter of 10 nm and a length of 150 nm [17]. The Young’s modulus of NCC can reach about 137 GPa [18]; while that of Douglas fir clear wood, one of the strongest softwoods, reaches only about 14.5 GPa [19]. This is one of the key reasons for applying NCC as high-performance “fibers” to “matrix” to produce composite materials of increased stiffness and tensile strength.
Two-step processing approach for making densified wood (modified from [
EWPs are fabricated through an engineering process, the basic principle of which is to place stronger materials at the most stressed zones [5, 7, 9]. Each lamination, such as lumber and veneer, must be graded visually or mechanically. Figure 11 illustrates two lumber-based EWPs, GLT, and CLT. GLT here is made of sawn lumber of various visual grades, notably select structural (SS, the highest grade), No. 1, No. 2, and No.3 (the lowest grade here). The GLT in Figure 11 (left) is intended to be used as a beam subject to the bending of a simple span. Therefore, an unbalanced layup is designed with an aim to optimally and efficiently use lumber by locating SS-grade lumber on the bottom face and No. 3 lumber in the core layers. Figure 11 (right) depicts the basic idea of designing CLT, in which lumber grades in its major strength axis are required to be at least 1200f-1.2E MSR or visually graded No. 2, where No. 3 is the minimum lumber grade required in the minor strength axis [20]. This design gives CLT two-way action capacities, suitable for floor uses.
Design of GLT (left) and CLT (right) [
Figure 12 further justifies the principles of engineering design in wood in terms of two basic veneer-based EWPs, namely plywood and LVL. Veneer can be, according to the size and number of defects (such as knots), sorted into three grades (high, mid, and low). In the construction of plywood and LVL, the best quality veneer is used as top and bottom laminations; however, the laminating approach differs. The cross-lamination of veneer enables plywood to be relatively strong in both the length (X1) and width (Y1) directions when loaded on its face, enabling it be widely used as sheathing materials. In LVL, the grain of each layer of veneer runs in the same direction, i.e., parallel-lamination. As a result, the strength in the length direction (X2) of LVL is much stronger than that in the width direction (Y2), making it a more suitable material for beam and column uses.
Design of veneer-based products.
Assuming the same wood species, veneer quality, adhesive type, and other manufacturing parameters (except the laminating approach) are used in the fabrication of plywood and LVL, it can be reasonably predicted from Figure 12 that the modulus of elasticity (MOE) and modulus of rupture (MOR) are the largest in the direction X2, the second largest in X1, the second smallest in Y1, and the smallest in Y2. This is verified by a group of undergraduate students at the University of New Brunswick, Canada, who made 5-layer poplar plywood and LVL panels in their laboratory using a phenol-formaldehyde adhesive at two levels of pressure. Each panel they made had a width of about 150 mm and a length of about 300 mm, from which small specimens were cut for bending tests. Figure 13 summarizes their results indicating that there is a notable difference in MOE and MOR between plywood and LVL in either the major (X1 or X2) or minor (Y1 or Y2) direction. Plywood has fewer degrees of difference in MOR and MOE than LVL between the major and minor directions, suggesting a more uniform structure in plywood. However, LVL has a much higher MOR and MOE in the major direction (X1) than that in the minor one (X2), indicating its one-way strength capacities.
The means and standard deviations of MOR and MOE of plywood and LVL.
As discussed above, one of the advantages of EWPs over sawn lumber is that they can be engineering-designed. For instance, a cylindrical LVL was inspired by the hierarchical structure of a wood cell wall. A cell wall consists of three major layers in its secondary wall, and each layer has many lamellae containing microfibrils at different angles [21], Figure 14 (left). The middle layer in the secondary wall has 30–50 lamellae, occupying about 75% of the thickness of the cell wall. The microfibrillar angle in the middle layer ranges from 10 to 30 degrees relative to that of the longitudinal axis of the cell (almost parallel to the longitudinal direction of wood). Therefore, the middle layer governs the properties of the cell wall and furthermore the properties of wood, and provides considerably more strength and stiffness parallel to its axis than perpendicular. Yamauchi et al. used 2.5-mm-thick Japanese cedar veneer and a resorcinol resin to make cylindrical LVLs using the spiral-winding method, i.e., by laying neighboring veneer sheets at ±10 degrees to form an interlocked grain structure [22], Figure 14 (right). The cylindrical LVL specimens they made were about 300 mm in the outer diameter, 25 mm in the wall thickness, and 3600 mm in the specimen length. They discovered that (1) the MOE of cylindrical LVLs was the same as that of solid lumber of the same species; and (2) as the number of veneer plies used in cylindrical LVLs increased from 6 to 10, its MOR increased; yet MOE remained almost unchanged. Yamauchi et al. concluded that the interlocked grain structure they applied could effectively prevent a decrease in MOE and indicated that cylindrical LVL was suitable for structural uses, especially for posts in construction [22].
The hierarchical structure of a mature cell wall (left) (adapted from [
Wood and EWPs may undergo dimensional changes due to variation in ambient temperature and relative humidity, and stresses caused by external loads. The interaction of the surrounding atmosphere and loading conditions can create an enhanced level of deformation in wood. This section briefly explains how the change in moisture content of wood affects the shrinkage or swelling of wood and aims to increase the awareness of how the moisture-induced deformation impacts the structural performance of a timber building.
As a hygroscopic material, wood and its products can absorb and release moisture, resulting in dimensional changes. Figure 15 illustrates the possible changes in moisture content (MC) of wood during the construction and use of wood buildings. The initial MC is the MC at the time of the manufacturing of a wood product, which is usually less than 19% for lumber and 4–15% for EWPs [10, 23]. The initial MC of strand-based or veneer-based EWPs, such as OSB and LVL, ranges from 4–6% [10]. However, the initial MC of lumber-based EWPs, such as GLT and CLT, varies from 11–15% [10]. The difference in initial MC between strand/veneer-based and lumber-based EWPs can be attributed to the dimension and shape of wood elements, amount and type of adhesive, and heat and pressure applied during manufacturing. The MC can significantly increase during construction if the wood components are not well protected from moisture/water, which can cause a large change in dimension and shape as well. Proper cautions and measures must be used to minimize such a large dimensional change. After a wood building is completed and occupied, its in-service MC may vary from 7–15% [23], depending on the surrounding temperature and relative humidity, before eventually reaching equilibrium moisture content (EMC). The EMC fluctuates between the low and high in-service MC, resulting in some dimensional changes in wood from time to time.
Variation of moisture content of wood during the construction and use of wood buildings [
As discussed above, the wood components of a low
Detailing to account for vertical movement due to the change in moisture content [
Wood is indeed an anisotropic material. Thus, its dimensional change varies from one direction to another. The dimensional change in the longitudinal direction is as low as 0.1–0.2% for mature wood [13]; thus, it can be ignored. However, the dimensional change in the transverse (i.e., radial, tangential or in-between) direction can reach as high as 12% or so [13]; therefore, it must be taken into account during the design of wood buildings. However, it is not practical and sometimes impossible to estimate the dimensional change in the transverse direction because the grain orientation in the cross-section of lumber cannot be predicted in the construction of a wood building. To resolve this problem, the Canadian standard CSA O86 “Engineering design in wood” specifies Eq. (1) to estimate the dimensional change of a member made of sawn lumber or lumber-based EWPs such as GLT and CLT [11]:
where,
Scientists at FPInnovations, Canada, conducted a study by monitoring the vertical movement in a 4-storey wood-frame building over 22 months [24]. The floors consist of 38 mm by 240 mm “S-Dry” dimension lumber joists with a concrete topping. The walls consist of 38 mm by 140 mm “S-Dry” solid sawn plates and studs. Double top plates and double bottom plates are used in all storeys. The stud length of all storeys is 2.44 m. The joist spacing is 400 mm; joist spans are 3.75 m; and stud spacing is 400 mm. The scientists calculated the vertical wood movement including shrinkage from an initial
Estimated vertical movement due to changes in MC and axial compressive load (source: data from [
There are two basic wood framing construction methods, notably platform framing and balloon framing [25], Figure 18. In the platform framing, all vertical structural elements of the exterior bearing walls and partitions consist of single studs extending the full height of the frame. Meanwhile, in the balloon framing, the studs of the exterior walls and some of the interior walls are continuous from the foundation sill plate to the top plate below the roof framing. In comparison to balloon framing, platform framing is more commonly used for modern structures due to its simplicity and ease of erection; but its vertical movement due to MC changes is much larger. Balloon framing is rarely used nowadays since the length of sawn lumber available is not sufficient due to changes in forest resources with the production of smaller trees compared to older times. However, with advancing technologies, many modern EWPs have been invented and manufactured, providing sufficiently sized materials with less moisture-induced wood movements. This gives an opportunity for people to rethink the use of the balloon framing method in building construction.
Light frame construction methods: platform framing and balloon framing (modified from [
CLT panels can, attributed by their inherent two-way spanning capabilities, eliminate the necessity of placing beams underneath the panels, as with other MTPs. This facilitates the emergence and application of a post-and-panel mass timber construction system [9]. Therefore, this system significantly reduces the building height and construction time, as well as overall costs [26]. In this type of modern construction system, the CLT floor plates are point-supported by GLT and PSL columns. This may cause two potential issues, i.e., excessive vertical wood movement because of MC change and crushing of CLT panels due to axial loads, if there are no proper connectors joining CLT plates and columns. These issues occur because the vertical direction of the building is the thickness direction of CLT (i.e., the transverse direction of lumber), along which larger accumulated wood movements and lower compressive strengths exist in CLT. To address these issues, a so-called HSS steel connector was developed and employed, Figure 19 (lower), which can directly transfer load from upper columns to lower columns and provide some tolerance for dimensional change. The development of various types of metal connectors is of great importance in the design and construction of wood buildings with EWPs.
