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人体不同预激活水平下α运动神经元池肌电图反射的模拟。

Simulations of the alpha motoneuron pool electromyogram reflex at different preactivation levels in man.

作者信息

Slot P J, Sinkjaer T

机构信息

Department of Medical Informatics and Image Analysis, Aalborg University, Denmark.

出版信息

Biol Cybern. 1994;70(4):351-8. doi: 10.1007/BF00200332.

Abstract

The alpha motoneuron pool and the surface electromyogram (EMG) of the human soleus muscle are modelled, respectively, by an alpha motoneuron pool model generating the firing patterns in the motor units of the muscle and by a muscle model using these discharge patterns to simulate the surface EMG. In the alpha motoneuron pool model, we use a population of motoneurons in which cellular properties like cell size and membrane conductance are distributed according to experimentally observed data. By calculating the contribution from each motor unit, the muscle model predicts the EMG. Wave forms of the motor unit action potentials in the surface EMG are obtained from experimental data. Using the model, we are able to give a quantitative prediction of the motoneuron pool activity and the reflex EMG output at different preactivation levels. The simulated data are consistent with experimentally obtained results in healthy humans. During static isometric muscle preactivations, the simulations show that the reflex strength is highly dependent on the intrinsic threshold properties of the alpha motoneuron pool.

摘要

α运动神经元池和人类比目鱼肌的表面肌电图(EMG)分别通过一个生成肌肉运动单位放电模式的α运动神经元池模型和一个使用这些放电模式来模拟表面肌电图的肌肉模型进行建模。在α运动神经元池模型中,我们使用一群运动神经元,其中细胞大小和膜电导等细胞特性根据实验观察数据进行分布。通过计算每个运动单位的贡献,肌肉模型预测肌电图。表面肌电图中运动单位动作电位的波形从实验数据中获得。使用该模型,我们能够对不同预激活水平下的运动神经元池活动和反射性肌电图输出进行定量预测。模拟数据与健康人类的实验结果一致。在静态等长肌肉预激活期间,模拟结果表明反射强度高度依赖于α运动神经元池的内在阈值特性。

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