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犬原位腓肠肌重复等长收缩和等张收缩时的力-速度变化。

Force-velocity shifts with repetitive isometric and isotonic contractions of canine gastrocnemius in situ.

作者信息

Ameredes B T, Brechue W F, Andrew G M, Stainsby W N

机构信息

Department of Physiology, University of Florida, Gainesville 32610.

出版信息

J Appl Physiol (1985). 1992 Nov;73(5):2105-11. doi: 10.1152/jappl.1992.73.5.2105.

Abstract

The force-velocity (F-V) relationships of canine gastrocnemius-plantaris muscles at optimal muscle length in situ were studied before and after 10 min of repetitive isometric or isotonic tetanic contractions induced by electrical stimulation of the sciatic nerve (200-ms trains, 50 impulses/s, 1 contraction/s). F-V relationships and maximal velocity of shortening (Vmax) were determined by curve fitting with the Hill equation. Mean Vmax before fatigue was 3.8 +/- 0.2 (SE) average fiber lengths/s; mean maximal isometric tension (Po) was 508 +/- 15 g/g. With a significant decrease of force development during isometric contractions (-27 +/- 4%, P < 0.01, n = 5), Vmax was unchanged. However, with repetitive isotonic contractions at a low load (P/Po = 0.25, n = 5), a significant decrease in Vmax was observed (-21 +/- 2%, P < 0.01), whereas Po was unchanged. Isotonic contractions at an intermediate load (P/Po = 0.5, n = 4) resulted in significant decreases in both Vmax (-26 +/- 6%, P < 0.05) and Po (-12 +/- 2%, P < 0.01). These results show that repeated contractions of canine skeletal muscle produce specific changes in the F-V relationship that are dependent on the type of contractions being performed and indicate that decreases in other contractile properties, such as velocity development and shortening, can occur independently of changes in isometric tension.

摘要

在坐骨神经电刺激(200毫秒串,50次脉冲/秒,1次收缩/秒)诱导的10分钟重复性等长或等张强直收缩前后,研究了犬原位腓肠肌-比目鱼肌在最佳肌肉长度下的力-速度(F-V)关系。通过用希尔方程进行曲线拟合来确定F-V关系和最大缩短速度(Vmax)。疲劳前的平均Vmax为3.8±0.2(标准误)平均纤维长度/秒;平均最大等长张力(Po)为508±15克/克。在等长收缩期间力的发展显著下降(-27±4%,P<0.01,n = 5)时,Vmax不变。然而,在低负荷(P/Po = 0.25,n = 5)下进行重复性等张收缩时,观察到Vmax显著下降(-21±2%,P<0.01),而Po不变。中等负荷(P/Po = 0.5,n = 4)下的等张收缩导致Vmax(-26±6%,P<0.05)和Po(-12±2%,P<0.01)均显著下降。这些结果表明,犬骨骼肌的重复收缩会在F-V关系中产生特定变化,这些变化取决于所进行的收缩类型,并表明其他收缩特性的下降,如速度发展和缩短,可能独立于等长张力的变化而发生。

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