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突触前体细胞膜电位对皮质内突触电位的调制

Modulation of intracortical synaptic potentials by presynaptic somatic membrane potential.

作者信息

Shu Yousheng, Hasenstaub Andrea, Duque Alvaro, Yu Yuguo, McCormick David A

机构信息

Department of Neurobiology, Kavli Institute for Neuroscience, Yale University School of Medicine, 333 Cedar Street, New Haven, Connecticut 06510, USA.

出版信息

Nature. 2006 Jun 8;441(7094):761-5. doi: 10.1038/nature04720. Epub 2006 Apr 12.

Abstract

Traditionally, neuronal operations in the cerebral cortex have been viewed as occurring through the interaction of synaptic potentials in the dendrite and soma, followed by the initiation of an action potential, typically in the axon. Propagation of this action potential to the synaptic terminals is widely believed to be the only form of rapid communication of information between the soma and axonal synapses, and hence to postsynaptic neurons. Here we show that the voltage fluctuations associated with dendrosomatic synaptic activity propagate significant distances along the axon, and that modest changes in the somatic membrane potential of the presynaptic neuron modulate the amplitude and duration of axonal action potentials and, through a Ca2+-dependent mechanism, the average amplitude of the postsynaptic potential evoked by these spikes. These results indicate that synaptic activity in the dendrite and soma controls not only the pattern of action potentials generated, but also the amplitude of the synaptic potentials that these action potentials initiate in local cortical circuits, resulting in synaptic transmission that is a mixture of triggered and graded (analogue) signals.

摘要

传统上,大脑皮层中的神经元活动被认为是通过树突和胞体中的突触电位相互作用而发生的,随后通常在轴突中引发动作电位。人们普遍认为,这种动作电位向突触终末的传播是胞体与轴突突触之间,进而与突触后神经元之间快速传递信息的唯一形式。在此,我们表明,与树突-胞体突触活动相关的电压波动会沿着轴突传播相当长的距离,并且突触前神经元胞体膜电位的适度变化会调节轴突动作电位的幅度和持续时间,并且通过一种钙依赖机制,调节这些尖峰诱发的突触后电位的平均幅度。这些结果表明,树突和胞体中的突触活动不仅控制所产生动作电位的模式,还控制这些动作电位在局部皮层回路中引发的突触电位的幅度,从而导致突触传递是触发信号和分级(模拟)信号的混合。

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