Tomalka André, Rode Christian, Schumacher Jens, Siebert Tobias
Institute of Sport and Movement Science, University of Stuttgart, Allmandring 28, 70569 Stuttgart, Baden-Württemberg, Germany
Department of Motion Science, Friedrich-Schiller-University Jena, 07749 Jena, Thuringia, Germany.
Proc Biol Sci. 2017 May 17;284(1854). doi: 10.1098/rspb.2016.2497.
In contrast to experimentally observed progressive forces in eccentric contractions, cross-bridge and sliding-filament theories of muscle contraction predict that varying myofilament overlap will lead to increases and decreases in active force during eccentric contractions. Non-cross-bridge contributions potentially explain the progressive total forces. However, it is not clear whether underlying abrupt changes in the slope of the nonlinear force-length relationship are visible in long isokinetic stretches, and in which proportion cross-bridges and non-cross-bridges contribute to muscle force. Here, we show that maximally activated single skinned rat muscle fibres behave (almost across the entire working range) like linear springs. The force slope is about three times the maximum isometric force per optimal length. Cross-bridge and non-cross-bridge contributions to the muscle force were investigated using an actomyosin inhibitor. The experiments revealed a nonlinear progressive contribution of non-cross-bridge forces and suggest a nonlinear cross-bridge contribution similar to the active force-length relationship (though with increased optimal length and maximum isometric force). The linear muscle behaviour might significantly reduce the control effort. Moreover, the observed slight increase in slope with initial length is in accordance with current models attributing the non-cross-bridge force to titin.
与在离心收缩中实验观察到的渐进性力量相反,肌肉收缩的横桥和滑行细丝理论预测,在离心收缩过程中,肌丝重叠的变化将导致主动力的增加和减少。非横桥作用可能解释了渐进性的总力量。然而,尚不清楚在长时间等速拉伸中,非线性力-长度关系斜率的潜在突然变化是否可见,以及横桥和非横桥对肌肉力量的贡献比例是多少。在这里,我们表明,最大激活的单根去表皮大鼠肌肉纤维(几乎在整个工作范围内)的行为类似于线性弹簧。力斜率约为每最佳长度最大等长力的三倍。使用肌动球蛋白抑制剂研究了横桥和非横桥对肌肉力量的贡献。实验揭示了非横桥力的非线性渐进贡献,并表明横桥贡献呈非线性,类似于主动力-长度关系(尽管最佳长度和最大等长力增加)。肌肉的线性行为可能会显著减少控制工作量。此外,观察到的斜率随初始长度的轻微增加与当前将非横桥力归因于肌联蛋白的模型一致。