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静止青蛙骨骼肌的弹性和粘性特性。

Elastic and viscous properties of resting frog skeletal muscle.

作者信息

Moss R L, Halpern W

出版信息

Biophys J. 1977 Mar;17(3):213-28. doi: 10.1016/S0006-3495(77)85651-8.

Abstract

The mechanical properties of the resting, whole semitendinosus muscle of the frog have been characterized as functions of both muscle length and temperature. Measurements were made of pseudorandom white noise (PRWN) displacements (less than 10 A/half-sarcomere) applied to the muscle and the force responses to these movements. Signal correlation techniques were then used to obtain the dynamic modulus function for the muscle in the frequency range 2.44-320 Hz. This function was represented by a series combination of a Voigt element and a time delay element for tension propagation along the muscle. A dynamic elastic modulus (E), coefficient of damping (B), and tension transmission velocity (V) were measured for resting muscle on the basis of this model. For each of these parameters, a marked variation with sarcomere length (s) was found. The mean values for E and B at LO (s=2.25 mum) were 1.84+/-0.24 X 10(5) N/m2 and 2.33+/-0.25 X 10(2) Ns/m2, respectively. Further, B demonstrated a negative temperature dependence, Q10=0.78 (P less than 0.05), in the range s=2.6-3.0 mum, while E was not significantly temperature dependent. The length-dependent variations of E and B are interpreted as deriving from both passive muscle elements and attached crossbridges. Velocity was calculated at a single displacing frequency for every experiment; the mean value at LO and all temperatures was v=11.7+/-0.6 m/s. Velocity was also calculated as a function of frequency within several experiments: the results indicate considerable variation of v with frequency.

摘要

青蛙静息状态下的完整半腱肌的力学特性已被表征为肌肉长度和温度的函数。对施加于肌肉的伪随机白噪声(PRWN)位移(小于10 Å/半肌节)以及这些运动的力响应进行了测量。然后使用信号相关技术来获得肌肉在2.44 - 320 Hz频率范围内的动态模量函数。该函数由一个沃伊特元件和一个用于沿肌肉张力传播的时间延迟元件的串联组合表示。基于此模型,测量了静息肌肉的动态弹性模量(E)、阻尼系数(B)和张力传播速度(V)。对于这些参数中的每一个,都发现其随肌节长度(s)有显著变化。在LO(s = 2.25 µm)时,E和B的平均值分别为1.84±0.24×10⁵ N/m²和2.33±0.25×10² Ns/m²。此外,在s = 2.6 - 3.0 µm范围内,B表现出负温度依赖性,Q₁₀ = 0.78(P < 0.05),而E没有显著的温度依赖性。E和B随长度的变化被解释为源于被动肌肉元件和附着的横桥。在每个实验中,在单个位移频率下计算速度;在LO以及所有温度下的平均值为v = 11.7±0.6 m/s。在几个实验中,还将速度计算为频率的函数:结果表明v随频率有相当大的变化。

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本文引用的文献

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The effect of length on the resting metabolism of muscle.长度对肌肉静息代谢的影响。
J Physiol. 1932 Apr 26;74(4):441-54. doi: 10.1113/jphysiol.1932.sp002860.
3
The structure of the sarcolemma of the frog skeletal muscle fiber.青蛙骨骼肌纤维肌膜的结构。
J Biophys Biochem Cytol. 1961 Aug;10(4)Suppl(4):177-85. doi: 10.1083/jcb.10.4.177.
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Elasticity of soft tissues in simple elongation.简单拉伸中软组织的弹性
Am J Physiol. 1967 Dec;213(6):1532-44. doi: 10.1152/ajplegacy.1967.213.6.1532.

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