Column-to-column connection used in the Brock Commons Tallwood House in the University of British Columbia, Vancouver, Canada (upper: on-site installation of columns connected to CLT panels (source:
With climate change being an inevitable and urgent global challenge, it is essential to address such issues with real-life content, for instance, the global warming impacts caused by buildings and constructions. The World Green Building Council reports that building construction and operation account for 39% of greenhouse gas (GHG) emissions annually [27]. Among this 39%, 11% is from embodied carbon and 28% from operational carbon. The embodied carbon of a building is defined as the amount of carbon emitted during its construction. Whereas, operational carbon is defined as the amount of carbon emitted during the operation of a building. As innovative building technologies continue to develop, operational carbon will be significantly reduced, and embodied carbon can be responsible for almost 50% of total new construction emissions from now to 2050 [28]. In the next 40 years, with a doubled urban population, a building area of 2.48 trillion square feet is required to fit the needs of urban population growth [29]. The combination of considerable global CO2 emissions from the building sector and the increasing demand on buildings reveals that actions should be taken immediately to mitigate emissions from the embodied carbon. One of the answers to this global challenge is to increase the use of wood and wood-based products in the construction sector. As a biomaterial, wood possesses its natural ability to mitigate carbon dioxide (CO2). During the growth of trees, wood is produced, sequestering carbon. After trees are harvested, wood can be processed into various products. These products can be therefore used in construction of buildings, which store carbon over their lifespan. The recently released report “The state of mass timber in Canada 2021” from the Government of Canada [30] indicates “As high-value wood products, mass timber can play an instrumental role in the circular economy by providing a renewable source of building materials and contributing to a lower carbon footprint for the construction sector.” In the last two decades, the development of mass timber was rapid in Canada, which can be viewed through the number of completed mass timber projects, Figure 20, with 10 projects in 2007 and upwards of 60 projects in 2018. It should be noted that each project listed in this figure must meet two criteria, i.e., a minimum floor area of 300 m2 and structural use of MTPs.
The number of completed mass timber projects per year in Canada [
Figure 21 illustrates the percentage share of each EWP in major markets over a time horizon [31]. The data in this figure are outdated, only depicting the status of EWPs in 2006, but it still provides some insight into the market shares of each EWP. The sheathing and industry plywood markets are in the stages of “decline” and “maturity”, respectively. This is mainly due to the decreasing volume of veneer quality logs and the rapid development of OSB. Sheathing OSB is in “rapid growth”, which has taken a big market share from plywood because of its high yield of using raw wood materials. Framing lumber takes 90% or more market shares since SCL is still much more expansive than sawn lumber, resulting in its failure to completely replace lumber [6]. Glulam, a commonly used name for GLT, has passed its plateau of market demand, moving into the “decline” stage. The main reason for this decline could be the emergence of other EWPs such as LVL, LSL, and PSL. Albeit LVL stays at the end of the “expansion”, it could have reached its maximum market share. This implies that the cost of producing LVL will, just like manufacturing plywood, definitely increase, since premium logs for producing veneer are becoming scarce [6]. LSL and PSL are in “expansion” due to their high raw material yield from logs to the final products. Figure 21 does not show the market shares of CLT, NLT, and DLT, but it can be reasonably speculated that these lumber-based EWPs are in the “development” and “expansion phase”, and will enter “rapid growth” quickly, particularly for CLT. As technologies advance, the cost of manufacturing EWPs will be further reduced. For example, adoption of the artificial intelligence in production can lead to an increased yield of raw material usage from logs and reduced labor costs. Therefore, EWPs will be more competitive to sawn lumber and make inroads into more market shares.
Percentage share in major markets of EWPs over time horizon (source: photos obtained from [
It can be well foreseen that EWPs will have a bright future in construction because (1) EWPs are designable, producing an optimal structural performance for construction; (2) EWPs have more uniform strength properties and fewer changes in dimensions and shape, making them more suitable building materials; (3) EWPs provide a wide selection of dimensions, allowing designers and builders to design and build tall timber, wood-concrete, and wood-steel hybrid structures; and (4) EWPs fall into the category of environmentally friendly and recyclable products, contributing to a lower carbon footprint for the construction sector.
This piece of work was financially supported by the New Brunswick Innovation Foundation (Canada) under its New Brunswick Innovation Research Chair Initiative Program and the Natural Sciences and Engineering Research Council of Canada under its Discovery Grant Program (RGPIN 2017-03994).
The global financial crisis has vividly demonstrated the instability of the modern financial and economic system and made it particularly urgent for the world community to find an alternative model for achieving economic growth based on digital technologies, taking into account the factors of social and environmental security.
The current stage of development of economic science requires a rethinking of the basic concepts of all transformations taking place in the world through the prism of scientific and technical changes, both general and specific, associated with changes in human behavior, competition, data, innovations, and values.
Before the theory of transformational leadership appeared in the literature [1, 2, 3], most researchers relied on transactional factors of effective leadership behavior. Rewards and recognition were explained as the most important factors in achieving goals in organizations [4]. The evolution of further research has shown significant changes in the understanding of leadership [5].
Nevertheless, the structure of modern commodity markets, the gravity of intersectoral balances of countries and territories are changing significantly. Most of the technologies and management decisions that were in demand until recently are of no interest to anyone today. The areas of knowledge and competencies of personnel are changing. Transformational leadership is emerging as a response to the rapid changes in society, economics, and politics. It offers a toolkit for promoting changes leading to a socially oriented, equitable green society, thereby contributing to the creation of new technologies, innovations, and some kind of a social progress. That is why every industry in our time requires, first of all, competent leadership and only then management.
The emergence of transformational leadership, used as a tool for the development of business and society, has spread to many areas of the world’s leading countries, including nongovernmental organizations. Transformational leadership in the modern business world is positioning itself as a new type of management activity that has shifted the management paradigm from excellent task performance to leadership or the right choice of what to do.
The results of numerous studies have shown that green transformational leadership has a significant impact on the internal motivation and creativity that employees need to produce ecologically pure products and services [6, 7]. At the same time, research on the interaction of the areas of leadership and economics is not enough to present the completeness and diversity of the influence of leadership on business efficiency and the development of society. The study [8] that demonstrates the potential benefits of leadership research in achieving economic goals should be noted. In particular, the authors link the evolution of the concept of leadership with the corresponding tasks of economic development. The research [9] analyzing studies that combine economics and leadership argues that the behavior of a leader, his choices and actions determine the results of the organization and indicate new strategic objectives.
Special attention of researchers is focused on understanding the actions of corporate leaders. Predicting the behavior of a future leader emphasizes the importance of understanding the context (conditions, economic situation) in which a leader acts, how valuable capital is created, capital markets’ conditions, as well as the general trend of society development [10].
We are careful in our research, because we take into account the reasoned opinion of [11] about the demystification of the impact of transformational leadership on the performance of an organization under conditions of environmental uncertainty.
These studies allowed us to support our statement about the impact of transformational leadership on the sustainable development of society and green growth. At the same time, we see a significant number of unexplored areas, in particular, (1) for many corporations, including with state participation, transactional leadership instruments being still dominant, while it is obvious that they are economically losing their meaning; (2) the effectiveness of green infrastructure development projects and “green financing” has not been proven; (3) the influence of transformational leadership on the sustainable environmental development of industries is practically absent. It was the latter circumstance that determined the choice of the transport industry, as the most significant in the context of the green growth of Russia, as an object of scientific research.
Under the influence of all the above circumstances, significant changes are taking place in the world transport systems. First, the intensification of the construction and launch of high-speed roads is based on fundamentally new green technologies, materials, and energy. Secondly, the inclusion of transport systems in sustainable development projects as an essential part of ensuring the development of new product markets and the growth of social mobility. Thirdly, the designed transport systems in the world strive to conform to the new consumption model.
The transport system is moving into the format of an environmentally friendly (safe), social (highly mobile), and economical ESG system. At the same time, the E-factor takes into account the reduction of CO2 emissions by the company, the volume of consumption of water resources and land, as well as the introduction of waste processing. The factor of social criteria (S-factor) reflects the level of observance of human rights, ensuring safety in the workplace and protection of customer information, the availability of training programs. The corporate governance paradigm (G-factor) is based on independence and efficiency of management, transparency and quality of financial reporting, as well as disclosure of nonfinancial information of the company.
The purpose of this study is to develop and test a scientific hypothesis that determines the role of transformational leadership in enhancing sustainable development processes, first of all, green growth. The scientific hypothesis is subject to quantitative assessment of this impact on the efficiency of the operating and business models of Russian transport organizations.
The object of the research is the largest transport companies in four transportation segments: rail, urban rail passenger transportation, road, and sea.
The subject of the research is the methodology for the development of transformational leadership in the new economic order, methods and models for assessing its impact on the effectiveness of green projects of transport organizations.
