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پیش بینی اثرات ضایعه مغزی بر آرایش فیزیکی فیبرهای عصبی ماده سفید مغز در یک مدل اجزای محدود از سر انسان مبتنی بر فیبرنگاری
یوسف ثانی، عبدالمجید Yousefsani, Abdolmajid
Cataloging brief
پیش بینی اثرات ضایعه مغزی بر آرایش فیزیکی فیبرهای عصبی ماده سفید مغز در یک مدل اجزای محدود از سر انسان مبتنی بر فیبرنگاری
پدیدآور اصلی :
یوسف ثانی، عبدالمجید Yousefsani, Abdolmajid
ناشر :
صنعتی شریف
سال انتشار :
1397
موضوع ها :
تغییر شکل بزرگ Large Deformation مدل سازی میکرومکانیکی Micromechanical Modeling مدل سازی...
شماره راهنما :
08-51368
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(135)
1-s2.0-S1751616118300742-main
Micromechanics of brain white matter tissue: A fiber-reinforced hyperelastic model using embedded element technique
Introduction
Methods
Representative volume element
Material model
Embedded element technique
Results
Discussion
Conflict of interest statement
Recursive impenetrable hard-sphere scheme
References
1-s2.0-S1751616118307975-main
A three-dimensional micromechanical model of brain white matter with histology-informed probabilistic distribution of axonal fibers
Introduction
Methods
Constitutive material model
Representative volume element
Material characterization
Homogenization
Results
Discussion
Conflict of interest
References
for print 2
(135)
1-s2.0-S1751616118300742-main
(149)
Micromechanics of brain white matter tissue: A fiber-reinforced hyperelastic model using embedded element technique
(149)
Introduction
(149)
Methods
(150)
Representative volume element
(150)
Material model
(151)
Embedded element technique
(152)
Results
(153)
Discussion
(155)
Conflict of interest statement
(156)
Recursive impenetrable hard-sphere scheme
(156)
References
(156)
1-s2.0-S1751616118307975-main
(158)
A three-dimensional micromechanical model of brain white matter with histology-informed probabilistic distribution of axonal fibers
(158)
Introduction
(158)
Methods
Constitutive material model
Representative volume element
Material characterization
Homogenization
Results
Discussion
Conflict of interest
References
for print 3
(159)
1-s2.0-S1751616118300742-main
Micromechanics of brain white matter tissue: A fiber-reinforced hyperelastic model using embedded element technique
Introduction
Methods
Representative volume element
Material model
Embedded element technique
Results
Discussion
Conflict of interest statement
Recursive impenetrable hard-sphere scheme
References
1-s2.0-S1751616118307975-main
A three-dimensional micromechanical model of brain white matter with histology-informed probabilistic distribution of axonal fibers
Introduction
Methods
Constitutive material model
Representative volume element
Material characterization
Homogenization
Results
Discussion
Conflict of interest
References
for print 2