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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >On the Transversely Isotropic, Hyperelastic Response of Central Nervous System White Matter Using a Hybrid Approach
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On the Transversely Isotropic, Hyperelastic Response of Central Nervous System White Matter Using a Hybrid Approach

机译:在横向各向同性超弹性的反应的中枢神经系统白质使用混合方法

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A numerical and experimental hybrid approach is developed to study the constitutive behavior of the central nervous system white matter. A published transversely isotropic hyperelastic strain energy function is reviewed and used to determine stress-strain relationships for three idealized, simple loading scenarios. The proposed constitutive model is simplified to a three-parameter hyperelastic model by assuming the white matter's incompressibility. Due to a lack of experimental data in all three loading scenarios, a finite element model that accounts for microstructural axons and their kinematics is developed to simulate behaviors in simple shear loading scenarios to supplement existing uniaxial tensile test data. The parameters of the transversely isotropic hyperelastic material model are determined regressively using the hybrid data. The results highlight that a hybrid numerical virtual test coupled with experimental data, can determine the transversely isotropic hyperelastic model. It is noted that the model is not limited to small strains and can be applied to large deformations.
机译:数值和实验混合方法发达的本构行为研究中枢神经系统白质。横向各向同性超弹性的发表应变能函数是用来确定三个应力-应变关系理想化的、简单的加载场景。本构模型是一个简化的带三个参数的超弹性的模型假设白质的不可压缩性。缺乏实验数据在所有三个加载场景中,一个账户的有限元模型显微结构的轴突及其运动学开发模拟在简单剪切行为补充现有的单轴加载场景拉伸测试数据。横向各向同性超弹性的材料模型回归的使用决定混合数据。数字虚拟测试加上实验数据,可以确定横向各向同性超弹性的模型。不限于压力小,可以应用大变形。

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