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骨骼肌长度依赖性的单收缩收缩特性

Length-dependent twitch contractile characteristics of skeletal muscle.

作者信息

Rassier Dilson E, MacIntosh Brian R

机构信息

Human Performance Laboratory, Faculty of Kinesiology, 2500 University Drive, The University of Calgary, Calgary, AB T2N 1N4, Canada.

出版信息

Can J Physiol Pharmacol. 2002 Oct;80(10):993-1000. doi: 10.1139/y02-127.

Abstract

The length dependence of force development of mammalian skeletal muscles was evaluated during twitch, double-pulse, and tetanic contractions, and the relation between muscle length and the time-dependent characteristics of twitch and double-pulse contractions were determined. In situ isometric contractions of the rat gastrocnemius muscle were analyzed at seven different lengths, based on a reference length at which the maximal response to double-pulse contractions occurred (Lopt-2P). Twitch and double-pulse contractions were analyzed for developed tension (DT), contraction time (tC), average rate of force development (DT-tC(-1)), half-relaxation time (t50%R), peak rate of relaxation (DT x dtmin(-1)), and 90%-relaxation time (t90%R). Considering the length at which maximal tetanic DT occurred to be the optimal length (Lo-TET), the peak DT for twitch contractions and double-pulse contractions was observed at Lo-TET + 0.75 mm (p < 0.05) and Lo-TET + 0.1 mm (p > 0.05), respectively. When measured at the length for which maximal twitch and double-pulse contractions were obtained, tetanic DT was 95.2 +/- 3 and 99.0 +/- 2% of the maximal value, respectively. These observations suggest that double-pulse contractions are more suitable for setting length for experimental studies than twitch contractions. Twitch and double-pulse contraction tC were 15.53 +/- 1.14 and 25.0 +/- 0.6 ms, respectively, at Lopt-2P, and increased above Lopt-2P and decreased below Lopt-2P. Twitch t50%R was 12.18 +/- 0.90 ms at Lopt-2P, and increased above Lopt-2P and below Lopt-2P. Corresponding changes for double-pulse contractions were greater. Stretching the muscle leads to slower twitch contractions and double-pulse contractions, but the mechanisms of this change in time course remain unclear.

摘要

在单收缩、双脉冲收缩和强直收缩期间,评估了哺乳动物骨骼肌力量发展的长度依赖性,并确定了肌肉长度与单收缩和双脉冲收缩的时间依赖性特征之间的关系。基于对双脉冲收缩产生最大反应时的参考长度(Lopt-2P),在七个不同长度下分析了大鼠腓肠肌的原位等长收缩。分析了单收缩和双脉冲收缩的张力发展(DT)、收缩时间(tC)、平均力量发展速率(DT-tC(-1))、半松弛时间(t50%R)、峰值松弛速率(DT x dtmin(-1))和90%松弛时间(t90%R)。将强直收缩最大DT时的长度视为最佳长度(Lo-TET),单收缩和双脉冲收缩的峰值DT分别在Lo-TET + 0.75 mm(p < 0.05)和Lo-TET + 0.1 mm(p > 0.05)处观察到。当在获得最大单收缩和双脉冲收缩的长度处进行测量时,强直收缩DT分别为最大值的95.2 +/- 3%和99.0 +/- 2%。这些观察结果表明,与单收缩相比,双脉冲收缩更适合为实验研究设定长度。在Lopt-2P处,单收缩和双脉冲收缩的tC分别为15.53 +/- 1.14和25.0 +/- 0.6 ms,在Lopt-2P以上增加,在Lopt-2P以下减少。单收缩的t50%R在Lopt-2P处为12.18 +/- 0.90 ms,在Lopt-2P以上和以下均增加。双脉冲收缩的相应变化更大。拉伸肌肉会导致单收缩和双脉冲收缩变慢,但这种时间进程变化的机制仍不清楚。

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