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体内同时记录的纹状体棘状神经元的膜电位同步性。

Membrane potential synchrony of simultaneously recorded striatal spiny neurons in vivo.

作者信息

Stern E A, Jaeger D, Wilson C J

机构信息

Department of Anatomy and Neurobiology, University of Tennessee College of Medicine, Memphis 38163, USA.

出版信息

Nature. 1998 Jul 30;394(6692):475-8. doi: 10.1038/28848.

Abstract

The basal ganglia are an interconnected set of subcortical regions whose established role in cognition and motor control remains poorly understood. An important nucleus within the basal ganglia, the striatum, receives cortical afferents that convey sensorimotor, limbic and cognitive information. The activity of medium-sized spiny neurons in the striatum seems to depend on convergent input within these information channels. To determine the degree of correlated input, both below and at threshold for the generation of action potentials, we recorded intracellularly from pairs of spiny neurons in vivo. Here we report that the transitions between depolarized and hyperpolarized states were highly correlated among neurons. Within individual depolarized states, some significant synchronous fluctuations in membrane potential occurred, but action potentials were not synchronized. Therefore, although the mean afferent signal across fibres is highly correlated among striatal neurons, the moment-to-moment variations around the mean, which determine the timing of action potentials, are not. We propose that the precisely timed, synchronous component of the membrane potential signals activation of cell assemblies and enables firing to occur. The asynchronous component, with low redundancy, determines the fine temporal pattern of spikes.

摘要

基底神经节是一组相互连接的皮质下区域,其在认知和运动控制方面的确立作用仍知之甚少。基底神经节内的一个重要核团——纹状体,接收传递感觉运动、边缘系统和认知信息的皮质传入纤维。纹状体内中型多棘神经元的活动似乎取决于这些信息通道内的汇聚输入。为了确定在动作电位产生阈值以下和阈值时相关输入的程度,我们在体内对成对的多棘神经元进行了细胞内记录。我们在此报告,神经元之间去极化和超极化状态之间的转变高度相关。在单个去极化状态内,膜电位出现了一些显著的同步波动,但动作电位并不同步。因此,尽管纹状体神经元之间跨纤维的平均传入信号高度相关,但围绕平均值的瞬间变化(这决定了动作电位的时间)并非如此。我们提出,膜电位信号的精确计时同步成分激活细胞集合并使放电得以发生。具有低冗余性的异步成分决定了尖峰的精细时间模式。

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