The research is based on the hypothesis of the positive impact of transformational leadership on the sustainable development of the transport and logistics business, first of all, its “green” growth. Two main results of the study that are directly related to the backbone organizations of the Russian transport system are highlighted: (1) the current metrics of transactional growth do not meet the requirements of sustainable development and “green” growth and do not stimulate the personnel of companies to work effectively; (2) the positive impact of transformational leadership on the transformation of transport companies in the direction of green growth has been quantitatively confirmed.
There is some (but limited) support for the impact of transformational leadership on green growth. So, many modern management theories, in terms of style and management methods, are based on the understanding of “leadership” [12]. The most commonly considered types of leaders are authoritarian, democratic, laissez-faire, transactional, and transformational. The systems theory of leadership, exploring many options for the behavior of leaders, is basic in understanding the evolution of this concept [13]. In our study, we rely on the concept of transformational leadership as the most appropriate to the new economic order [14, 15]. At the same time, we understand that the previous model of transactional leadership, when the goals and objectives of the business are predetermined, and the leader uses reward and punishment to motivate the entire staff of the company, becomes ineffective in some cases. We studied the impact of Key Performance Indicator (KPI) on the efficiency of business models of the largest Russian transport and logistics companies and came to the conclusion that there should be other metrics for team and personal efficiency.
In this regard, on the basis of the provisions of the situational leadership theory, namely the study of the dependence of the leadership style on the situation in the team and the leader’s clear orientation toward solving the problem, we have established the positive influence of situational leadership (from the development of monofunctional products or services that satisfy a certain need) for the growth of the value of the product or service itself [16, 17, 18].
The third step of our research was based on the modern interpretation of the systems theory of leadership [13]. Within the framework of this theory, leadership and the leader are considered from the point of view of group dynamics. The group is viewed as a system, leadership is the organization of relations in the group, the leader is the subject of managing this process. We applied these provisions to the concept of the evolution of digital platforms and ecosystems, which today maximally reflects the level of development of the object of our research—transport and logistics systems [19]. The introduction of digital technologies in the supply chain of goods and services satisfies the demand of society and the economy in the growth of mobility, speed, flexibility, and the ability to compress space. At the same time, the threshold between reality and virtuality loses its clear outline. Today, most services can exist in the format of digital products, and their set forms an entire ecosystem.
Digitization embodies the model of the development of consciousness. Its processes reflect our thinking and the way we interact with the world. Developers of digital systems are repeating the path of development of the human mind—from adaptability to creativity. This, in its essence, is transformational leadership—it is a type of leadership that causes transformation (change) in subordinates, which leads to an understanding of changes in business [20]. Our conclusions are confirmed by the following logic of the development of the theory of transformational leadership.
It is a known fact that the term “transformational leadership” was first introduced by James V. Downton (1973). However, this concept was developed by James MacGregor Burns in his book “Leadership” published in 1978 [1, 21]. He expanded this concept, moving away from a simple interpretation of transformational leadership as a set of certain personal qualities to a process in which a leader and a follower, interacting in a certain way, raise each other to a higher level of motivation and personal, moral development. In our study, this is an important understanding of how leadership can contribute to the implementation of the goals of sustainable development, green growth. It substantiates the position that the activities of transport and logistics organizations within the framework of the ESG (Environmental, Social, Governance) concept and compliance with the principles of responsible investment (PRI—Principles for Responsible Investment) contribute to the growth of transport infrastructure development projects and the improvement of business models of transport organizations [22].
The tasks of transformational leadership in ensuring green growth are extremely important, since they raise awareness of the company’s personnel about the importance and value of the intended results and how to achieve them and, in turn, motivate them to go beyond their immediate selfish interests for the sake of the mission and vision of the organization, its involvement in sustainable development of society. Charismatic and inspiring qualities are observed at all levels of organization management [23].
Transformational leadership implements an individual approach to building teamwork, which is extremely important in the context of the COVID-19 pandemic, when business has switched to the work of “hybrid teams”, i.e., partly on-line, partly off-line [24, 25]. We consider individualization of work with personnel as a method of timely transfer of information to subordinates. It provides ongoing observation and feedback and, more importantly, links the individual’s current needs with the organization’s mission and enhances those needs when appropriate.
The most important component of transformational leadership is intellectual stimulation [26, 27]. An intellectually stimulating leader awakens in subordinates an awareness of problems, awareness of their own thoughts, as well as recognition of their beliefs and values. It is through the intellectual stimulation of subordinates that new methods of fulfilling the organization’s mission are explored. Following this statement, we have developed a methodology for assessing the impact of transformational leadership on the transformation of transport and logistics systems in a green growth economy in the context of global economic destabilization.
Each particular question of business and society how to survive and sustainably realize itself in an unstable world has a generalized abstract or demarcation answer. This answer requires an assessment of the processes of destabilization in the context of asymmetric competition in the business models of organizations that follow the trend of sustainable development [28, 29]. For the reliability of the study, we rely on the provisions of the theory of destabilization, which distinguishes ordinary competition from destabilization, the process of assessing potentially destabilizing threats, as well as the methodology that allows forming methods of countering destabilization, taking into account the sustainable development of organizations based on green technologies.
We relied on two approaches to methodological research: specific scientific and technological. It is these two levels of our research methodology that are of particular interest for describing the impact of transformational leadership on digital technological change, which is essentially a set of theoretical and experimental studies conducted in order to obtain substantiated baseline data for the successful implementation of green business models of transport organizations.
The concept of sustainable development, influencing the consciousness of the manufacturer and the consumer, first of all, significantly changes the views on value for the consumer (Environmental, Social, Governance), offers new methods of creating added value. Moreover, in order to methodologically reliably describe the impact of transformational leadership on the sustainable development of business models of organizations, it is necessary to assess the business through the prism of a new quality of value of a service or product and also why digital technologies, intangible assets (data), and customer networks are so important in this context.
Specific scientific methodology made it possible to generalize the signs of the influence of transformational leadership on the behavior of economic agents, which is used in the development of social, economic, and environmental policies [30]. In fact, the “demand economy” and “supply economy” are being transformed into a new digital entity that changes both the behavior of the consumer and producer and the scientific apparatus that describes these processes. Above all, digital transformation addresses fundamental constraints in each of the areas in which business strategy operates, proposing new methods of connecting with consumers and new methods of creating added value and competition, where the role of a transformational leader is growing.
Analyzing information on the adherence of transport and logistics systems to the requirements of sustainable development, we applied a logical-conceptual approach to identifying the relationship between transformational leadership and sustainable growth of organizations [31].
Mathematical calculations made it possible to assess the fundamental changes in the supply chains of goods and services associated with the growing importance of the category of time or the emergence of the concept of “mobility of supply chains” [32].
The resources-processes-values (RPV) theory explains why established transport companies have such a hard time adopting disruptive green technologies [33, 34].
It is the resources (what is at the disposal of transport companies today, primarily the energy that provides traffic), processes (the existing patterns of the company’s work), and values (what the company strives for) in general determine the advantages, disadvantages, as well as “blind zones” of its strategic development. A company can successfully take advantage of disruptive green technologies only when it has the necessary resources (for example, sources and generation of maglev energy), when processes facilitate, rather than impede, the necessary actions, and when corporate values allow making a promising project a priority.
Using the theory of rational behavior, it can be stated that in the current situation, the model of human behavior is shifting toward maximizing utility (including previously unknown values) under conditions of limited resources. This means that the choice of a product or service is solely caused by its value (utility) and becomes a purely “economic choice.” Thus, passengers strive to ensure the monetization of their mobility, transport companies—to optimize costs and stay in their market segment, the state pursues various, often contradictory, goals related to ensuring stability, economic efficiency, socioeconomic equality of society members, etc. Obviously, the rationality of behavior will lead to a change in the value of transport services: there are obvious examples of violation of the rationality of behavior during the period of isolation and the uncertainty of getting out of it, which directed attention to the search for an assessment of new psychological factors that change the behavior of consumers of transport services and transport organizations [35, 36].
First of all, we examined the basic documents that define the Sustainable Development Goals (SDGs), in particular, the concept of sustainable development adopted by the United Nations (UN) in 2015, the UN Resolution, data from the International Energy Agency. The documents confirming the national adaptation of the SDGs in Russia have been analyzed, on the basis of which a table has been formed showing the relationship between the SDGs and national goals, projects, and state programs for the green development of the transport industry. The data are grouped in Table 1 [39, 40, 41].
Sustainable development goals | National goals | Nationa projects | State programs |
---|---|---|---|
Resilient infrastructure, inclusive and sustainable industrialization and innovation |
|
|
|
Transition to sustainable consumption and production patterns |
|
|
|
Strengthening the means to achieve sustainable development and revitalizing global partnership mechanisms | Ensuring accelerated digital adoption |
|
|
The data in Table 1 show that green infrastructure (transport) projects are being launched in response to numerous environmental challenges. At the same time, they can solve other—social and economic problems.
We analyzed the current and planned expenditures of Russia on the ecology in the context of the state program “Environmental Protection” for 2015–2024, the indicators of national projects: “Comprehensive plan for the modernization and expansion of the main infrastructure,” “Safe and high-quality highways,” and “Digital economy of the Russian Federation” [42, 43, 44, 45, 46]. We confirm the trend of significant growth in the volume of budgetary funds under these programs.
We used data on the global green finance market and found that green bonds account for the largest share in its structure. In substantiating our hypothesis, we relied on data from the World Bank Group on green bonds, since Russian transport companies (in particular, Russian Railways) use this very tool in the development of railway infrastructure projects. Green bonds are issued for new and existing transport projects that comply with the International Capital Market Association (ICMA) Green Bond Principles (GBP).
