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抑制性神经元同步网络中的频率控制

Frequency control in synchronized networks of inhibitory neurons.

作者信息

Chow C C, White J A, Ritt J, Kopell N

机构信息

Department of Mathematics and Center for BioDynamics, Boston University, MA 02215, USA.

出版信息

J Comput Neurosci. 1998 Dec;5(4):407-20. doi: 10.1023/a:1008889328787.

Abstract

We analyze the control of frequency for a synchronized inhibitory neuronal network. The analysis is done for a reduced membrane model with a biophysically based synaptic influence. We argue that such a reduced model can quantitatively capture the frequency behavior of a larger class of neuronal models. We show that in different parameter regimes, the network frequency depends in different ways on the intrinsic and synaptic time constants. Only in one portion of the parameter space, called phasic, is the network period proportional to the synaptic decay time. These results are discussed in connection with previous work of the authors, which showed that for mildly heterogeneous networks, the synchrony breaks down, but coherence is preserved much more for systems in the phasic regime than in the other regimes. These results imply that for mildly heterogeneous networks, the existence of a coherent rhythm implies a linear dependence of the network period on synaptic decay time and a much weaker dependence on the drive to the cells. We give experimental evidence for this conclusion.

摘要

我们分析了同步抑制性神经网络的频率控制。分析是针对具有基于生物物理学的突触影响的简化膜模型进行的。我们认为,这样一个简化模型能够定量地捕捉更大一类神经元模型的频率行为。我们表明,在不同的参数区域中,网络频率以不同方式依赖于内在和突触时间常数。仅在参数空间的一个称为相位的部分中,网络周期才与突触衰减时间成比例。这些结果结合作者先前的工作进行了讨论,先前的工作表明,对于轻度异质网络,同步性会瓦解,但相位区域中的系统比其他区域中的系统能更好地保持相干性。这些结果意味着,对于轻度异质网络,相干节律的存在意味着网络周期对突触衰减时间呈线性依赖,而对细胞驱动的依赖则弱得多。我们为这一结论提供了实验证据。

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