Optical Measurement Methods in Biomechanics, J.C. Shelton; J.F. Orr
Автор: Malik Название: Orthopaedic Biomechanics Made Easy ISBN: 110768546X ISBN-13(EAN): 9781107685468 Издательство: Cambridge Academ Рейтинг: Цена: 50680.00 T Наличие на складе: Поставка под заказ. Описание: In order to flourish, orthopaedic trainees require a sound understanding of the biomechanical principles underpinning the surgical specialty. Covering all of these major principles in discrete, concise sections, this book provides valuable guidance for orthopaedic trainees at every level, as well as biomechanical researchers and other professionals in the field.
Автор: Vladimir G. Ivancevic; Tijana T. Ivancevic Название: Human-Like Biomechanics ISBN: 9048170478 ISBN-13(EAN): 9789048170470 Издательство: Springer Рейтинг: Цена: 213360.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Human-Like Biomechanics is a comprehensive introduction into modern geometrical methods to be used as a unified research approach in two apparently separate and rapidly growing fields: mathematical biomechanics and humanoid robotics. The book contains six Chapters and an Appendix.
Автор: M. D. Gilchrist Название: IUTAM Symposium on Impact Biomechanics: From Fundamental Insights to Applications ISBN: 9048169682 ISBN-13(EAN): 9789048169689 Издательство: Springer Рейтинг: Цена: 200260.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Preface; SESSION 1: The Contribution of Accident Investigation Research to Biomechanics, by M. Mackay; Modeling the Effects of Blast on the Human Thorax Using High Strain Rate Viscoelastic Properties of Human Tissue, by E.E. Ward, M. Kleinbergeic, A.M. Lennon and J.C. Roberts; Preliminary Analysis of Blunt Ballistic Impacts to the Abdomen, by C. Bir and J. Eck;Development of an Assessment Methodology for Lower Leg Injuries Resulting from Anti-Vehicular Blast Landmines, by J. Manseau and M. Keown; Occupant Lower Leg Injury Assessment in Landmine Detonations under a Vehicle, by M.J. van der Horst, C.K. Simms, R. van Maasdam and P.J.C. Leerdam; The Simulated Response of Cortical and Cancellous Bone to Various Rates of Loading - A Preliminary Numerical Study, by L.A. Oerder and G.N. Nurick. ESSION 2: Multibody Dynamics Approaches for Biomechanical Modeling in Human Impact Applications, by J. Ambrуsio and M. Silva; Reconstructing Real Life Accidents towards Establishing Criteria for Traumatic Head Impact Injuries, by M.C. Doorly, J.P. Phillips and M.D. Gilchrist; Combined Multi-Body Dynamic and FE Models of Human Head and Neck, by V. Esat, D.W. van Lopik and M. Acar; Three Years' Old Child Neck Finite Element Modelisation, by R. Dupuis, F Meyer and R. Willinger; Response Analysis of Lumbar Vertebra Model under Axial Impact Loading, by J. Fang, J. Cao, J. Zhang, Q.G. Rong and D.G. Zhou. SESSION 3: Head Impact Biomechanics in Sport, by D.C. Viano; Biofidelity of Dummy and FEM Necks in the Frequency Domain, by N. Bourdet, R. Fischer, F. Meyer and R. Willinger; Influence of Helmet Inertial Properties on Neck Injury Risk during Ejection: A Numerical Human Model Approach, by S. Laporte, E. Chavary, W. Skalli and A. Guillaume; Quasi-Analytic Acceleration Injury Risk Functions: Application to Car Occupant Risk in Frontal Collisions, by D. Wood, C. Simms, C. Glynn, A. Kuligren and A. Ydenius; Modeffing of Frontal Collisions from Onboard Recorder and Full WidthBarrier Data, by C. Simms, D. Wood, C. Glynn, A. Kuligren and A. Ydenius; Accidents of Motorcyclists against Roadside Infrastructure, by El Lуpez-Valdйs, D. Garcia, D. Pedrero and J.L. Moreno. SESSION 4: Biomechanical Aspects of Blunt and Penetrating Head Injuries, by N. Yoganandan, F.A. Pintar J. Zhang, T.A. Gennarelli and N. Beuse; Biomechanics of Frontal Skull Fracture, by H. Delye, P. Verschueren, B. Depreitere, C. Van Lierde, I. Verpoest, D. Berckmans, J. Vander Sloten, G. Van der Perre and J. Goffin; Numerical Modeling of the Human Head under Impact: New Injury Mechanisms and Tolerance Limits, by D. Baumgartner and R. Willinger; Mechanisms and Tolerance Cuiwes of Traumatic Diffuse Axonal Injury (DAT), by E. Schuller and I. Niemeyer; Sensory Disorders of the Auditory and Vestibular Systems Following Blunt Head Trauma, by A.Ernst; Biomechanical, Radiographic and Osteologic Observations of Lower Cervical Spine Injuries, by L. Kazarian and R. Shively. SESSION 5: Impact Injury in Sport, by A.S. Mcintosh; Clinical and Biomechanical Research for Bicycle Helmet Optimisation, by C. Van Lierde, B. Depreitere, P. Verschueren, H. Delye, D. Berckmans, I. Verpoest, J. Goffin, J. Vander Sloten and G. Van der Perre; Application of Finite Element Analysis to Helmet Design, by T. Smith, J. Lenkeit and J. Boughton; Finite Element Modeling for the Prediction of Blast Trauma, by A. Greer D. Cronin, C. Salisbury and K. Williams;Evaluation of Human Head Injury in Tracked Vehicle Subjected to Mine Blast, by F. Wang, H.P. Lee, C. Lu and Q.H. Cheng; Finite Volume Solution to High Rate Wave Propagation through a Lung Alveoli Stack, by O. Alakija, A. Ivankovic and A. Karac. SESSION 6: Cellular Basis for the Nonlinear Constitutive Properties of Brain Tissue, by M. DeRidder and D.F. Meaney; Cerebral Bridging Vein Rupture in Humans, by B. Depreitere, C. Van Lierde, P. Verschueren, H. Delye, D. Berckmans, I. Verpoest, J. Vander Sloten, G. Van der Perre and J. Goffin; Three
