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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >A simple model of force generation by skeletal muscle during dynamic isometric contractions
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A simple model of force generation by skeletal muscle during dynamic isometric contractions

机译:动态等距收缩过程中骨骼肌产生力的简单模型

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The force that an isometric skeletal muscle will produce in response to time-varying stimulation ("dynamic isometric" force) is important both for understanding muscle function and for designing neuroprostheses. The paper reports a model for predicting the force produced by an isometric skeletal muscle at rest length in response to a wide range of stimulation patterns. The model consists of two linear, first-order systems separated by a static nonlinearity. The rate constant of the second first-order system varies with force level. The model was validated using three cat soleus and three cat plantaris muscles. The following whole-nerve stimulation trains were used: single pulses (twitches), 2-4 pulses, constant rates, triangularly modulated interpulse intervals, and randomly modulated interpulse intervals. The model reproduced most responses accurately. The model shows that a force-dependent rate constant is essential for model validity, and could be used in the control of neuroprostheses.
机译:等距骨骼肌将响应随时间变化的刺激而产生的力(“动态等距”力)对于理解肌肉功能和设计神经假体都很重要。该论文报道了一种模型,该模型可预测等距骨骼肌在静止时响应各种刺激模式而产生的力。该模型由两个线性一阶系统组成,这些系统由静态非线性分开。第二个一阶系统的速率常数随作用力水平而变化。使用三只猫比目鱼肌和三只猫plant肌验证了该模型。使用了以下全神经刺激序列:单脉冲(抽搐),2-4个脉冲,恒定速率,三角调制脉冲间隔和随机调制脉冲间隔。该模型准确地再现了大多数响应。该模型表明,依赖于力的速率常数对于模型有效性至关重要,并且可以用于控制神经假体。

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