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The Biomechanics of Impact Injury
Biomechanical Response, Mechanisms of Injury, Human Tolerance and Simulation

Inglese · Tascabile

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

This text acquaints the reader on the biomechanics of injury to the human body caused by impact and the use of computer models to simulate impact events. It provides a basic understanding of the biomechanics of the injuries resulting from the impact to the head, neck, chest, abdomen, spine, pelvis and the lower extremities, including the foot and ankle. Other topics include side impact, car-pedestrian impact, effectiveness of automotive restraint systems and sports-related injuries. Featuring problems and PowerPoint slides for lectures, the volume is ideal for students in graduate programs in biomechanics, as well as practicing engineers, and researchers in the life sciences concerned with orthopedics.

Info autore










Albert I. King, PhD is a Distinguished Professor of Biomedical Engineering at Wayne State University and is widely known for his contributions to the field of impact biomechanics. He has studied injury mechanisms from head to toe, including the brain, neck, thoracolumbar spine, pelvis, knee, ankle and foot. He developed computer models to simulate the effect of impact on the human body and is a strong proponent of using computer models for automotive safety design to reduce the cost of new car design. He believes that injury mechanisms need to be understood because It is better to prevent an injury than to treat it. However, injuries cannot be prevented unless we know the cause. Dr. King was the first engineer in impact biomechanics to be elected to the National Academy of Engineering in 2000. He received many other awards, including the Smithsonian Medal in 1998 and the Kappa Delta Award from the American Academy of Orthopedic Surgeons in 1995.
 


Riassunto

This text acquaints the reader on the biomechanics of injury to the human body caused by impact and the use of computer models to simulate impact events. It provides a basic understanding of the biomechanics of the injuries resulting from the impact to the head, neck, chest, abdomen, spine, pelvis and the lower extremities, including the foot and ankle. Other topics include side impact, car-pedestrian impact, effectiveness of automotive restraint systems and sports-related injuries. Featuring problems and PowerPoint slides for lectures, the volume is ideal for students in graduate programs in biomechanics, as well as practicing engineers, and researchers in the life sciences concerned with orthopedics.  

Testo aggiuntivo

“This is a broad survey featuring engineering mechanics and the relationship of this discipline to blunt trauma. … This book is most appropriate for mechanical engineers or those in other engineering disciplines. Trauma surgeons, neurosurgeons, and orthopedic surgeons may also be interested in this book.” (David J. Dries, Doody's Book Reviews, November, 2017)

Relazione

"This is a broad survey featuring engineering mechanics and the relationship of this discipline to blunt trauma. ... This book is most appropriate for mechanical engineers or those in other engineering disciplines. Trauma surgeons, neurosurgeons, and orthopedic surgeons may also be interested in this book." (David J. Dries, Doody's Book Reviews, November, 2017)

Dettagli sul prodotto

Autori Albert I. King, Albert I King
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Tascabile
Data pubblicazione 01.01.2018
Categoria Scienze naturali, medicina, informatica, tecnica > Tecnica > Altro
 
EAN 9783319842424
ISBN 978-3-31-984242-4
Numero di pagine 662
Illustrazioni LVI, 662 p. 526 illus., 249 illus. in color.
Dimensioni (della confezione) 15.5 x 3.2 x 23.5 cm
Peso (della confezione) 1’203 g
 
Categorie B, Orthopädie und Brüche, Orthopedics, engineering, Orthopaedics, Medical physics, Biophysics, Biological physics, Biological and Medical Physics, Biophysics, Surgical orthopaedics & fractures, Biomedical Engineering and Bioengineering, Biomedical engineering, Conservative Orthopedics
 

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