By examining the forecast data of the Global Infrastructure Hub [47] for the next decade, we have estimated the growth of the world needs for financing infrastructure to support sustainable development by 2030 at about 0.3% of world GDP. PwC data indicate that the amount of capital for responsible investment has grown by one-third every 2 years from 2014 to 2018, and at the beginning of 2021, about half of all managed assets in Europe are attributed to responsible investment assets [48].
According to a 2018 World Bank Group study, Russia’s transition to the best available technologies as part of the “greening” and “decarbonization” of the economy will require financing in the amount of about 4–8 trillion rubles, of which 13% for urban and mainline transport.
Important for our study is the conclusion of the World Bank analysts that the transition to a green economy in Russia is possible through the development of green public procurement, especially taking into account that the state as a customer is a significant segment of consumption in a country with a market accounting for about a third of GDP. This confirms our hypothesis that in Russia, the transformational leadership of public authorities will be critical to green growth.
For an empirical assessment of the obtained scientific results, we conducted a survey of four Russian transport companies in relation to the detection of signs of transformational leadership and the determination of their weight value in making sustainable development decisions. The sample is determined by the importance of these organizations in the transport services market. The survey involved managers and specialists of the following companies:
JSC Russian Railways (JSC RZD) —a company that owns the entire public railway infrastructure, railway rolling stock and is the largest operator of passenger and freight traffic.
Transport concession company—the leader of green projects in the segment of urban rail passenger transportation, corresponding to ICMA;
State company “Russian Highways” (Avtodor), which has 3771 km of road length in trust;
Ust-Luga seaport, the largest universal port in the Baltic, the second largest in Russia, and the fifth in Europe.
The analysis lacks data for air transport companies.
Using the method of grouping data obtained as a result of questioning top-level managers (self-assessment and assessment by colleagues, management, subordinates) of four transport companies in the field of rail freight transport, road transport, land rail transport, and sea transport, we have formed a scale of the main features of transactional and transformational leadership. We used the Multifactor Leadership Questionnaire (MLQ) [49, 50]. At the same time, we have updated the questions, in particular:
Does the management of the company use an individual approach or leadership by developing people toward the concept of sustainable growth? (To turn followers into leaders of transformations. Generation of fundamentally new ideas and solutions);
Is the company’s policy on intellectual stimulation evident or leadership by stimulating people’s thinking: ecology, social responsibility, responsible management? (Reaching a consensus with employees on the values of the organization);
Is there real motivation or leadership by inspiring people to design and implement green growth projects? (An appeal to such values as freedom, environmental safety, and responsibility);
How charismatic is the leader (top management) of the company? The leader tries to be a role model, sacrifices his own selfish interests: social responsibility, environmental behavior.
Each answer was assigned a value for the weight of the indicator corresponding to the rating scale. The final assessment was used in the correlation analysis of the hypothesis substantiation: a) the dependence of the presence and increase of green growth projects on the obvious signs of transformational leadership in the company; b) dependence of the growth of efficiency of business models of organizations on green transport projects.
We applied the methods of mathematical description of the value of transport services (speed of transportation, development of transport networks, and availability of a set of necessary digital services), formed under the influence of intellectual stimulation of transformational leadership, which made it possible to form a set of indicators of sustainable development and green growth, applicable to all types of transport: the effect of growth in the profitability of green projects (E-factor), caused by green investments, an increase in network density (S-factor), and the speed of movement or compression of space (G-factor).
On their basis, it is possible to generate a complex indicator—
The research results presented below confirm the main provisions of our scientific hypothesis:
The effectiveness of the use of transactional leadership tools, primarily based on KPI indicators and variance management, has reached its limit. The current metrics do not meet the requirements of sustainable development and green growth.
Transformational leadership tools influence the efficiency of the operating and business models of transport organizations implementing green growth projects.
Below is a sequence of evidentiary actions in confirming these provisions of the scientific hypothesis.
Based on the survey, an analytical scale was developed for the correspondence of indicators of transformational leadership of the leading companies in the main sectors of the Russian transport market (Table 2).
Company | Assessment of transactional leadership metrics KPI / deviation management | Assessment of transactional leadership indicators | Aggregate weights of the assessment IS+IC + IM + II | |||
---|---|---|---|---|---|---|
IS | IC | IM | II | |||
JSC Russian Railways | 5 | 5 | 3 | 4 | 2 | 14 |
Transport Concession Company | 4 | 5 | 4 | 5 | 5 | 19 |
“Russian highways” (Avtodor) | 5 | 3 | 2 | 2 | 2 | 9 |
Ust-Luga seaport | 5 | 3 | 2 | 2 | 3 | 10 |
Indicators of transformational leadership of the leading Russian transport companies. Note: 1. Calculated taking into account the weights of the scale of compliance of indicators of transformational leadership in the company, the presence of active green projects (funded by Green Bond), compliance of green bonds with ICMA standards. 2. Calculated according to information on the Internal Rate of Return (IRR) and the value of the Green Bond coupon.
Legend: IS – Intellectual Stimulation; IC – Individualized Consideration; IM - Inspirational Motivation; II – Idealized Influence.
Weighted assessments: 2 – Not at all; 3 – Sometimes; 4 – Often; 5 - Almost always.
As follows from the survey, organizations make the most of transactional leadership indicators (KPIs and deviation management), while everyone notes the low utility of these indicators. Moreover, in the largest transport companies, the costs of periodic calculations and the formation of these indicators in complex hierarchical structures with overlapping business processes exceed the effect of their application.
Analysis of the aggregate weights of the assessment of indicators of transformational leadership in Russian transport companies allows us to conclude about the presence and development of its processes in the following sequence:
First step (from 0 to 10): realizing the organization’s need for changes associated with increased competition in the transportation markets, the decrease in the effectiveness of existing business models, and the achievement of the maximum level of labor productivity while maintaining existing technologies in the supply chains.
Second step (from 10 to 15): creating a new vision of sustainable development and, above all, green growth. The vision is not the product of a single leader, but is formed as a result of team discussion and decision-making during the development and implementation of the project.
Third step (over 15): institutionalization of changes. It involves changes in the organization of business processes, project teams, operational and financial business models of the organization.
As can be seen from the table, transformational leadership focused on green growth is just beginning to develop in Russian transport organizations. Therefore, it is extremely important to show the dependence of the effectiveness of sustainable development and green growth projects on the understanding and formation of transformational leadership.
Based on the representations of [51], we examined how eco-friendly human resource management interacts with the interrelationships between green transformational leadership, green innovation, and environmental indicators.
2. The assessment of the conformity of the influence of transformational leadership on the transformation of transport companies in the area of green growth and the goals of sustainable development is made (Table 3).
The following designations are used in the table:
the projects of the company (Transport Concession Company) are aimed at the availability of public transport for the population of the agglomeration, increase the convenience of urban transport users, and contribute to the reduction of CO2 emissions when using personal transport.
projects of the Russian Railways involve the construction of new railway lines, implement programs to reduce the impact on the environment; electrification of track sections to reduce greenhouse gas emissions; construction of treatment facilities to reduce emissions of pollutants.
Avtodor plans to use alternative low-carbon modes of transport; how environmentally friendly the road infrastructure under construction is.
projects for the implementation of certain digital mobility technologies that increase passenger traffic and supply chains in order to reduce the longest and most air-pollution-related travel.
the planned investments in the development of the Ust-Luga seaport are shifting from infrastructure consolidation to a renewable infrastructure, and successful port terminals will be recognized primarily by the high degree of use of green technologies (connected devices, route optimization, energy efficiency, problem detection and troubleshooting).
projects that increase the spatial and technical possibilities of creating remote workplaces to accommodate more “hybrid” teams working online to reduce the need for commuting.
Company | Ongoing green growth projects | Planned projects (investments) of sustainable development | Impact of transformational leadership green growth projects (average correlation r) | Impact of green transport projects on the efficiency of business models (IRR of the project) |
---|---|---|---|---|
JSC Russian Railways | (b) (d) (f) | =.77 | 2.2–7.25%% | |
Transport Concession Company | (a) (d) (f) | =.83 | 10–12%% | |
“Russian highways” (Avtodor) | (c) (d) (f) | =.24 | No completed projects | |
Ust-Luga seaport | (e) (f) | =.15 | No completed projects |
The results show that indicators of transformational leadership are highly correlated between green growth projects and the growth of project performance in companies that are strategically targeting and implementing environmental development programs for their businesses. These strategies provide companies that are realigning their business models for sustainable development, the growth of competitiveness, and efficiency [54, 55].
With regard to seaports, it is extremely difficult to assess the economic effect of investments in green technologies in specific numbers, and most often only indirect results can be seen. For example, the Solvo.TOS automated management system for ports and terminals can reduce the operating costs of a cargo terminal by 5–35%. The spread is large enough to predict a return on investment. However, at the same time, the system at least allows increasing the level of service provided to the terminal’s clients, which is one of the indicators of its sustainable development. Likewise, it is difficult to assess fragments of Avtodor’s projects.
