Holt N C, Azizi E
Department of Ecology and Evolutionary Biology, University of California, Irvine, CA 92697, USA
Department of Ecology and Evolutionary Biology, University of California, Irvine, CA 92697, USA.
Proc Biol Sci. 2016 Jan 27;283(1823). doi: 10.1098/rspb.2015.2832.
Skeletal muscle exhibits broad functional diversity, despite its inherent length and velocity constraints. The observed variation in morphology and physiology is assumed to have evolved to allow muscle to operate at its optimal length and velocity during locomotion. Here, we used the variation in optimum lengths and velocities that occurs with muscle activation level to experimentally test this assumption. Muscle ergometry and sonomicrometry were used to characterize force-length and power-velocity relationships, and in vivo operating lengths and velocities, at a range of activation levels. Operating lengths and velocities were mapped onto activation level specific force-length and power-velocity relationships to determine whether they tracked changing optima. Operating velocities decreased in line with decreased optimal velocities, suggesting that optimal velocities are always used. However, operating lengths did not change with changing optima. At high activation levels, fibres used an optimal range of lengths. However, at lower activation levels, fibres appeared to operate on the ascending limb of sub-maximally activated force-length relationships. This suggests that optimal lengths are only used when demand is greatest. This study provides the first mapping of operating lengths to activation level-specific optima, and as such, provides insight into our assumptions about the factors that determine muscle performance during locomotion.
尽管骨骼肌存在固有的长度和速度限制,但其仍表现出广泛的功能多样性。形态和生理上观察到的变化被认为是为了使肌肉在运动过程中能在其最佳长度和速度下运作而进化形成的。在此,我们利用随着肌肉激活水平而出现的最佳长度和速度的变化,通过实验来检验这一假设。在一系列激活水平下,使用肌肉测力计和超声测量法来表征力-长度和功率-速度关系,以及体内工作长度和速度。将工作长度和速度映射到特定激活水平的力-长度和功率-速度关系上,以确定它们是否跟踪不断变化的最佳值。工作速度随着最佳速度的降低而降低,这表明总是使用最佳速度。然而,工作长度并未随着最佳值的变化而改变。在高激活水平下,纤维使用最佳长度范围。然而,在较低激活水平下,纤维似乎在次最大激活力-长度关系的上升支上运作。这表明只有在需求最大时才使用最佳长度。本研究首次将工作长度映射到特定激活水平的最佳值,因此,为我们对运动过程中决定肌肉性能的因素的假设提供了见解。