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由兴奋开启与关闭:峰电位时间异步性和同步性在持续神经活动中的作用。

Turning on and off with excitation: the role of spike-timing asynchrony and synchrony in sustained neural activity.

作者信息

Gutkin B S, Laing C R, Colby C L, Chow C C, Ermentrout G B

机构信息

Unite de Neurosciences Intergratives et Computationelles, CNRS, Gif-sur-Yvette 91198, France.

出版信息

J Comput Neurosci. 2001 Sep-Oct;11(2):121-34. doi: 10.1023/a:1012837415096.

Abstract

Delay-related sustained activity in the prefrontal cortex of primates, a neurological analogue of working memory, has been proposed to arise from synaptic interactions in local cortical circuits. The implication is that memories are coded by spatially localized foci of sustained activity. We investigate the mechanisms by which sustained foci are initiated, maintained, and extinguished by excitation in networks of Hodgkin-Huxley neurons coupled with biophysical spatially structured synaptic connections. For networks with a balance between excitation and inhibition, a localized transient stimulus robustly initiates a localized focus of activity. The activity is then maintained by recurrent excitatory AMPA-like synapses. We find that to maintain the focus, the firing must be asynchronous. Consequently, inducing transient synchrony through an excitatory stimulus extinguishes the sustained activity. Such a monosynaptic excitatory turn-off mechanism is compatible with the working memory being wiped clean by an efferent copy of the motor command. The activity that codes working memories may be structured so that the motor command is both the read-out and a direct clearing signal. We show examples of data that is compatible with our theory.

摘要

灵长类动物前额叶皮层中与延迟相关的持续活动,作为工作记忆的一种神经学类似物,被认为源于局部皮层回路中的突触相互作用。这意味着记忆是由持续活动的空间局部焦点编码的。我们研究了在具有生物物理空间结构突触连接的霍奇金-赫胥黎神经元网络中,持续焦点是如何通过兴奋启动、维持和消除的机制。对于兴奋与抑制平衡的网络,局部短暂刺激能强有力地启动局部活动焦点。然后,该活动通过循环兴奋性AMPA样突触得以维持。我们发现,为了维持焦点,放电必须是异步的。因此,通过兴奋性刺激诱导短暂同步会消除持续活动。这种单突触兴奋性关闭机制与工作记忆被运动指令的传出副本清除的情况相兼容。编码工作记忆的活动可能具有这样的结构,即运动指令既是读出信号又是直接清除信号。我们展示了与我们理论相符的数据示例。

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