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基底神经节丘脑底核-苍白球网络模型中的活动模式。

Activity patterns in a model for the subthalamopallidal network of the basal ganglia.

作者信息

Terman D, Rubin J E, Yew A C, Wilson C J

机构信息

Department of Mathematics, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Neurosci. 2002 Apr 1;22(7):2963-76. doi: 10.1523/JNEUROSCI.22-07-02963.2002.

Abstract

Based on recent experimental data, we have developed a conductance-based computational network model of the subthalamic nucleus and the external segment of the globus pallidus in the indirect pathway of the basal ganglia. Computer simulations and analysis of this model illuminate the roles of the coupling architecture of the network, and associated synaptic conductances, in modulating the activity patterns displayed by this network. Depending on the relationships of these coupling parameters, the network can support three general classes of sustained firing patterns: clustering, propagating waves, and repetitive spiking that may show little regularity or correlation. Each activity pattern can occur continuously or in discrete episodes. We characterize the mechanisms underlying these rhythms, as well as the influence of parameters on details such as spiking frequency and wave speed. These results suggest that the subthalamopallidal circuit is capable both of correlated rhythmic activity and of irregular autonomous patterns of activity that block rhythmicity. Increased striatal input to, and weakened intrapallidal inhibition within, the indirect pathway can switch the behavior of the circuit from irregular to rhythmic. This may be sufficient to explain the emergence of correlated oscillatory activity in the subthalamopallidal circuit after destruction of dopaminergic neurons in Parkinson's disease and in animal models of parkinsonism.

摘要

基于最近的实验数据,我们构建了一个基于电导的计算网络模型,该模型模拟了基底神经节间接通路中的丘脑底核和苍白球外侧段。对该模型进行计算机模拟和分析,揭示了网络耦合结构以及相关突触电导在调节该网络活动模式中的作用。根据这些耦合参数之间的关系,该网络可以支持三类持续放电模式:簇状放电、传播波以及可能几乎没有规律性或相关性的重复尖峰放电。每种活动模式都可以连续出现或离散出现。我们描述了这些节律背后的机制,以及参数对诸如尖峰频率和波速等细节的影响。这些结果表明,丘脑底核 - 苍白球回路既能产生相关的节律性活动,也能产生阻碍节律性的不规则自主活动模式。间接通路中纹状体输入增加以及苍白球内抑制减弱,可使该回路的行为从不规则转变为节律性。这可能足以解释帕金森病以及帕金森病动物模型中多巴胺能神经元受损后,丘脑底核 - 苍白球回路中相关振荡活动的出现。

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