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A Coarse-grained Model Of The Myofibril: Overall Dynamics And The Evolution Of Sarcomere Non-uniformities

机译:肌原纤维的粗粒模型:整体动力学和Sarcomere不均匀性的演变

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摘要

A theoretical framework for predicting the macroscopic behavior of a muscle myofibril based on the collective behavior of sarcomeres is presented. The analysis is accomplished by rigorously transforming the nonlinear dynamics of an assemblage of sarcomeres into a partial differential equation for the probability distribution function of sarcomere lengths in the presence of stochastic temporal fluctuations and biological variability. This enables the study of biologically relevant specimens with reasonable computational effort. The model is validated by a comparison to quantitative experimental results. Further, it reproduces experimental observations that cannot be explained by standard single sarcomere models, and provides new insights into muscle function and muscle damage during cyclic loading. We show that the accumulation of overstretched sarcomeres, which is related to muscle damage, depends on a delicate interplay between the dynamics of a large number of sarcomeres and the load characteristics, such as its magnitude and frequency. Further, we show that biological variability rather than stochastic fluctuations are the main source for sarcomere non-uniformities.
机译:提出了基于肉瘤的集体行为预测肌肉肌原纤维的宏观行为的理论框架。通过在随机的时间波动和生物学变异的存在下,将肉瘤集合的非线性动力学严格地转换为肌节长度的概率分布函数的偏微分方程,可以完成分析。这使得能够以合理的计算努力来研究生物学相关的标本。通过与定量实验结果进行比较来验证该模型。此外,它再现了标准单肌节模型无法解释的实验观察结果,并为循环加载过程中的肌肉功能和肌肉损伤提供了新的见解。我们表明,过度拉伸的肉瘤的积累与肌肉损伤有关,取决于大量肉瘤的动力学与负荷特性(例如大小和频率)之间的微妙相互作用。此外,我们表明,生物变异性而非随机波动是肌节不均匀性的主要来源。

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