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The effect of intrinsic muscular nonlinearities on the energetics of locomotion in a computational model of an anguilliform swimmer

机译:内在肌肉非线性对运动能量的影响,在无角形游泳者的计算模型中

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摘要

Animals move through their environments using muscles to produce force. When an animal's nervous system activates a muscle, the muscle produces different amounts of force depending on its length, its shortening velocity, and its time history of force production. These muscle forces interact with forces from passive tissue properties and forces from the external environment. Using an integrative computational model that couples an elastic, actuated model of an anguilliform, lamprey-like swimmer with a surrounding Navier Stokes fluid, we study the effects of this coupling between the muscle force and the body motion. Swimmers with different forms of this coupling can achieve similar motions, but use different amounts of energy. The velocity dependence is the most important property of the ones we considered for reducing energy costs and helping us to stabilize oscillations. These effects are strongly influenced by how rapidly the muscle deactivates; if force decays too slowly, muscles on opposite sides of the body end up fighting each other, increasing energy cost. Work-dependent deactivation, an effect that causes a muscle to deactivate more rapidly if it has recently produced mechanical work, works together with the velocity dependence to reduce the energy cost of swimming. (C) 2015 Elsevier Ltd. All rights reserved.
机译:动物利用肌肉在环境中移动以产生力量。当动物的神经系统激活肌肉时,肌肉会根据其长度,缩短的速度及其产生力的时间历史而产生不同量的力。这些肌肉力与来自被动组织特性的力和来自外部环境的力相互作用。使用一个集成的计算模型,该模型将鳗鱼状七lamp鳗类游泳者的弹性,致动模型与周围的Navier Stokes流体耦合,我们研究了肌肉力与身体运动之间这种耦合的影响。具有这种耦合形式的游泳者可以实现相似的运动,但是消耗的能量不同。速度相关性是我们所考虑的降低能量成本并帮助我们稳定振荡的最重要特性。肌肉失活的速度强烈影响这些作用。如果力量衰减得太慢,则身体相对两侧的肌肉最终会互相搏斗,从而增加了能量消耗。与工作有关的失活是一种影响肌肉的作用,如果它最近产生了机械功,它会使肌肉更迅速地失活,这种作用与速度有关,可以降低游泳的能量消耗。 (C)2015 Elsevier Ltd.保留所有权利。

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