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根据张力瞬变确定的高频范围内骨骼肌纤维节段的复杨氏模量。

The complex Young's modulus of skeletal muscle fibre segments in the high frequency range determined from tension transients.

作者信息

De Winkel M E, Blangé T, Treijtel B W

机构信息

Department of Physiology, University of Amsterdam, The Netherlands.

出版信息

J Muscle Res Cell Motil. 1993 Jun;14(3):302-10. doi: 10.1007/BF00123095.

DOI:10.1007/BF00123095
PMID:8360319
Abstract

Stiffness measurements of muscle fibres are often based on application of a length change at one end of the muscle fibre and recording of the following tension change at the other end. In this study a method is developed to determine in the high frequency range (up to 40 kHz) the complex Young's modulus of skeletal muscle fibre as a function of frequency from the tension transient, following a rapid stepwise length change completed within 40 microseconds. For this purpose both a new mechanical moving part of the displacement generating system and a force transducer with a high natural frequency (70 kHz) had to be developed. In addition to stiffness measurements of a silk fibre to test the displacement generating system and the method of analysis, stiffness of skeletal muscle fibres in relaxed and rigor state have been measured. The complex Young's moduli of relaxed muscle fibres as well as muscle fibres in rigor state are frequency dependent. In both cases the complex Young's modulus increases smoothly with increasing frequency over a range of 250 Hz up to 40 kHz. The phase angles of the responses remained almost constant at a value of 0.3 radians for a fibre in rigor and 0.6 radians for a relaxed fibre. This leads to the conclusion that for muscle fibres in rigor state the recovery in the tension response to a step length change shows a continuous distribution of relaxation times rather than a few discrete ones. Results of our stiffness measurements are compared with results obtained from current viscoelastic models used to describe stiffness of muscle fibre in this frequency range.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

肌肉纤维的刚度测量通常基于在肌肉纤维一端施加长度变化,并记录另一端随后的张力变化。在本研究中,开发了一种方法,用于在高频范围(高达40kHz)内,根据在40微秒内完成的快速逐步长度变化后的张力瞬变,确定骨骼肌纤维的复杨氏模量随频率的变化。为此,必须开发位移产生系统的新型机械运动部件和具有高固有频率(70kHz)的力传感器。除了对丝纤维进行刚度测量以测试位移产生系统和分析方法外,还测量了处于松弛和僵直状态的骨骼肌纤维的刚度。松弛肌肉纤维以及处于僵直状态的肌肉纤维的复杨氏模量都与频率有关。在这两种情况下,复杨氏模量在250Hz至40kHz的范围内都随频率的增加而平滑增加。对于处于僵直状态的纤维,响应的相角几乎保持恒定,为0.3弧度;对于松弛纤维,相角为0.6弧度。这导致得出结论,对于处于僵直状态的肌肉纤维,对阶跃长度变化的张力响应恢复显示出松弛时间的连续分布,而不是几个离散的分布。我们的刚度测量结果与当前用于描述该频率范围内肌肉纤维刚度的粘弹性模型所获得的结果进行了比较。(摘要截断于250字)

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本文引用的文献

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温度对青蛙机械去膜肌纤维收缩激活和等长力产生的影响。
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