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An Approach for Simulation of the Muscle Force Modeling It by Summation of Motor Unit Contraction Forces

机译:电机收缩力求和模拟肌肉力的方法

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摘要

Muscle force is due to the cumulative effect of repetitively contracting motor units (MUs). To simulate the contribution of each MU to whole muscle force, an approach implemented in a novel computer program is proposed. The individual contraction of an MU (the twitch) is modeled by a 6-parameter analytical function previously proposed; the force of one MU is a sum of its contractions due to an applied stimulation pattern, and the muscle force is the sum of the active MUs. The number of MUs, the number of slow, fast-fatigue-resistant, and fast-fatigable MUs, and their six parameters as well as a file with stimulation patterns for each MU are inputs for the developed software. Different muscles and different firing patterns can be simulated changing the input data. The functionality of the program is illustrated with a model consisting of 30 MUs of rat medial gastrocnemius muscle. The twitches of these MUs were experimentally measured and modeled. The forces of the MUs and of the whole muscle were simulated using different stimulation patterns that included different regular, irregular, synchronous, and asynchronous firing patterns of MUs. The size principle of MUs for recruitment and derecruitment was also demonstrated using different stimulation paradigms.
机译:肌肉力量是由于反复收缩运动单位(MU)的累积作用。为了模拟每个MU对整个肌肉力量的贡献,提出了一种在新型计算机程序中实现的方法。 MU(抽搐)的个体收缩是通过先前提出的6参数分析函数建模的。一个MU的力是由于施加刺激模式而引起的收缩之和,而肌肉力是活动MU的总和。 MU的数量,慢速,耐疲劳和快速失效的MU的数量,以及它们的六个参数,以及每个MU的带有激励模式的文件是开发软件的输入。可以模拟不同的肌肉和不同的射击方式来更改输入数据。该程序的功能由一个模型组成,该模型由30 MU的大鼠内侧腓肠肌组成。对这些MU的抽搐进行了实验测量和建模。使用不同的刺激模式模拟MU和整个肌肉的力量,其中包括MU的规则,不规则,同步和异步激发模式。还使用不同的刺激范式证明了用于招募和减员的MU的大小原则。

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