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Spike Transmission between Electrically Coupled Sensory Neurons is Improved by Filter Properties

机译:滤波特性改善了电耦合感觉神经元之间的尖峰传输

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In the nervous system, neurons are organized in networks by way of connections constituted by chemical and electrical synapses. We use biological and mathematical models to study electrical synaptic communication and its determinants. In particular, we show how non-synaptic components of a neural circuit generate a band-pass filter behavior and shape action potential transmission between neurons of the mesencephalic trigeminal (MesV) nucleus of rodents. The dynamic modulation of these properties could be used as an inspiration for artificial neural networks with electrical synapses.
机译:在神经系统中,神经元通过化学和电突触构成的连接而组织成网络。我们使用生物学和数学模型来研究电突触通讯及其决定因素。特别是,我们显示了神经回路的非突触组件如何在啮齿动物的中脑三叉神经(MesV)核神经元之间产生带通滤波器行为和形状动作电位传递。这些属性的动态调制可以用作带有电突触的人工神经网络的灵感来源。

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