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Neural network model for muscle force control based on the size principle and inhibition by Renshaw cells

机译:基于尺寸原理和renshaw细胞抑制的肌肉力控制神经网络模型

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A neural network model consisting single motor cortex output cell, actual number of a motoneuron, Renshaw cells and muscle units was constructed. The relation between discharge frequency of /spl alpha/ motoneuron and that of cortex output cells of the model was investigated. Two types of neural network model were constructed. One consists of 100 or more motor units (model A). The other consists of the same number of motor units and Renshaw cells (model B). For the model A, the discharge frequency of /spl alpha/ motoneuron increased almost linearly with increasing that of motor cortex output cells. All of /spl alpha/ motoneuron showed this properties. For the model B, the discharge frequency of /spl alpha/ motoneuron did not increase so much as that for model A. The shape of the discharge frequency curve, /spl alpha/ motoneuron versus cortex output cell, of the model B was similar to that of /spl alpha/ motoneuron firing rate versus force curve observed in monkey or human skeletal muscle. However, while small-sized /spl alpha/ motoneuron fired, middleand large sized /spl alpha/ motoneuron did not fire. It seems that Renshaw cells in model B had too strong inhibition for /spl alpha/ motoneuron. These results suggest that inhibition of Renshaw cells play an important role in recruitment of motor units.
机译:构建了一个组成单电动机皮质输出电池,运动呋喃,renshaw细胞和肌肉单元的实际数量的神经网络模型。研究了/ SPLα/ MOTONEURON的放电频率与模型的皮质输出电池之间的关系。构建了两种类型的神经网络模型。一个由100个或更多电机单元(型号A)组成。另一个由相同数量的电动机单元和renshaw细胞组成(型号b)。对于模型A,/ SPLα/ Motoneuron的放电频率几乎线性地增加了几乎线性,随着电动机皮层输出电池的增加而增加。所有/SPLα/ Motoneuron都显示出这种特性。对于模型B,/SPRα/ Motoneuron的放电频率没有增加,因为模型A的形状类似于B模型B的形状类似于/SPRα/ Motoneuron射击率与猴子或人骨骼肌的力曲线。但是,虽然小型/SPLα/ Motoneuron发射,Middleand大型/SPLα/ Motoneuron没有射击。似乎B模型中的renshaw细胞对/ splα/ motoneuron具有过于强烈的抑制作用。这些结果表明,抑制育龄细胞在运动单元的招募中发挥着重要作用。

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