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超越功率极限:骨骼肌的动能容量。

Beyond power limits: the kinetic energy capacity of skeletal muscle.

机构信息

Department of Bioengineering, Imperial College London, London SW7 2AZ, UK.

Department of Evolution, Ecology and Organismal Biology, University of California Riverside, Riverside, CA 92521, USA.

出版信息

J Exp Biol. 2024 Nov 1;227(21). doi: 10.1242/jeb.247150. Epub 2024 Oct 18.

Abstract

Muscle is the universal agent of animal movement, and limits to muscle performance are therefore an integral aspect of animal behaviour, ecology and evolution. A mechanical perspective on movement makes it amenable to analysis from first principles, and so brings the seeming certitude of simple physical laws to the challenging comparative study of complex biological systems. Early contributions on movement biomechanics considered muscle energy output to be limited by muscle work capacity, Wmax; triggered by seminal work in the late 1960s, it is now held broadly that a complete analysis of muscle energy output must also consider muscle power capacity, for no unit of work can be delivered in arbitrarily brief time. Here, we adopt a critical stance towards this paradigmatic notion of a power limit, and argue that the alternative constraint to muscle energy output is imposed instead by a characteristic kinetic energy capacity, Kmax, dictated by the maximum speed with which the actuating muscle can shorten. The two critical energies can now be directly compared, and define the physiological similarity index, Γ=Kmax/Wmax. It is the explanatory power of this comparison that lends weight to a shift in perspective from muscle power to kinetic energy capacity, as is argued through a series of illustrative examples. Γ emerges as an important dimensionless number in musculoskeletal dynamics, and sparks novel hypotheses on functional adaptations in musculoskeletal 'design' that depart from the parsimonious evolutionary null hypothesis of geometric similarity.

摘要

肌肉是动物运动的通用媒介,因此肌肉性能的限制是动物行为、生态学和进化的一个组成部分。从力学角度看待运动,使其能够从第一原理进行分析,从而为复杂生物系统的富有挑战性的比较研究带来简单物理定律的确定性。早期关于运动生物力学的贡献认为肌肉的能量输出受肌肉工作能力 Wmax 的限制;受 20 世纪 60 年代后期开创性工作的启发,现在人们普遍认为,对肌肉能量输出的完整分析还必须考虑肌肉功率能力,因为任何单位的工作都不能在任意短暂的时间内完成。在这里,我们对这种具有代表性的功率限制概念持批判态度,并认为肌肉能量输出的另一个限制是由肌肉的特征动能能力 Kmax 施加的,这是由驱动肌肉可以缩短的最大速度决定的。现在可以直接比较这两个关键能量,并定义生理相似性指数 Γ=Kmax/Wmax。通过一系列说明性示例,可以证明这种从肌肉功率到动能能力的视角转变的解释力,这是有说服力的。Γ 作为肌肉骨骼动力学中的一个重要无量纲数出现,并激发了关于肌肉骨骼“设计”中的功能适应的新假设,这些假设偏离了几何相似性的简约进化零假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a4/11529885/ce6e3818d446/jexbio-227-247150-g1.jpg

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