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半中枢振荡器的相位响应特性。

Phase response properties of half-center oscillators.

作者信息

Zhang Calvin, Lewis Timothy J

机构信息

Department of Mathematics, University of California, Davis, Davis, CA 95616, USA.

出版信息

J Comput Neurosci. 2013 Aug;35(1):55-74. doi: 10.1007/s10827-013-0440-1. Epub 2013 Feb 28.

Abstract

We examine the phase response properties of half-center oscillators (HCOs) that are modeled by a pair of Morris-Lecar-type neurons connected by strong fast inhibitory synapses. We find that the two basic mechanisms for half-center oscillations, "release" and "escape", give rise to strikingly different phase response curves (PRCs). Release-type HCOs are most sensitive to perturbations delivered to cells at times when they are about to transition from the active to the suppressed state, and PRCs are dominated by a large negative peak (phase delays) at corresponding phases. On the other hand, escape-type HCOs are most sensitive to perturbations delivered to cells at times when they are about to transition from the suppressed to the active state, and PRCs are dominated by a large positive peak (phase advances) at corresponding phases. By analyzing the phase space structure of Morris-Lecar-type HCO models with fast synaptic dynamics, we identify the dynamical mechanisms underlying the shapes of the PRCs. To demonstrate the significance of the different shapes of the PRCs for the release-type and escape-type HCOs, we link the shapes of the PRCs to the different frequency modulation properties of release-type and escape-type HCOs, and we show that the different shapes of the PRCs for the release-type and escape-type HCOs can lead to fundamentally different phase-locking dynamics.

摘要

我们研究了半中心振荡器(HCOs)的相位响应特性,该振荡器由一对通过强快速抑制性突触连接的Morris-Lecar型神经元建模。我们发现,半中心振荡的两种基本机制,即“释放”和“逃逸”,会产生截然不同的相位响应曲线(PRCs)。释放型HCOs在细胞即将从激活状态转变为抑制状态时,对施加于细胞的扰动最为敏感,并且PRCs在相应相位由一个大的负峰(相位延迟)主导。另一方面,逃逸型HCOs在细胞即将从抑制状态转变为激活状态时,对施加于细胞的扰动最为敏感,并且PRCs在相应相位由一个大的正峰(相位提前)主导。通过分析具有快速突触动力学的Morris-Lecar型HCO模型的相空间结构,我们确定了PRCs形状背后的动力学机制。为了证明释放型和逃逸型HCOs的PRCs不同形状的重要性,我们将PRCs的形状与释放型和逃逸型HCOs的不同频率调制特性联系起来,并且我们表明释放型和逃逸型HCOs的PRCs不同形状可导致根本不同的锁相动力学。

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