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Biomimetic model of skeletal muscle isometric contraction: I. an energetic-viscoelastic model for the skeletal muscle isometric force twitch.

机译:骨骼肌等距收缩的仿生模型:I.骨骼肌等距抽搐的能量-粘弹性模型。

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摘要

This paper describes a revision of the Hill-type muscle model so that it will describe the chemo-mechanical energy conversion process (energetic) and the internal-element stiffness variation (viscoelastic) during a skeletal muscle isometric force twitch contraction. The derivation of this energetic-viscoelastic model is described by a first-order linear ordinary differential equation with constant energetic and viscoelastic coefficients. The model has been implemented as part of a biomimetic model, which describes the excitation-contraction coupling necessary to drive the energetic-viscoelastic model. Finally, the energetic-viscoelastic model is validated by comparing its isometric force-time profile with that of various muscles reported in the literature.
机译:本文介绍了希尔型肌肉模型的修订版,以便它将描述骨骼肌等距力抽搐收缩期间的化学机械能转换过程(能量)和内部元素刚度变化(粘弹性)。该能量-粘弹性模型的推导由具有恒定的能量和粘弹性系数的一阶线性常微分方程描述。该模型已作为仿生模型的一部分实施,该模型描述了驱动高能粘弹性模型所必需的激发-收缩耦合。最后,通过将其等距力-时间曲线与文献中报道的各种肌肉的等距力-时间曲线进行比较,验证了能量-粘弹性模型。

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