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Myelination and Isochronicity in Neural Networks

机译:神经网络的髓鞘形成和等时性

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摘要

Our brain contains a multiplicity of neuronal networks. In many of these, information sent from presynaptic neurons travels through a variety of pathways of different distances, yet arrives at the postsynaptic cells at the same time. Such isochronicity is achieved either by changes in the conduction velocity of axons or by lengthening the axonal path to compensate for fast conduction. To regulate the conduction velocity, a change in the extent of myelination has recently been proposed in thalamocortical and other pathways. This is in addition to a change in the axonal diameter, a previously identified, more accepted mechanism. Thus, myelination is not a simple means of insulation or acceleration of impulse conduction, but it is rather an exquisite way of actively regulating the timing of communication among various neuronal connections with different length.
机译:我们的大脑包含多种神经网络。在许多这样的情况下,从突触前神经元发送的信息会通过各种距离不同的途径传播,但同时到达突触后细胞。这种等时性可以通过改变轴突的传导速度或通过延长轴突路径来补偿快速传导来实现。为了调节传导速度,最近在丘脑皮质和其他途径中提出了髓鞘化程度的改变。除了轴突直径的变化外,轴突直径是一种先前确定的,更被接受的机制。因此,髓鞘化不是隔离或促进冲动传导的简单手段,而是主动调节具有不同长度的各种神经元连接之间的通信时机的一种精美方法。

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