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猪脑的动态区域力学特性:冠状面压痕试验

Dynamic, regional mechanical properties of the porcine brain: indentation in the coronal plane.

作者信息

Elkin Benjamin S, Ilankova Ashok, Morrison Barclay

机构信息

Department of Biomedical Engineering, Columbia University, New York 10027, NY, USA.

出版信息

J Biomech Eng. 2011 Jul;133(7):071009. doi: 10.1115/1.4004494.

Abstract

Stress relaxation tests using a custom designed microindentation device were performed on ten anatomic regions of fresh porcine brain (postmortem time <3 h). Using linear viscoelastic theory, a Prony series representation was used to describe the shear relaxation modulus for each anatomic region tested. Prony series parameters fit to load data from indentations performed to ∼10% strain differed significantly by anatomic region. The gray and white matter of the cerebellum along with corpus callosum and brainstem were the softest regions measured. The cortex and hippocampal CA1/CA3 were found to be the stiffest. To examine the large strain behavior of the tissue, multistep indentations were performed in the corona radiata to strains of 10%, 20%, and 30%. Reduced relaxation functions were not significantly different for each step, suggesting that quasi-linear viscoelastic theory may be appropriate for representing the nonlinear behavior of this anatomic region of porcine brain tissue. These data, for the first time, describe the dynamic and short time scale behavior of multiple anatomic regions of the porcine brain which will be useful for understanding porcine brain injury biomechanics at a finer spatial resolution than previously possible.

摘要

使用定制设计的微压痕装置对新鲜猪脑的十个解剖区域进行了应力松弛测试(死后时间<3小时)。利用线性粘弹性理论,采用Prony级数表示法来描述每个测试解剖区域的剪切松弛模量。拟合至约10%应变的压痕载荷数据的Prony级数参数在不同解剖区域存在显著差异。小脑的灰质和白质以及胼胝体和脑干是所测最软的区域。发现皮质和海马CA1/CA3是最硬的。为了研究组织的大应变行为,在放射冠中进行了多步压痕至10%、20%和30%的应变。各步骤的简化松弛函数无显著差异,表明准线性粘弹性理论可能适用于描述猪脑组织该解剖区域的非线性行为。这些数据首次描述了猪脑多个解剖区域的动态和短时间尺度行为,这将有助于以比以往更高的空间分辨率理解猪脑损伤生物力学。

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