论文标题

骨骼肌工作环的流变基础

Rheological basis of skeletal muscle work loops

论文作者

Nguyen, Khoi D., Venkadesan, Madhusudhan

论文摘要

骨骼肌在体内同时受到时间变化的神经刺激和长度变化。工作环是这些体内条件的实验表示,并且表现出使用软物质流变学或肌肉的经典等距和等渗特性来解释的力与长度响应。我们理解中的这些差距通常促使人们寻找新的肌肉现象。但是,我们目前缺乏解释工作循环的机械起源的框架,该机械起源整合了当前对肌肉的多个方面,作为一种流变材料以及刺激反应性执行器。在这里,我们提出了一个新的假设,该假设通过将力与对应于不同恒定刺激的长度循环拼接在一起,从而出现工作循环。使用已发表的肌肉数据集和详细的肌节模型,我们发现该假设可以准确地预测工作循环,并有助于从固定刺激下测得的流变行为来理解它们。重要的是,该框架确定了对肌肉对肌肉的理解无法解释出现的工作循环的条件,并且可能需要新的肌肉现象来解释其体内功能。

Skeletal muscle is subjected to simultaneous time-varying neural stimuli and length changes in vivo. Work loops are experimental representations of these in vivo conditions and exhibit force versus length responses that are not explainable using either soft matter rheology or the classical isometric and isotonic characterizations of muscle. These gaps in our understanding have often prompted the search for new muscle phenomena. However, we presently lack a framework to explain the mechanical origins of work loops that integrates multiple facets of current understanding of muscle, as a rheological material and also a stimulus-responsive actuator. Here we present a new hypothesis that work loops emerge by splicing together force versus length loops corresponding to different constant stimuli. Using published muscle datasets and a detailed sarcomere model, we find that the hypothesis accurately predicts work loops and helps understand them in terms of rheological behaviors measured at fixed-stimuli. Importantly, this framework identifies conditions under which a rheological understanding of muscle fails to explain the emergent work loops, and new muscle phenomena may be necessary to explain its in vivo function.

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