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Image-Based Multilevel Biomechanical Modeling for Fall-Induced Hip Fracture

Englisch · Taschenbuch

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Beschreibung

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Fall-induced hip fracture is an epidemic health risk among elderly people. This book presents an image-based multilevel modeling approach to understanding the biomechanics involved in fall-induced hip fracture. By hierarchically integrating a body-level dynamics model, a femur-level finite element model, and a local bone failure model, the biomechanics approach is able to simulate all stages in sideways falls and to incorporate all biomechanical variables affecting hip fracture. This book is useful for clinicians to accurately evaluate fracture risk, for biomechanical engineers to virtually test hip protective devices, and for biomedical students to learn image-based biomechanical modeling techniques.
This book also covers:

  • Biomechanical viewing on bone composition, bone remodeling, and bone strength
  • Bone imaging and information captured for constructing biomechanical models
  • Bone mechanical testing and mechanical properties required for biomechanical modeling

Inhaltsverzeichnis

Introduction.- Bone Composition, Metabolism and Bone Disease.- Bone Imaging for Osteoporosis Assessment.- Bone Density and Mechanical Property.- Multilevel Biomechanics of Hip Fracture.- Risk of Fall.- Low-Trauma Accident Fall and Impact Force.- Finite Element Modeling of Femur Stresses/Strains Induced by Impact Force.- Measurements of Hip Fracture Risk.- Preliminary Clinical Studies.

Über den Autor / die Autorin

Dr. Yunhua Luo is an Associate Professor at the University of Manitoba.

Zusammenfassung

Fall-induced hip fracture is an epidemic health risk among elderly people. This book presents an image-based multilevel modeling approach to understanding the biomechanics involved in fall-induced hip fracture. By hierarchically integrating a body-level dynamics model, a femur-level finite element model, and a local bone failure model, the biomechanics approach is able to simulate all stages in sideways falls and to incorporate all biomechanical variables affecting hip fracture. This book is useful for clinicians to accurately evaluate fracture risk, for biomechanical engineers to virtually test hip protective devices, and for biomedical students to learn image-based biomechanical modeling techniques.
This book also covers:

  • Biomechanical viewing on bone composition, bone remodeling, and bone strength
  • Bone imaging and information captured for constructing biomechanical models
  • Bone mechanical testing and mechanical properties required for biomechanical modeling

Zusatztext

“This book documents the early development of methodology to predict hip fracture risk in an individual patient. … This is written for biomechanical researchers, clinicians, and graduate students in the field of fall-induced skeletal fracture and risk assessment. … This is an excellent, well‐conceived, unique book. … It is an essential addition to the academic libraries frequented by those interested in this subject.” (Samuel J. Chmell, Doody's Book Reviews, May, 2017)

Bericht

"This book documents the early development of methodology to predict hip fracture risk in an individual patient. ... This is written for biomechanical researchers, clinicians, and graduate students in the field of fall-induced skeletal fracture and risk assessment. ... This is an excellent, well-conceived, unique book. ... It is an essential addition to the academic libraries frequented by those interested in this subject." (Samuel J. Chmell, Doody's Book Reviews, May, 2017)

Produktdetails

Autoren Yunhua Luo
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Taschenbuch
Erschienen 01.01.2018
 
EAN 9783319847146
ISBN 978-3-31-984714-6
Seiten 165
Abmessung 155 mm x 10 mm x 235 mm
Gewicht 290 g
Illustration XVI, 165 p. 153 illus., 40 illus. in color.
Themen Naturwissenschaften, Medizin, Informatik, Technik > Biologie > Genetik, Gentechnik

B, Radiology, Biomedizinische Technik, regenerative medicine, Tissue Engineering, Biomedical and Life Sciences, Imaging / Radiology, Biomedical Engineering and Bioengineering, Medical imaging, Biomedical engineering, Regenerative Medicine and Tissue Engineering, Regenerative Medicine/Tissue Engineering

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