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Simulation of Mechanical Force in Skeletal Muscle According to the Intracellular Ca2+ Concentration Level

机译:根据细胞内Ca 2 +浓度水平的骨骼肌机械力模拟

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Active behavior in skeletal muscle soft tissue is affected by electrical, chemical and mechanical parameters. More realistic model of skeletal muscle demands detailed formulation which is able to involve other parameters in addition to mechanical ones. In this paper a new formulation for considering Ca2+ level (as the most important chemical factor) along with mechanical parameters in force producing process of skeletal muscle is introduced and validated comparing simulated results with some experimental data. Prepared skeletal muscle behavior is able to predict the maximum generated force in muscle according to the concentration of intracellular Ca2+ level and muscle contraction velocity against different level of external force. Moreover with changing the level of Ca2+, model can delivered good estimation of a complete contraction cycle.
机译:骨骼肌软组织中的活性行为受电气,化学和机械参数的影响。更逼真的骨骼肌模型要求提供除了机械中的其他参数的详细制剂。本文在考虑CA的新配方中 2 +级别(作为最重要的化学因素)以及在骨骼肌的力产生过程中的机械参数被引入并验证与一些实验数据的模拟结果进行比较。制备的骨骼肌行为能够根据细胞内Ca的浓度预测肌肉中的最大生成力 2 +水平和肌肉收缩速度抵抗不同水平的外力。而且改变了CA的水平 2 +,模型可以提供良好的估计完整收缩周期。

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