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分层神经振荡器网络的峰电位时间可靠性

Spike-time reliability of layered neural oscillator networks.

作者信息

Lin Kevin K, Shea-Brown Eric, Young Lai-Sang

机构信息

Department of Mathematics, University of Arizona, Tucson, AZ, USA.

出版信息

J Comput Neurosci. 2009 Aug;27(1):135-60. doi: 10.1007/s10827-008-0133-3. Epub 2009 Jan 21.

Abstract

We study the reliability of layered networks of coupled "type I" neural oscillators in response to fluctuating input signals. Reliability means that a signal elicits essentially identical responses upon repeated presentations, regardless of the network's initial condition. We study reliability on two distinct scales: neuronal reliability, which concerns the repeatability of spike times of individual neurons embedded within a network, and pooled-response reliability, which concerns the repeatability of total synaptic outputs from a subpopulation of the neurons in a network. We find that neuronal reliability depends strongly both on the overall architecture of a network, such as whether it is arranged into one or two layers, and on the strengths of the synaptic connections. Specifically, for the type of single-neuron dynamics and coupling considered, single-layer networks are found to be very reliable, while two-layer networks lose their reliability with the introduction of even a small amount of feedback. As expected, pooled responses for large enough populations become more reliable, even when individual neurons are not. We also study the effects of noise on reliability, and find that noise that affects all neurons similarly has much greater impact on reliability than noise that affects each neuron differently. Qualitative explanations are proposed for the phenomena observed.

摘要

我们研究了耦合“ I型”神经振荡器的分层网络对波动输入信号的响应可靠性。可靠性是指无论网络的初始状态如何,信号在重复呈现时都会引发基本相同的响应。我们在两个不同的尺度上研究可靠性:神经元可靠性,它涉及嵌入网络中的单个神经元的尖峰时间的可重复性;以及汇总响应可靠性,它涉及网络中神经元亚群的总突触输出的可重复性。我们发现,神经元可靠性强烈依赖于网络的整体架构,例如它是排列成一层还是两层,以及突触连接的强度。具体而言,对于所考虑的单神经元动力学和耦合类型,发现单层网络非常可靠,而两层网络即使引入少量反馈也会失去其可靠性。正如预期的那样,即使单个神经元不可靠,足够大群体的汇总响应也会变得更可靠。我们还研究了噪声对可靠性的影响,发现类似地影响所有神经元的噪声对可靠性的影响远大于不同地影响每个神经元的噪声。针对观察到的现象提出了定性解释。

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