3. Transformational leadership, open to the publicity and social responsibility of business, helps to attract cheaper investments than the financial market offers. The market evolution of finance has formed a set of green finance: bonds, loans, stock investments, and green insurance [56]. The use of these tools involves the implementation of projects with clear environmental benefits that are assessed, including quantitatively, by issuers, investors, credit institutions, and insurance companies. In other words, they require disclosure of information and absolute openness of the company’s management in confirming the necessity for assessing the impact of investments on the environment.
For Russian transport companies, more than ever, there is a problem of attracting investment in projects for the development of urban and mainline transport infrastructure. Moreover, these projects have special features: long payback periods and a low rate of return, generate efficiency mainly with a high density of passenger traffic, and active supply chains. The COVID-19 pandemic has reduced global passenger traffic by 50–60% for various types of transportation, changed the gravity of supply chains and the structure of goods, which led to a decrease in the profits of transport companies. At the same time, the deficit of investments in financial markets has increased with a simultaneous increase in their value. Thus, the estimated supply potential in the investment market of infrastructure projects in the world is $10.2 trillion, while the required investments are estimated at $11.3 trillion—an investment gap of $1.1 trillion.
For Russia, attracting green, cheaper financing is the most important economic and social task of ensuring sustainable development, including transport infrastructure. The global financial market recognizes that the format of sustainable development of railway transport in Russia on the basis of green projects is not only useful in terms of protecting and restoring the environment, but also relatively profitable, since it generates the idea of environmentally friendly transport as financially attractive. It is quite obvious that transformational leadership as the ability of management to transform its worldview to solve social and environmental problems can activate Russian business, government bodies, and political forces to move to a new world of sustainable development.
This is confirmed by the experience of green growth of the Russian Railways company, which has already invested more than 4 billion rubles in green projects. The general director of the company, Oleg Belozerov, annually increases the costs of sustainable development projects, primarily green growth projects, despite the fact that the load on the environment of railway transport is the lowest of all modes of transport.
The leader of the company not only declares the importance of high environmental friendliness of transportation as the main vector of development, but also initiates projects in the field of ecology, clean transport, and social responsibility of the transport business. At the same time, the company fully complies with the principles of “green” financing, placing the third tranche of green bonds.
This study has theoretical implications for the leading infrastructure industries in Russia, the effectiveness of which is associated with sustainable development and “green” growth. It expands the possibilities of studying potential internal drivers of transport and logistics organizations and complements the growing body of knowledge in the study of environmental and digital leadership.
This study also has a number of practical implications that stem from the increased global interest in sustainable growth and ecological responsibility. It enables transport and logistics organizations to evaluate the effectiveness of their operational and business models in green growth projects.
It is important to recognize that this study, despite the results obtained, has a number of limitations. Firstly, it was limited by a relatively small sample size consisting of four basic, mainly state-owned, transport companies that occupy more than 50% of the market for the corresponding modes of transport. Undoubtedly, the work that will expand the sample taking into account the market operators of transportation will be useful. We understand that it is necessary to increase the number of variables in the factor analysis of the impact of transformational leadership indicators on the effectiveness of business models of organizations.
The scientific hypothesis presented in this study confirms the direct impact of transformational leadership on the activation of sustainable development processes, first of all, green growth. Our evidence shows the impact of these processes on the growth of the operational and business models of Russian transport companies.
We found that intellectual stimulation, as a critical sign of transformational leadership, is shaping a new digital approach to transport infrastructure development projects, supply chains, and population mobility, which is reflected in the green growth of the national economy.
Our analysis has shown that the inspiring motivation of a transformational leader can spur complex green growth processes in such complex systems as rail transport. The concept of sustainable growth and the environmental goals of Russian Railways under the Long-term Development Program until 2025 confirms this conclusion.
A survey of the management of the largest Russian transport companies showed that the idealized influence and individualization of decision-making inherent in transformational leadership are supported by the choice of people and reflect the views of a society that is willing to pay 15–30% more for products and services produced with ESG in mind, and 80% of millennials choose to work for companies with strong sustainability practices.
We can quantify another transformational leadership trend—ethical choice. More and more top managers of Russian transport companies are beginning to think about what value their company brings to the world, what problems it solves, and whom it helps. This allows them to cope with burnout and gain moral satisfaction from their work.
Expanding on this study, we will be able to calculate indices of the impact of transformational leadership on the efficiency of supply chain mobility. Mathematically, they reflect the weighted average sum of three subindices: the impact of green transport projects on society (mobility), the environment, and the ability of businesses to grow in innovation (efficiency).
The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
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The application of this test has significantly changed the practice of medical laboratories in which it is used for detection and quantification of molecules such as hormones, peptides, antibodies, and proteins. Various technical variants of this test can detect antigen (native or foreign) or antibody, determine the intensity of the immune response whether pathological or not; the type of induced immune response as well as the innate immunity potential; and much more. These capabilities, as well as the high sensitivity and robustness of the test and a small price, make it possible to quickly and reliably diagnose diseases in most laboratories. Besides, ELISA is a test that is also used in veterinary medicine, toxicology, allergology, food industry, etc. Despite the fact that it has existed for almost 50 years, different ELISA tests with different technical solutions are still being developed, which improves and expands the application of the this exceptional test. The aim of this chapter is to empower the rider to optimize, standardize and validate an enzyme linked immunosorbent assay.",book:{id:"9850",slug:"norovirus",title:"Norovirus",fullTitle:"Norovirus"},signatures:"Rajna Minic and Irena Zivkovic",authors:[{id:"325806",title:"Ph.D.",name:"Irena",middleName:null,surname:"Zivkovic",slug:"irena-zivkovic",fullName:"Irena Zivkovic"},{id:"325839",title:"Dr.",name:"Rajna",middleName:null,surname:"Minic",slug:"rajna-minic",fullName:"Rajna Minic"}]},{id:"56750",title:"Laboratory Approach to Anemia",slug:"laboratory-approach-to-anemia",totalDownloads:6255,totalCrossrefCites:2,totalDimensionsCites:4,abstract:"Anemia is a major cause of morbidity and mortality worldwide and can be defined as a decreased quantity of circulating red blood cells (RBCs). The epidemiological studies suggested that one-third of the world’s population is affected with anemia. Anemia is not a disease, but it is instead the sign of an underlying basic pathological process. However, the sign may function as a compass in the search for the cause. Therefore, the prediagnosis revealed by thorough investigation of this sign should be supported by laboratory parameters according to the underlying pathological process. We expect that this review will provide guidance to clinicians with findings and laboratory tests that can be followed from the initial stage in the anemia search.",book:{id:"5942",slug:"current-topics-in-anemia",title:"Current Topics in Anemia",fullTitle:"Current Topics in Anemia"},signatures:"Ebru Dündar Yenilmez and Abdullah Tuli",authors:[{id:"183998",title:"Ph.D.",name:"Ebru",middleName:null,surname:"Dündar Yenilmez",slug:"ebru-dundar-yenilmez",fullName:"Ebru Dündar Yenilmez"},{id:"209103",title:"Prof.",name:"Abdullah",middleName:null,surname:"Tuli",slug:"abdullah-tuli",fullName:"Abdullah Tuli"}]},{id:"33133",title:"Waist Circumference in Children and Adolescents from Different Ethnicities",slug:"waist-circumference-in-children-and-adolescents-from-different-ethnicities",totalDownloads:8023,totalCrossrefCites:4,totalDimensionsCites:7,abstract:null,book:{id:"642",slug:"childhood-obesity",title:"Childhood Obesity",fullTitle:"Childhood Obesity"},signatures:"Peter Schwandt and Gerda-Maria Haas",authors:[{id:"29867",title:"Prof.",name:"Peter",middleName:null,surname:"Schwandt",slug:"peter-schwandt",fullName:"Peter Schwandt"}]}],onlineFirstChaptersFilter:{topicId:"185",limit:6,offset:0},onlineFirstChaptersCollection:[{id:"82740",title:"Secondary Pneumothorax from a Surgical Perspective",slug:"secondary-pneumothorax-from-a-surgical-perspective",totalDownloads:4,totalDimensionsCites:0,doi:"10.5772/intechopen.105414",abstract:"Although less frequent than the primary spontaneous pneumothorax (PSP), secondary pneumothoraces (SP) are a common clinical problem with a wide range of severity, depending on the triggering cause(s) and patient clinical condition. By definition, an SP occurs in those patients with an underlying condition