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Mesocortical Dopamine Neurons Operate in Distinct Temporal Domains Using Multimodal Signaling

机译:中脑皮层多巴胺神经元使用不同模式的信号在不同的时间域中运作。

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摘要

In vivo extracellular recording studies have traditionally shown that dopamine (DA) transiently inhibits prefrontal cortex (PFC) neurons, yet recent biophysical measurements in vitro indicate that DA enhances the evoked excitability of PFC neurons for prolonged periods. Moreover, although DA neurons apparently encode stimulus salience by transient alterations in firing, the temporal properties of the PFC DA signal associated with various behaviors is often extraordinarily prolonged. The present study used in vivo electrophysiological and electrochemical measures to show that the mesocortical system produces a fast non-DA-mediated postsynaptic response in the PFC that appears to be initiated by glutamate. In contrast, short burst stimulation of mesocortical DA neurons that produced transient (<4 s) DA release in the PFC caused a simultaneous reduction in spontaneous firing (consistent with extracellular in vivo recordings) and a form of DA-induced potentiation in which evoked firing was increased for tens of minutes (consistent with in vitro measurements). We suggest that the mesocortical system might transmit fast signals about reward or salience via corelease of glutamate, whereas the simultaneous prolonged DA-mediated modulation of firing biases the long-term processing dynamics of PFC networks.
机译:传统上,体内细胞外记录研究表明,多巴胺(DA)瞬时抑制前额叶皮层(PFC)神经元,但是最近的体外生物物理测量表明,DA可以长时间延长PFC神经元的诱发兴奋性。此外,尽管DA神经元显然是通过激发过程中的瞬时变化来编码刺激显着性,但与各种行为相关的PFC DA信号的时间特性通常会异常延长。本研究使用体内电生理学和电化学方法来显示中皮层系统在PFC中产生快速的非DA介导的突触后突触反应,这似乎是由谷氨酸引发的。相比之下,在PFC中产生短暂(<4 s)DA释放的中皮层DA神经元的短时刺激会导致自发放电同时减少(与细胞外体内记录一致),并且是DA诱发的增强形式,其中诱发了放电增加数十分钟(与体外测量结果一致)。我们建议,中皮层系统可能通过谷氨酸的共释放来传递有关奖赏或显着性的快速信号,而同时长时间的DA介导的发射调制会偏向PFC网络的长期处理动态。

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