首页> 美国卫生研究院文献>Journal of Neurophysiology >Timing-Dependent Regulation of Evoked Spiking in Nucleus Accumbens Neurons by Integration of Limbic and Prefrontal Cortical Inputs
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Timing-Dependent Regulation of Evoked Spiking in Nucleus Accumbens Neurons by Integration of Limbic and Prefrontal Cortical Inputs

机译:通过整合边缘和前额叶皮层输入在伏隔核神经元中诱发尖峰的时间依赖性调节。

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摘要

Single nucleus accumbens (NAcc) neurons receive excitatory synaptic input from cortical and limbic structures, and the integration of converging goal- and motivation-related signals in these neurons influences reward-directed actions. While limbic/cortical synaptic input summation has been characterized at subthreshold intensities, the manner in which multiple inputs govern NAcc neuron spike discharge has not been measured and is poorly understood. Single NAcc neurons were recorded in urethane-anesthetized rats, and spiking was evoked by coincident stimulation of two major NAcc afferent regions: the basolateral amygdala (BLA) and medial prefrontal cortex (mPFC). BLA input increased NAcc spiking elicited by mPFC stimulation depending on the timing of the stimulation pulses, consistent with the summation of monosynaptically evoked excitatory activity. When mPFC input intensity was below threshold for evoked spiking, the addition of BLA input produced the largest facilitation of evoked spiking, and the latency of the evoked spikes reflected the latency of the individual inputs. When mPFC inputs were stimulated at higher intensities, BLA-mediated facilitation was weaker, and the spike latency reflected only the mPFC input. Thus NAcc neurons integrate both the magnitude and timing of afferent synaptic activity, suggesting that NAcc neuron output is strongly dependent on the comparative magnitude of synaptic activity in its afferent structures. These interactions may be crucial integrative mechanisms that allow motivational and cognitive information to produce appropriate reward-directed actions.
机译:伏伏单核(NAcc)神经元从皮层和边缘结构接收兴奋性突触输入,这些神经元中与目标和动机相关的信号的融合会影响奖励定向行为。虽然边缘/皮质突触输入总和已被表征为亚阈值强度,但尚未测量多个输入控制NAcc神经元尖峰放电的方式,人们对此知之甚少。在氨基甲酸乙酯麻醉的大鼠中记录了单个NAcc神经元,并且通过同时刺激两个主要的NAcc传入区域(基底外侧杏仁核(BLA)和内侧前额叶皮层(mPFC))诱发了尖峰。根据刺激脉冲的时间,BLA输入增加了mPFC刺激引起的NAcc突增,这与单突触诱发的兴奋活性的总和一致。当mPFC输入强度低于诱发尖峰的阈值时,添加BLA输入会最大程度地促进诱发尖峰,诱发尖峰的潜伏期反映了各个输入的潜伏期。当以较高的强度刺激mPFC输入时,BLA介导的促进作用较弱,并且尖峰潜伏期仅反映mPFC输入。因此,NAcc神经元整合了传入突触活动的大小和时间,这表明NAcc神经元输出强烈依赖于其传入结构中突触活动的相对大小。这些相互作用可能是至关重要的整合机制,可以使动机和认知信息产生适当的奖励导向行为。

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