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The Formation Mechanism of Defects, Spiral Wave in the Network of Neurons

机译:神经元网络中缺陷,螺旋波的形成机理

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摘要

A regular network of neurons is constructed by using the Morris-Lecar (ML) neuron with the ion channels being considered, and the potential mechnism of the formation of a spiral wave is investigated in detail. Several spiral waves are initiated by blocking the target wave with artificial defects and/or partial blocking (poisoning) in ion channels. Furthermore, possible conditions for spiral wave formation and the effect of partial channel blocking are discussed completely. Our results are summarized as follows. 1) The emergence of a target wave depends on the transmembrane currents with diversity, which mapped from the external forcing current and this kind of diversity is associated with spatial heterogeneity in the media. 2) Distinct spiral wave could be induced to occupy the network when the target wave is broken by partially blocking the ion channels of a fraction of neurons (local poisoned area), and these generated spiral waves are similar with the spiral waves induced by artificial defects. It is confirmed that partial channel blocking of some neurons in the network could play a similar role in breaking a target wave as do artificial defects; 3) Channel noise and additive Gaussian white noise are also considered, and it is confirmed that spiral waves are also induced in the network in the presence of noise. According to the results mentioned above, we conclude that appropriate poisoning in ion channels of neurons in the network acts as ‘defects’ on the evolution of the spatiotemporal pattern, and accounts for the emergence of a spiral wave in the network of neurons. These results could be helpful to understand the potential cause of the formation and development of spiral waves in the cortex of a neuronal system.
机译:通过使用考虑离子通道的Morris-Lecar(ML)神经元来构建规则的神经元网络,并详细研究了螺旋波形成的潜在机理。几个螺旋波是通过在离子通道中用人工缺陷阻塞目标波和/或部分阻塞(中毒)而引发的。此外,完整讨论了螺旋波形成的可能条件和部分通道阻塞的影响。我们的结果总结如下。 1)目标波的出现取决于具有多样性的跨膜电流,该跨膜电流是从外部强迫电流映射而来的,这种多样性与介质中的空间异质性有关。 2)通过部分阻断一部分神经元的离子通道(局部中毒区域)而破坏目标波时,可能会引起明显的螺旋波占据网络,这些螺旋波与人工缺陷引起的螺旋波相似。可以确定的是,网络中某些神经元的部分通道阻塞可以像人工缺陷一样在破坏目标波中发挥类似的作用。 3)还考虑了信道噪声和加性高斯白噪声,并且可以确定,在存在噪声的情况下,网络中也会感应出螺旋波。根据上面提到的结果,我们得出结论,网络中神经元离子通道中的适当中毒是时空模式演变的“缺陷”,并解释了神经元网络中螺旋波的出现。这些结果可能有助于了解神经系统皮质中螺旋波形成和发展的潜在原因。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Xinyi Wu; Jun Ma;

  • 作者单位
  • 年(卷),期 2010(8),1
  • 年度 2010
  • 页码 e55403
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
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