that alters the normal lung parenchyma and/or the visceral pleura and determines air entry in the pleural space (e.g., COPD) or, eventually, following trauma or invasive procedures (i.e., iatrogenic pneumothorax). Less frequent, yet described, is SP occurring in neoplastic patients or infectious ones. The gravity of an SP is directly correlated to the underlying cause and patients’ clinical conditions. For example, it may be a life-threatening condition in an end-stage COPD but less severe in a catamenial related syndrome. In this chapter, we are providing a surgical overview of the most relevant and updated information on etiology, incidence, pathophysiology, and management of secondary pneumothoraces.",book:{id:"11045",title:"Pleura - A Surgical Perspective",coverURL:"https://cdn.intechopen.com/books/images_new/11045.jpg"},signatures:"Simona Sobrero, Francesco Leo and Alberto Sandri"},{id:"80875",title:"Pneumothorax: A Concise Review and Surgical Perspective",slug:"pneumothorax-a-concise-review-and-surgical-perspective",totalDownloads:42,totalDimensionsCites:0,doi:"10.5772/intechopen.101049",abstract:"Pneumothorax is the collection of air in pleural cavity, which is commonly due to development of a communication between pleural space and alveolar space (or bronchus) or the atmosphere. In this chapter, we will discuss the various aetiologies of pneumothorax, the differences in their pathophysiology and the implications on the management of the disease. The chapter focusses on the surgical aspects in the management, the revolution brought in by video-assisted thoracoscopic surgery (VATS) and the advancement of the field by introduction of uniportal VATS and robotic-assisted thoracic surgery. The principles of management of catamenial pneumothorax are revisited. The chapter also throws light on the nuances of anaesthesia techniques and the latest developments are outlined. Lastly, a section is dedicated to COVID-19 associated pneumothorax and the approach to its management.",book:{id:"11045",title:"Pleura - A Surgical Perspective",coverURL:"https://cdn.intechopen.com/books/images_new/11045.jpg"},signatures:"Shilpi Karmakar"},{id:"79289",title:"Indwelling Pleural Catheters",slug:"indwelling-pleural-catheters",totalDownloads:86,totalDimensionsCites:0,doi:"10.5772/intechopen.100645",abstract:"Indwelling pleural catheters (IPC) are now being considered worldwide for patients with recurrent pleural effusions. It is commonly used for patients with malignant pleural effusions (MPE) and can be performed as outpatient based day care procedure. In malignant pleural effusions, indwelling catheters are particularly useful in patients with trapped lung or failed pleurodesis. Patients and care givers are advised to drain at least 3 times a week or in presence of symptoms i.e. dyspnoea. Normal drainage timing may lasts for 15–20 min which subsequently improves their symptoms and quality of life. Complications which are directly related to IPC insertion are extremely rare. IPC’s are being recently used even for benign effusions in case hepatic hydrothorax and in patients with CKD related pleural effusions. Removal of IPC is often not required in most of the patients. It can be performed safely as a day care procedure with consistently lower rates of complications, reduced inpatient stay. They are relatively easy to insert, manage and remove, and provide the ability to empower patients in both the decisions regarding their treatment and the management of their disease itself.",book:{id:"11045",title:"Pleura - A Surgical Perspective",coverURL:"https://cdn.intechopen.com/books/images_new/11045.jpg"},signatures:"Yuvarajan Sivagnaname, Durga Krishnamurthy, Praveen Radhakrishnan and Antonious Maria Selvam"},{id:"79221",title:"Surgical Challenges of Chronic Empyema and Bronchopleural Fistula",slug:"surgical-challenges-of-chronic-empyema-and-bronchopleural-fistula",totalDownloads:118,totalDimensionsCites:0,doi:"10.5772/intechopen.100313",abstract:"Chronic empyema has always been a clinical challenge for physicians. There is no standard procedure or treatment to deal with the situation, and multi-modality approach is often necessary. Surgical intervention plays a very crucial role in the treatment of chronic empyema. Since bronchopleural fistula is often seen in chronic empyema patients, therefore it should also be mentioned. In this chapter, the focus will be on the different treatment options, various surgical approaches, and the rationale behind every single modality. Certain specific entity will be included as well, such as tuberculosis infection, post lung resection empyema, and intrathoracic vacuum assisted closure system application. Even with the advancement of technology and techniques, chronic empyema management is still evolving, and we look forward to less traumatic ways of approach with better outcome in the future.",book:{id:"11045",title:"Pleura - A Surgical Perspective",coverURL:"https://cdn.intechopen.com/books/images_new/11045.jpg"},signatures:"Yu-Hui Yang"},{id:"78826",title:"Pneumothorax in Children",slug:"pneumothorax-in-children",totalDownloads:94,totalDimensionsCites:0,doi:"10.5772/intechopen.100329",abstract:"Pneumothorax is a common pleural disease worldwide and is defined as the free accumulation of air between visceral and parietal pleura. Pneumothorax can be spontaneous, iatrogenic, and traumatic. Although it is less common than adults, it is seen in about 1.1–4 per 100,000 per year in the childhood age group. In patients presenting with variable clinic according to the cause of etiology, diagnosis is confirmed on a PA chest radiograph, sometimes a computed tomography may be required. The management of pneumothorax is varying from conservative, over intermediate (chest tube drainage) to invasive methods (video-assisted thoracoscopic surgery—VATS, thoracotomy). Here, we planned to write a chapter that includes a text containing general information about pediatric pneumothorax, algorithms, and visual and clinical cases of the causes of pneumothorax in children, including age, etiology, and treatment approach of pneumothorax in children.",book:{id:"11045",title:"Pleura - A Surgical Perspective",coverURL:"https://cdn.intechopen.com/books/images_new/11045.jpg"},signatures:"Hatice Sonay Yalçın Cömert"},{id:"78760",title:"Bronchopleural Fistula after Pulmonary Resection: Risk Factors, Diagnoses and Management",slug:"bronchopleural-fistula-after-pulmonary-resection-risk-factors-diagnoses-and-management",totalDownloads:233,totalDimensionsCites:0,doi:"10.5772/intechopen.100209",abstract:"Bronchopleural fistula (BPF) after a pulmonary resection is rare with some of the most life-threatening consequences and a high mortality rate. Contamination of the pleural space resulting in empyema and spillage of the infected fluid into the remaining lung leading to respiratory distress remain the biggest concerns with BPF postoperatively. There are many patient characteristics and risk factors that can be evaluated to decrease the chance of a postoperative BPF. Presentation of BPF can be early or late with the late BPF more difficult to diagnosis and manage. 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That is exactly what he does, diving into Machine Learning algorithms and technologies to help TECNALIA to decide whether something is great in theory or will actually impact on the product or processes of its projects. So, he is expert at framing experiments, developing hypotheses, and proving whether they’re true or not, in order to investigate fundamental problems with a longer time horizon. He is also able to design and develop PoCs and system prototypes in simulation. He has participated in several national and internacional R&D projects.\n\nAs another relevant part of his everyday research work, he usually publishes his findings in reputed scientific refereed journals and international conferences, occasionally acting as reviewer and Programme Commitee member. Concretely, since 2018 he has published 9 JCR (8 Q1) journal papers, 9 conference papers (e.g. ECML PKDD 2021), and he has co-edited a book. He is also active in popular science writing data science stories for reputed blogs (KDNuggets, TowardsDataScience, Naukas). Besides, he has recently embarked on mentoring programmes as mentor, and has also worked as data science trainer.",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"103779",title:"Prof.",name:"Yalcin",middleName:null,surname:"Isler",slug:"yalcin-isler",fullName:"Yalcin Isler",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRyQ8QAK/Profile_Picture_1628834958734",biography:"Yalcin Isler (1971 - Burdur / Turkey) received the B.Sc. degree in the Department of Electrical and Electronics Engineering from Anadolu University, Eskisehir, Turkey, in 1993, the M.Sc. degree from the Department of Electronics and Communication Engineering, Suleyman Demirel University, Isparta, Turkey, in 1996, the Ph.D. degree from the Department of Electrical and Electronics Engineering, Dokuz Eylul University, Izmir, Turkey, in 2009, and the Competence of Associate Professorship from the Turkish Interuniversity Council in 2019.\n\nHe was Lecturer at Burdur Vocational School in Suleyman Demirel University (1993-2000, Burdur / Turkey), Software Engineer (2000-2002, Izmir / Turkey), Research Assistant in Bulent Ecevit University (2002-2003, Zonguldak / Turkey), Research Assistant in Dokuz Eylul University (2003-2010, Izmir / Turkey), Assistant Professor at the Department of Electrical and Electronics Engineering in Bulent Ecevit University (2010-2012, Zonguldak / Turkey), Assistant Professor at the Department of Biomedical Engineering in Izmir Katip Celebi University (2012-2019, Izmir / Turkey). He is an Associate Professor at the Department of Biomedical Engineering at Izmir Katip Celebi University, Izmir / Turkey, since 2019. In addition to academics, he has also founded Islerya Medical and Information Technologies Company, Izmir / Turkey, since 2017.