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大鼠骨骼肌体外被动横向力学性能随温度的变化

Passive transverse mechanical properties as a function of temperature of rat skeletal muscle in vitro.

作者信息

van Turnhout Mark, Peters Gerrit, Stekelenburg Anke, Oomens Cees

机构信息

Eindhoven University of Technology, Faculty of Biomedical Engineering, Department of Materials Technology, The Netherlands.

出版信息

Biorheology. 2005;42(3):193-207.

Abstract

The objective of the current study was to determine the in vitro passive transverse mechanical properties of skeletal muscle with Dynamic Mechanical Thermal Analysis (DMTA) tests. The starting hypotheses was that the time-temperature-superposition principle could be used to expand the DMTA results to a 1 kHz frequency range. Experiments were performed with rat hind leg skeletal muscle tissue samples on a rotational rheometer using a parallel plate geometry. Because of the small size and low modulus of the samples, the standard test geometry was altered and the samples were shifted from the center to the edge of the plates. From strain sweep tests it became clear that for strains smaller than 0.003 the muscle tissue behaves linearly. In the linear region storage moduli ranged between 24 kPa (omega = 1 rad/s) and 42 kPa (omega = 100 rad/s) at T = 4 degrees C and 22 kPa and 33 kPa at 29 degrees C within the experimental frequency range. The loss modulus decreased with increasing frequency and ranged between 7 and 4 kPa at 4 degrees C and 4.5 and 3.5 kPa at 29 degrees C. Although the properties are clearly temperature dependent, a temperature shift in phase angle delta could not be detected, thus Time Temperature Superposition is not allowed for skeletal muscle in vitro.

摘要

本研究的目的是通过动态机械热分析(DMTA)测试来确定骨骼肌的体外被动横向力学性能。最初的假设是时间-温度叠加原理可用于将DMTA结果扩展到1 kHz频率范围。使用平行板几何结构在旋转流变仪上对大鼠后腿骨骼肌组织样本进行实验。由于样本尺寸小且模量低,改变了标准测试几何结构,并将样本从平板中心移至边缘。从应变扫描测试中可以清楚地看出,对于小于0.003的应变,肌肉组织表现为线性。在实验频率范围内,在T = 4℃时,线性区域的储能模量在24 kPa(ω = 1 rad/s)至42 kPa(ω = 100 rad/s)之间,在29℃时为22 kPa和33 kPa。损耗模量随频率增加而降低,在4℃时介于7至4 kPa之间,在29℃时介于4.5至3.5 kPa之间。尽管这些性能明显依赖于温度,但未检测到相角δ的温度偏移,因此体外骨骼肌不适用时间温度叠加。

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