106,29 €
Finite Element Analysis for Biomedical Engineering Applications
Finite Element Analysis for Biomedical Engineering Applications
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Finite Element Analysis for Biomedical Engineering Applications
Finite Element Analysis for Biomedical Engineering Applications
El. knyga:
106,29 €
Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations.This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as an…
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  • Autorius: Z. C. Yang
  • Leidėjas:
  • Metai: 2019
  • Puslapiai: 318
  • ISBN: 9780429590214
  • ISBN-10: 0429590210
  • ISBN-13: 9780429590214
  • Formatas: ACSM ?
  • Kalba: Anglų

Finite Element Analysis for Biomedical Engineering Applications | knygos.lt

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Aprašymas

Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations.

This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as anisotropic nonlinear material, multidimensional interpolation, XFEM, fiber enhancement, UserHyper, porous media, wear, and crack growth fatigue analysis. The final section presents some specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent. All modeling files are attached in the appendixes of the book.

This book will be helpful to graduate students and researchers in the biomedical field who engage in simulations of biomedical problems. The book also provides all readers with a better understanding of current advanced finite element technologies.



Details finite element modeling of bone, soft tissues, joints, and implants



Presents advanced finite element technologies, such as fiber enhancement, porous media, wear, and crack growth fatigue analysis



Discusses specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent



Explains principles for modeling biology



Provides various descriptive modeling files
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Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations.

This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as anisotropic nonlinear material, multidimensional interpolation, XFEM, fiber enhancement, UserHyper, porous media, wear, and crack growth fatigue analysis. The final section presents some specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent. All modeling files are attached in the appendixes of the book.

This book will be helpful to graduate students and researchers in the biomedical field who engage in simulations of biomedical problems. The book also provides all readers with a better understanding of current advanced finite element technologies.



Details finite element modeling of bone, soft tissues, joints, and implants



Presents advanced finite element technologies, such as fiber enhancement, porous media, wear, and crack growth fatigue analysis



Discusses specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent



Explains principles for modeling biology



Provides various descriptive modeling files

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