\n\nHis main research interests cover biomedical signal processing, pattern recognition, medical device design, programming, and embedded systems. He has many scientific papers and participated in several projects in these study fields. He was an IEEE Student Member (2009-2011) and IEEE Member (2011-2014) and has been IEEE Senior Member since 2014.",institutionString:null,institution:{name:"Izmir Kâtip Çelebi University",country:{name:"Turkey"}}},{id:"339677",title:"Dr.",name:"Mrinmoy",middleName:null,surname:"Roy",slug:"mrinmoy-roy",fullName:"Mrinmoy Roy",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/339677/images/16768_n.jpg",biography:"An accomplished Sales & Marketing professional with 12 years of cross-functional experience in well-known organisations such as CIPLA, LUPIN, GLENMARK, ASTRAZENECA across different segment of Sales & Marketing, International Business, Institutional Business, Product Management, Strategic Marketing of HIV, Oncology, Derma, Respiratory, Anti-Diabetic, Nutraceutical & Stomatological Product Portfolio and Generic as well as Chronic Critical Care Portfolio. A First Class MBA in International Business & Strategic Marketing, B.Pharm, D.Pharm, Google Certified Digital Marketing Professional. Qualified PhD Candidate in Operations and Management with special focus on Artificial Intelligence and Machine Learning adoption, analysis and use in Healthcare, Hospital & Pharma Domain. Seasoned with diverse therapy area of Pharmaceutical Sales & Marketing ranging from generating revenue through generating prescriptions, launching new products, and making them big brands with continuous strategy execution at the Physician and Patients level. Moved from Sales to Marketing and Business Development for 3.5 years in South East Asian Market operating from Manila, Philippines. Came back to India and handled and developed Brands such as Gluconorm, Lupisulin, Supracal, Absolut Woman, Hemozink, Fabiflu (For COVID 19), and many more. In my previous assignment I used to develop and execute strategies on Sales & Marketing, Commercialization & Business Development for Institution and Corporate Hospital Business portfolio of Oncology Therapy Area for AstraZeneca Pharma India Ltd. Being a Research Scholar and Student of ‘Operations Research & Management: Artificial Intelligence’ I published several pioneer research papers and book chapters on the same in Internationally reputed journals and Books indexed in Scopus, Springer and Ei Compendex, Google Scholar etc. Currently, I am launching PGDM Pharmaceutical Management Program in IIHMR Bangalore and spearheading the course curriculum and structure of the same. I am interested in Collaboration for Healthcare Innovation, Pharma AI Innovation, Future trend in Marketing and Management with incubation on Healthcare, Healthcare IT startups, AI-ML Modelling and Healthcare Algorithm based training module development. I am also an affiliated member of the Institute of Management Consultant of India, looking forward to Healthcare, Healthcare IT and Innovation, Pharma and Hospital Management Consulting works.",institutionString:null,institution:{name:"Lovely Professional University",country:{name:"India"}}},{id:"310576",title:"Prof.",name:"Erick Giovani",middleName:null,surname:"Sperandio Nascimento",slug:"erick-giovani-sperandio-nascimento",fullName:"Erick Giovani Sperandio Nascimento",position:null,profilePictureURL:"https://intech-files.s3.amazonaws.com/0033Y00002pDKxDQAW/ProfilePicture%202022-06-20%2019%3A57%3A24.788",biography:"Prof. Erick Sperandio is the Lead Researcher and professor of Artificial Intelligence (AI) at SENAI CIMATEC, Bahia, Brazil, also working with Computational Modeling (CM) and HPC. He holds a PhD in Environmental Engineering in the area of Atmospheric Computational Modeling, a Master in Informatics in the field of Computational Intelligence and Graduated in Computer Science from UFES. He currently coordinates, leads and participates in R&D projects in the areas of AI, computational modeling and supercomputing applied to different areas such as Oil and Gas, Health, Advanced Manufacturing, Renewable Energies and Atmospheric Sciences, advising undergraduate, master's and doctoral students. He is the Lead Researcher at SENAI CIMATEC's Reference Center on Artificial Intelligence. In addition, he is a Certified Instructor and University Ambassador of the NVIDIA Deep Learning Institute (DLI) in the areas of Deep Learning, Computer Vision, Natural Language Processing and Recommender Systems, and Principal Investigator of the NVIDIA/CIMATEC AI Joint Lab, the first in Latin America within the NVIDIA AI Technology Center (NVAITC) worldwide program. He also works as a researcher at the Supercomputing Center for Industrial Innovation (CS2i) and at the SENAI Institute of Innovation for Automation (ISI Automação), both from SENAI CIMATEC. He is a member and vice-coordinator of the Basic Board of Scientific-Technological Advice and Evaluation, in the area of Innovation, of the Foundation for Research Support of the State of Bahia (FAPESB). He serves as Technology Transfer Coordinator and one of the Principal Investigators at the National Applied Research Center in Artificial Intelligence (CPA-IA) of SENAI CIMATEC, focusing on Industry, being one of the six CPA-IA in Brazil approved by MCTI / FAPESP / CGI.br. He also participates as one of the representatives of Brazil in the BRICS Innovation Collaboration Working Group on HPC, ICT and AI. He is the coordinator of the Work Group of the Axis 5 - Workforce and Training - of the Brazilian Strategy for Artificial Intelligence (EBIA), and member of the MCTI/EMBRAPII AI Innovation Network Training Committee. He is the coordinator, by SENAI CIMATEC, of the Artificial Intelligence Reference Network of the State of Bahia (REDE BAH.IA). He leads the working group of experts representing Brazil in the Global Partnership on Artificial Intelligence (GPAI), on the theme \"AI and the Pandemic Response\".",institutionString:"Manufacturing and Technology Integrated Campus – SENAI CIMATEC",institution:null},{id:"1063",title:"Prof.",name:"Constantin",middleName:null,surname:"Volosencu",slug:"constantin-volosencu",fullName:"Constantin Volosencu",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/1063/images/system/1063.png",biography:"Prof. Dr. Constantin Voloşencu graduated as an engineer from\nPolitehnica University of Timișoara, Romania, where he also\nobtained a doctorate degree. He is currently a full professor in\nthe Department of Automation and Applied Informatics at the\nsame university. Dr. Voloşencu is the author of ten books, seven\nbook chapters, and more than 160 papers published in journals\nand conference proceedings. He has also edited twelve books and\nhas twenty-seven patents to his name. He is a manager of research grants, editor in\nchief and member of international journal editorial boards, a former plenary speaker, a member of scientific committees, and chair at international conferences. His\nresearch is in the fields of control systems, control of electric drives, fuzzy control\nsystems, neural network applications, fault detection and diagnosis, sensor network\napplications, monitoring of distributed parameter systems, and power ultrasound\napplications. He has developed automation equipment for machine tools, spooling\nmachines, high-power ultrasound processes, and more.",institutionString:'"Politechnica" University Timişoara',institution:null},{id:"221364",title:"Dr.",name:"Eneko",middleName:null,surname:"Osaba",slug:"eneko-osaba",fullName:"Eneko Osaba",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/221364/images/system/221364.jpg",biography:"Dr. Eneko Osaba works at TECNALIA as a senior researcher. He obtained his Ph.D. in Artificial Intelligence in 2015. He has participated in more than twenty-five local and European research projects, and in the publication of more than 130 papers. He has performed several stays at universities in the United Kingdom, Italy, and Malta. Dr. Osaba has served as a program committee member in more than forty international conferences and participated in organizing activities in more than ten international conferences. He is a member of the editorial board of the International Journal of Artificial Intelligence, Data in Brief, and Journal of Advanced Transportation. He is also a guest editor for the Journal of Computational Science, Neurocomputing, Swarm, and Evolutionary Computation and IEEE ITS Magazine.",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"275829",title:"Dr.",name:"Esther",middleName:null,surname:"Villar-Rodriguez",slug:"esther-villar-rodriguez",fullName:"Esther Villar-Rodriguez",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/275829/images/system/275829.jpg",biography:"Dr. Esther Villar obtained a Ph.D. in Information and Communication Technologies from the University of Alcalá, Spain, in 2015. She obtained a degree in Computer Science from the University of Deusto, Spain, in 2010, and an MSc in Computer Languages and Systems from the National University of Distance Education, Spain, in 2012. Her areas of interest and knowledge include natural language processing (NLP), detection of impersonation in social networks, semantic web, and machine learning. Dr. Esther Villar made several contributions at conferences and publishing in various journals in those fields. Currently, she is working within the OPTIMA (Optimization Modeling & Analytics) business of TECNALIA’s ICT Division as a data scientist in projects related to the prediction and optimization of management and industrial processes (resource planning, energy efficiency, etc).",institutionString:"TECNALIA Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"49813",title:"Dr.",name:"Javier",middleName:null,surname:"Del Ser",slug:"javier-del-ser",fullName:"Javier Del Ser",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/49813/images/system/49813.png",biography:"Prof. Dr. Javier Del Ser received his first PhD in Telecommunication Engineering (Cum Laude) from the University of Navarra, Spain, in 2006, and a second PhD in Computational Intelligence (Summa Cum Laude) from the University of Alcala, Spain, in 2013. He is currently a principal researcher in data analytics and optimisation at TECNALIA (Spain), a visiting fellow at the Basque Center for Applied Mathematics (BCAM) and a part-time lecturer at the University of the Basque Country (UPV/EHU). His research interests gravitate on the use of descriptive, prescriptive and predictive algorithms for data mining and optimization in a diverse range of application fields such as Energy, Transport, Telecommunications, Health and Industry, among others. In these fields he has published more than 240 articles, co-supervised 8 Ph.D. theses, edited 6 books, coauthored 7 patents and participated/led more than 40 research projects. He is a Senior Member of the IEEE, and a recipient of the Biscay Talent prize for his academic career.",institutionString:"Tecnalia Research & Innovation",institution:{name:"Tecnalia",country:{name:"Spain"}}},{id:"278948",title:"Dr.",name:"Carlos Pedro",middleName:null,surname:"Gonçalves",slug:"carlos-pedro-goncalves",fullName:"Carlos Pedro Gonçalves",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRcmyQAC/Profile_Picture_1564224512145",biography:'Carlos Pedro Gonçalves (PhD) is an Associate Professor at Lusophone University of Humanities and Technologies and a researcher on Complexity Sciences, Quantum Technologies, Artificial Intelligence, Strategic Studies, Studies in Intelligence and Security, FinTech and Financial Risk Modeling. He is also a progammer with programming experience in:\n\nA) Quantum Computing using Qiskit Python module and IBM Quantum Experience Platform, with software developed on the simulation of Quantum Artificial Neural Networks and Quantum Cybersecurity;\n\nB) Artificial Intelligence and Machine learning programming in Python;\n\nC) Artificial Intelligence, Multiagent Systems Modeling and System Dynamics Modeling in Netlogo, with models developed in the areas of Chaos Theory, Econophysics, Artificial Intelligence, Classical and Quantum Complex Systems Science, with the Econophysics models having been cited worldwide and incorporated in PhD programs by different Universities.