首页> 外文期刊>The Journal of Experimental Biology >Uniform strain in broad muscles: active and passive effects of the twisted tendon of the spotted ratfish Hydrolagus colliei
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Uniform strain in broad muscles: active and passive effects of the twisted tendon of the spotted ratfish Hydrolagus colliei

机译:宽阔肌肉中的均匀应变:斑点鼠鱼Hydralagus colliei的扭曲肌腱的主动和被动作用

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摘要

A muscle's force output depends on the range of lengths over which its fibers operate. Regional variation in fiber shortening during muscle contraction may translate into suboptimal force production if a subset of muscle fibers operates outside the plateau of the length-tension curve. Muscles with broad insertions and substantial shortening are particularly prone to heterogeneous strain patterns since fibers from different regions of the muscle vary in their moment arms, with fibers further from the joint exhibiting greater strains. In the present study, we describe a musculotendon morphology that serves to counteract the variation in moment arm and fiber strains that are inherent in broad muscles. The tendon of the anterior jaw adductor of the spotted ratfish Hydrolagus colliei is twisted such that the distal face of the muscle inserts more proximally than the proximal face. Using quantitative geometric models based on this natural morphology, we show that this inversion of insertion points serves to equalize strains across the muscle such that at any gape angle all fibers in the muscle are operating at similar positions on their length-tension curves. Manipulations of this geometric model show that the natural morphology is 'ideal' compared to other hypothetical morphologies for limiting fiber strain heterogeneity. The uniform strain patterns predicted for this morphology could increase active force production during jaw closing and also decrease passive resistance to jaw opening. This divergence from 'typical' tendon morphology in the jaw adductors of H. colliei may be particularly important given the demands for high force production in durophagy.
机译:肌肉的力输出取决于其纤维运作的长度范围。如果一部分肌肉纤维在长度-张力曲线的平稳区域之外操作,则肌肉收缩期间纤维缩短的区域变化可能会转化为次佳的力量产生。具有宽插入和显着缩短的肌肉特别容易产生异质应变模式,因为来自肌肉不同区域的纤维在其力矩臂中会发生变化,而距关节较远的纤维会表现出较大的应变。在本研究中,我们描述了一种肌腱组织形态,可以抵消宽臂肌肉固有的力矩臂和纤维张力的变化。斑点鼠鱼Hydrolagus colliei的前颌内收肌腱被扭曲,从而使肌肉的远端面比近端面更向近端插入。使用基于这种自然形态的定量几何模型,我们证明了插入点的这种倒转可以使整个肌肉的压力均衡,从而在任何间隙角度下,肌肉中的所有纤维都在其长度-张力曲线上的相似位置处工作。对该几何模型进行的操作表明,与限制纤维应变异质性的其他假设形态相比,自然形态是“理想的”。为这种形态预测的均匀应变模式可以增加颌闭合过程中的主动力产生,还可以降低对颌张开的被动阻力。考虑到在自噬中产生高力的需求,H。colliei的下颌内收肌与“典型”肌腱形态的这种差异可能特别重要。

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