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首页> 外文期刊>Journal of Biomechanics >Shear-deformation based continuum-damage constitutive modeling of brain tissue
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Shear-deformation based continuum-damage constitutive modeling of brain tissue

机译:基于剪切变形的脑组织的连续损伤本构模拟

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摘要

Traumatic brain injury (TBI) isa leading cause of death in the United States. Depending on the severity of injury, complications such as memory loss and emotional changes are common. While the exact mechanisms are still unclear, these cognitive deficiencies are thought to arise from microstructural damages to the brain tissue, such as in diffuse-axonal injury where neuron fibers are sheared. Constitutive models can predict such damage at a microstructural level and allow for insight into the mechanisms of injury initiating at lower length scales. In this study, we developed a continuum damage model of brain tissue that is validated by experimental quasi-static stress-strain tests in tension, compression, and shear. The present work shows that damage is most present in the shear stress state, making the tissue suitable for damage modeling via shear interaction terms. Using this model, new insights into microstructural breakdown due to shear stresses and strains can be gained by application to simulations. (c) 2021 Elsevier Ltd. All rights reserved.
机译:创伤性脑损伤(TBI)是美国的主要死亡原因。根据损伤的严重程度,记忆力丧失和情绪变化等并发症很常见。虽然确切的机制尚不清楚,但这些认知缺陷被认为是由脑组织的微结构损伤引起的,例如在弥漫性轴索损伤中,神经元纤维被切断。本构模型可以在微观结构水平上预测此类损伤,并允许深入了解在较低长度尺度上引发损伤的机制。在这项研究中,我们开发了脑组织的连续损伤模型,并通过拉伸、压缩和剪切的实验准静态应力应变测试进行了验证。目前的研究表明,损伤主要存在于剪切应力状态,使得组织适合通过剪切相互作用项进行损伤建模。利用该模型,通过应用于模拟,可以获得关于剪切应力和应变引起的微观结构破坏的新见解。(c)2021爱思唯尔有限公司保留所有权利。

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