Название: Biomechanics at Micro and Nanoscale Levels. Volume IV ISBN: 981277131X ISBN-13(EAN): 9789812771315 Издательство: World Scientific Publishing Рейтинг: Цена: 109830.00 T Наличие на складе: Невозможна поставка. Описание: A project on "Biomechanics at Micro- and Nanoscale Levels" was approved by Ministry of Education, Culture, Sports, Science and Technology of Japan in 2003. This volume summarizes the research results achieved by project members throughout its 4-year duration. It is for those interested in the area of biomechanics at micro- and nanoscale levels.
Автор: Zdero, Radovan Название: Experimental Methods in Orthopaedic Biomechanics ISBN: 0128038020 ISBN-13(EAN): 9780128038024 Издательство: Elsevier Science Рейтинг: Цена: 132500.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание:
Experimental Methods in Orthopaedic Biomechanics is the first book in the field that focuses on the practicalities of performing a large variety of in-vitro laboratory experiments. Explanations are thorough, informative, and feature standard lab equipment to enable biomedical engineers to advance from a 'trial and error' approach to an efficient system recommended by experienced leaders.
This is an ideal tool for biomedical engineers or biomechanics professors in their teaching, as well as for those studying and carrying out lab assignments and projects in the field. The experienced authors have established a standard that researchers can test against in order to explain the strengths and weaknesses of testing approaches.
Автор: Gefen Amit Название: Multiscale Computer Modeling in Biomechanics and Biomedical ISBN: 3642364810 ISBN-13(EAN): 9783642364815 Издательство: Springer Рейтинг: Цена: 139750.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This book reviews the state-of-the-art in multiscale computer modeling, examining both its accomplishments and its challenges. Helps connect traditional biomedical engineering at the organ and tissue scale with cellular and molecular bioengineering.
Автор: A.W. Miles; K.E. Tanner Название: Strain Measurement in Biomechanics ISBN: 9401050295 ISBN-13(EAN): 9789401050296 Издательство: Springer Рейтинг: Цена: 93160.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Strain Measurement in Biomechanics will provide a valuable reference source for all research workers in biomechanics and biomaterials as well as orthopaedic manufacturers and orthopaedic surgeons.
Автор: Knudson, Duane Название: Fundamentals of Biomechanics 2 ed ISBN: 0387493115 ISBN-13(EAN): 9780387493114 Издательство: Springer Рейтинг: Цена: 93160.00 T Наличие на складе: Невозможна поставка. Описание: Fundamentals of Biomechanics, 2nd edition, presents a clear, conceptual approach to understanding biomechanics within the context of the qualitative analysis of human movement. The philosophy is to blend up-to-date biomechanical knowledge (with extensive referencing for student study) with professional application knowledge. This true application of biomechanics in real-world settings is missing in previous biomechanics texts.The text provides real-world examples of the application of biomechanics several ways. Like other texts, human movement examples and problems are discussed to help teach biomechanical variables and concepts. This text, however, goes beyond this physics class with sport example approach. First, nine principles of biomechanics are developed throughout the book to link theoretical knowledge with practical/professional principles and application. These nine generic application principles are based on the laws and concepts of biomechanics, so they can be applied to all human movements. There principles help PETE majors address standard 2 on applying movement concepts and principles in physical education (NASPE, 1995). Most biomechanics texts that have tried to develop principles for application have created many specific observations about many categories of human movement, so students tend to get lost. Second, the last section of the book develops the application of biomechanics in qualitative analysis of several movements in four professional areas: physical education, coaching, strength & conditioning, and sports medicine. These guided tours of the application of biomechanics to solve human movement problems are similar to the extensive interdisciplinary qualitative analysis tutorials in Knudson & Morrison (2002).
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