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Electrotonic coupling in a network of compartmental external urethral sphincter motoneurons of Onuf's nucleus

机译:Onuf核的隔室外部尿道括约肌运动神经元网络中的电声耦合

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摘要

A conmpartmental model of motoneurons of Onuf's nucleus, the external urethral and anal sphincter motor nucleus, was constructed from morphological and electrophysiological data previously reported in the literature. The model neurons have active somata and initial axon segments. The dendritic trees are represented by one equivalent dendritic cylinder. These model neurons were used to perform network simulations. The cells in the network were mutually connected by dendrodndritic gap junctions, which were modeled as ohmic resistances between two neuronal compartments. Circularly propagating waves and extinction of meeting waves are to be expected. Increasing random input injection will cause fastening of the network activation, which could be related to Onuf's function. This could mean that a small continuous input to this nucleus from a higher center is only needed to cause a fast massive activation of the network, resulting in fast contraction of the sphincter.
机译:根据文献中先前报道的形态学和电生理学数据,建立了Onuf核运动神经元,尿道外部和肛门括约肌运动核的隔室模型。模型神经元具有活跃的躯体和初始轴突节段。树状树由一个等效的树状圆柱体表示。这些模型神经元用于执行网络仿真。网络中的细胞通过树突间隙连接相互连接,其被建模为两个神经元区室之间的欧姆电阻。预计循环传播的波浪和相遇的波浪将消失。随机输入注入的增加将导致网络激活的固定,这可能与Onuf的功能有关。这可能意味着只需要从较高的中心向该核进行少量连续输入,即可引起网络的快速大量激活,从而导致括约肌的快速收缩。

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