Smith Ian C, Vandenboom Rene, Tupling A Russell
Human Performance Lab, University of Calgary, 2500 University Drive NW, Calgary, Alberta, Canada, T2N 1N4
Department of Kinesiology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada, N2L 3G1.
J Exp Biol. 2017 Aug 15;220(Pt 16):2870-2873. doi: 10.1242/jeb.158998. Epub 2017 Jun 2.
Repeated stimulation of unfatigued rodent fast-twitch skeletal muscle accelerates the kinetics of tension relaxation through an unknown mechanism. This effect varies with muscle type and stimulation parameters, and has been observed at physiological temperatures for submaximal but not maximal contractions. The purpose of this study was to compare relaxation kinetics of C57BL/6 mouse lumbrical muscles from maximal isometric force (500 Hz for 20 ms) when evoked before (pre) and after (post) an intervening tetanic contraction at 37°C. During post contractions, we noted significant increases in the rate of tension decline during both the slow linear phase and the fast exponential phase of relaxation, as well as a reduced duration of the slow phase of relaxation compared with pre contractions (all <0.05). This is the first demonstration of enhanced slow and fast relaxation phases from maximal isometric tension induced by prior stimulation in intact muscle at a physiological temperature.
反复刺激未疲劳的啮齿动物快肌骨骼肌,可通过未知机制加速张力松弛的动力学过程。这种效应因肌肉类型和刺激参数而异,并且在生理温度下,对于次最大收缩而非最大收缩已观察到该效应。本研究的目的是比较C57BL/6小鼠蚓状肌在37°C下,在介入强直收缩之前(预)和之后(后)诱发最大等长力(500Hz,持续20ms)时的松弛动力学。在收缩后,我们注意到与收缩前相比,在松弛的慢线性阶段和快指数阶段,张力下降速率均显著增加,并且松弛慢相的持续时间缩短(均P<0.05)。这是首次证明在生理温度下,完整肌肉中先前刺激诱导的最大等长张力可增强慢相和快相松弛阶段。