\n\nReceived an Arctic Code Vault Contributor status by GitHub, due to having developed open source software preserved in the \\"Arctic Code Vault\\" for future generations (https://archiveprogram.github.com/arctic-vault/), with the Strategy Analyzer A.I. module for decision making support (based on his PhD thesis, used in his Classes on Decision Making and in Strategic Intelligence Consulting Activities) and QNeural Python Quantum Neural Network simulator also preserved in the \\"Arctic Code Vault\\", for access to these software modules see: https://github.com/cpgoncalves. He is also a peer reviewer with outsanding review status from Elsevier journals, including Physica A, Neurocomputing and Engineering Applications of Artificial Intelligence. Science CV available at: https://www.cienciavitae.pt//pt/8E1C-A8B3-78C5 and ORCID: https://orcid.org/0000-0002-0298-3974',institutionString:"University of Lisbon",institution:{name:"Universidade Lusófona",country:{name:"Portugal"}}},{id:"241400",title:"Prof.",name:"Mohammed",middleName:null,surname:"Bsiss",slug:"mohammed-bsiss",fullName:"Mohammed Bsiss",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/241400/images/8062_n.jpg",biography:null,institutionString:null,institution:null},{id:"276128",title:"Dr.",name:"Hira",middleName:null,surname:"Fatima",slug:"hira-fatima",fullName:"Hira Fatima",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/276128/images/14420_n.jpg",biography:"Dr. Hira Fatima\nAssistant Professor\nDepartment of Mathematics\nInstitute of Applied Science\nMangalayatan University, Aligarh\nMobile: no : 8532041179\nhirafatima2014@gmal.com\n\nDr. Hira Fatima has received his Ph.D. degree in pure Mathematics from Aligarh Muslim University, Aligarh India. Currently working as an Assistant Professor in the Department of Mathematics, Institute of Applied Science, Mangalayatan University, Aligarh. She taught so many courses of Mathematics of UG and PG level. Her research Area of Expertise is Functional Analysis & Sequence Spaces. She has been working on Ideal Convergence of double sequence. She has published 17 research papers in National and International Journals including Cogent Mathematics, Filomat, Journal of Intelligent and Fuzzy Systems, Advances in Difference Equations, Journal of Mathematical Analysis, Journal of Mathematical & Computer Science etc. She has also reviewed few research papers for the and international journals. She is a member of Indian Mathematical Society.",institutionString:null,institution:null},{id:"414880",title:"Dr.",name:"Maryam",middleName:null,surname:"Vatankhah",slug:"maryam-vatankhah",fullName:"Maryam Vatankhah",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Borough of Manhattan Community College",country:{name:"United States of America"}}},{id:"414879",title:"Prof.",name:"Mohammad-Reza",middleName:null,surname:"Akbarzadeh-Totonchi",slug:"mohammad-reza-akbarzadeh-totonchi",fullName:"Mohammad-Reza Akbarzadeh-Totonchi",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Ferdowsi University of Mashhad",country:{name:"Iran"}}},{id:"414878",title:"Prof.",name:"Reza",middleName:null,surname:"Fazel-Rezai",slug:"reza-fazel-rezai",fullName:"Reza Fazel-Rezai",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"American Public University System",country:{name:"United States of America"}}},{id:"426586",title:"Dr.",name:"Oladunni A.",middleName:null,surname:"Daramola",slug:"oladunni-a.-daramola",fullName:"Oladunni A. Daramola",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Federal University of Technology",country:{name:"Nigeria"}}},{id:"357014",title:"Prof.",name:"Leon",middleName:null,surname:"Bobrowski",slug:"leon-bobrowski",fullName:"Leon Bobrowski",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Bialystok University of Technology",country:{name:"Poland"}}},{id:"302698",title:"Dr.",name:"Yao",middleName:null,surname:"Shan",slug:"yao-shan",fullName:"Yao Shan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Dalian University of Technology",country:{name:"China"}}},{id:"354126",title:"Dr.",name:"Setiawan",middleName:null,surname:"Hadi",slug:"setiawan-hadi",fullName:"Setiawan Hadi",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Padjadjaran University",country:{name:"Indonesia"}}},{id:"125911",title:"Prof.",name:"Jia-Ching",middleName:null,surname:"Wang",slug:"jia-ching-wang",fullName:"Jia-Ching Wang",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"National Central University",country:{name:"Taiwan"}}},{id:"332603",title:"Prof.",name:"Kumar S.",middleName:null,surname:"Ray",slug:"kumar-s.-ray",fullName:"Kumar S. Ray",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Statistical Institute",country:{name:"India"}}},{id:"415409",title:"Prof.",name:"Maghsoud",middleName:null,surname:"Amiri",slug:"maghsoud-amiri",fullName:"Maghsoud Amiri",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Allameh Tabataba'i University",country:{name:"Iran"}}},{id:"357085",title:"Mr.",name:"P. Mohan",middleName:null,surname:"Anand",slug:"p.-mohan-anand",fullName:"P. Mohan Anand",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}},{id:"356696",title:"Ph.D. Student",name:"P.V.",middleName:null,surname:"Sai Charan",slug:"p.v.-sai-charan",fullName:"P.V. Sai Charan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}},{id:"357086",title:"Prof.",name:"Sandeep K.",middleName:null,surname:"Shukla",slug:"sandeep-k.-shukla",fullName:"Sandeep K. Shukla",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Indian Institute of Technology Kanpur",country:{name:"India"}}}]}},subseries:{item:{id:"27",type:"subseries",title:"Multi-Agent Systems",keywords:"Collaborative Intelligence, Learning, Distributed Control System, Swarm Robotics, Decision Science, Software Engineering",scope:"Multi-agent systems are recognised as a state of the art field in Artificial Intelligence studies, which is popular due to the usefulness in facilitation capabilities to handle real-world problem-solving in a distributed fashion. The area covers many techniques that offer solutions to emerging problems in robotics and enterprise-level software systems. Collaborative intelligence is highly and effectively achieved with multi-agent systems. Areas of application include swarms of robots, flocks of UAVs, collaborative software management. Given the level of technological enhancements, the popularity of machine learning in use has opened a new chapter in multi-agent studies alongside the practical challenges and long-lasting collaboration issues in the field. It has increased the urgency and the need for further studies in this field. We welcome chapters presenting research on the many applications of multi-agent studies including, but not limited to, the following key areas: machine learning for multi-agent systems; modeling swarms robots and flocks of UAVs with multi-agent systems; decision science and multi-agent systems; software engineering for and with multi-agent systems; tools and technologies of multi-agent systems.",coverUrl:"https://cdn.intechopen.com/series_topics/covers/27.jpg",hasOnlineFirst:!0,hasPublishedBooks:!1,annualVolume:11423,editor:{id:"148497",title:"Dr.",name:"Mehmet",middleName:"Emin",surname:"Aydin",slug:"mehmet-aydin",fullName:"Mehmet Aydin",profilePictureURL:"https://mts.intechopen.com/storage/users/148497/images/system/148497.jpg",biography:"Dr. Mehmet Emin Aydin is a Senior Lecturer with the Department of Computer Science and Creative Technology, the University of the West of England, Bristol, UK. His research interests include swarm intelligence, parallel and distributed metaheuristics, machine learning, intelligent agents and multi-agent systems, resource planning, scheduling and optimization, combinatorial optimization. Dr. Aydin is currently a Fellow of Higher Education Academy, UK, a member of EPSRC College, a senior member of IEEE and a senior member of ACM. In addition to being a member of advisory committees of many international conferences, he is an Editorial Board Member of various peer-reviewed international journals. 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Finally, the tissue engineering subcategory will support topics such as the fundamentals of stem cells and progenitor cells and their proliferation, differentiation, bioreactors for three-dimensional culture and studies of phenotypic changes, stem and progenitor cells, both short and long term, ex vivo and in vivo implantation both in preclinical models and also in clinical trials.",annualVolume:11405,isOpenForSubmission:!0,coverUrl:"https://cdn.intechopen.com/series_topics/covers/9.jpg",editor:{id:"126286",title:"Dr.",name:"Luis",middleName:"Jesús",surname:"Villarreal-Gómez",fullName:"Luis Villarreal-Gómez",profilePictureURL:"https://mts.intechopen.com/storage/users/126286/images/system/126286.jpg",institutionString:null,institution:{name:"Autonomous University of Baja California",institutionURL:null,country:{name:"Mexico"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"35539",title:"Dr.",name:"Cecilia",middleName:null,surname:"Cristea",fullName:"Cecilia Cristea",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002aYQ65QAG/Profile_Picture_1621007741527",institutionString:null,institution:{name:"Iuliu Hațieganu University of Medicine and Pharmacy",institutionURL:null,country:{name:"Romania"}}},{id:"40735",title:"Dr.",name:"Gil",middleName:"Alberto Batista",surname:"Gonçalves",fullName:"Gil Gonçalves",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002aYRLGQA4/Profile_Picture_1628492612759",institutionString:null,institution:{name:"University of Aveiro",institutionURL:null,country:{name:"Portugal"}}},{id:"211725",title:"Associate Prof.",name:"Johann F.",middleName:null,surname:"Osma",fullName:"Johann F. 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