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样本温度对脑组织单轴压缩力学性能的影响研究

Study on the Effect of Sample Temperature on the Uniaxial Compressive Mechanical Properties of the Brain Tissue.

作者信息

Guan Fengjiao, Zhang Guanjun, Jia Xiaohang, Deng Xiaopeng

机构信息

Laboratory of Science and Technology on Integrated Logistics Support, College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, China.

State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, China.

出版信息

Appl Bionics Biomech. 2021 Jul 14;2021:9986395. doi: 10.1155/2021/9986395. eCollection 2021.

Abstract

Craniocerebral injury has been a research focus in the field of injury biomechanics. Although experimental endeavors have made certain progress in characterizing the material behavior of the brain, the temperature dependency of brain mechanics appears to be inconclusive thus far. To partially address this knowledge gap, the current study measured the brain material behavior via unconstrained uniaxial compression tests under low strain rate (0.0083 s) and high strain rate (0.83 s) at four different sample temperatures (13°C, 20°C, 27°C, and 37°C). Each group has 9~12 samples. One-way analysis of variance method was used to study the influence of sample temperature on engineering stress. The results show that the effect of sample temperature on the mechanical properties of brain tissue is significant under the high strain rate, especially at low temperature (13°C), in which the hardening of the brain tissue is very obvious. At the low strain rate, no temperature dependency of brain mechanics is noted. Therefore, the current results highlight that the temperature of the brain sample should be ensured to be in accordance with the living subject when studying the biomechanical response of living tissue.

摘要

颅脑损伤一直是损伤生物力学领域的研究重点。尽管实验研究在表征大脑的材料行为方面取得了一定进展,但迄今为止,大脑力学的温度依赖性似乎尚无定论。为了部分填补这一知识空白,本研究通过在四个不同样本温度(13°C、20°C、27°C和37°C)下的低应变率(0.0083 s)和高应变率(0.83 s)无约束单轴压缩试验来测量大脑材料行为。每组有9至12个样本。采用单因素方差分析方法研究样本温度对工程应力的影响。结果表明,在高应变率下,尤其是在低温(13°C)时,样本温度对脑组织力学性能的影响显著,此时脑组织的硬化非常明显。在低应变率下,未观察到大脑力学的温度依赖性。因此,当前结果强调,在研究活体组织的生物力学响应时,应确保大脑样本的温度与活体受试者一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1444/8294973/884dc698a284/ABB2021-9986395.001.jpg

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