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A continuum-mechanical skeletal muscle model including actin-titin interaction predicts stable contractions on the descending limb of the force-length relation

机译:包括肌动蛋白-肌动蛋白相互作用的连续力学骨骼肌模型可预测力长关系下肢的稳定收缩

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Contractions on the descending limb of the total (active + passive) muscle force—length relationship (i. e. when muscle stiffness is negative) are expected to lead to vast half-sarcomere—length inhomogeneities. This is however not observed in experiments—vast half-sarcomere—length inhomogeneities can be absent in myofibrils contracting in this range, and initial inhomogeneities can even decrease. Here we show that the absence of half-sarcomere—length inhomogeneities can be predicted when considering interactions of the semi-active protein titin with the actin filaments. Including a model of actin—titin interactions within a multi-scale continuum-mechanical model, we demonstrate that stability, accurate forces and nearly homogeneous half-sarcomere lengths can be obtained on the descending limb of the static total force—length relation. This could be a key to durable functioning of the muscle because large local stretches, that might harm, for example, the transverse-tubule system, are avoided.
机译:总的(主动的+被动的)肌肉力-长度关系(即,当肌肉刚度为负时)的下降肢体上的收缩预期会导致巨大的半肌节-长度不均匀性。但是,在此范围内收缩的肌原纤维中,可能没有巨大的半肌节长长度不均匀性,甚至还没有减少。在这里,我们表明,考虑到半活性蛋白titin与肌动蛋白丝之间的相互作用,可以预测不存在半肌节长度不均一性。包括一个多尺度连续力学模型中的肌动蛋白-视黄质相互作用模型,我们证明可以在静态总力-长度关系的下降肢上获得稳定性,精确的力和几乎均质的半肌节长度。这是保持肌肉持久功能的关键,因为避免了可能会伤害横管系统的较大局部拉伸。

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