首页> 外文期刊>The European Journal of Neuroscience >Fast-spiking interneurons of the rat ventral striatum: temporal coordination of activity with principal cells and responsiveness to reward.
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Fast-spiking interneurons of the rat ventral striatum: temporal coordination of activity with principal cells and responsiveness to reward.

机译:大鼠腹侧纹状体的快速爆发中间神经元:活动与主要细胞的时间协调性和对奖赏的反应性。

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Although previous in vitro studies revealed inhibitory synaptic connections of fast-spiking interneurons to principal cells in the striatum, uncertainty remains about the nature of the behavioural events that correlate with changes in interneuron activity and about the temporal coordination of interneuron firing with spiking of principal cells under natural conditions. Using in vivo tetrode recordings from the ventral striatum in freely moving rats, fast-spiking neurons were distinguished from putative medium-sized spiny neurons on the basis of their spike waveforms and rates. Cross-correlograms of fast-spiking and putative medium-sized spiny neuron firing patterns revealed a variety of temporal relationships, including peaks of concurrent firing and transient decrements in medium-sized spiny neuron spiking around fast-spiking unit activity. Notably, the onset of these decrements was mostly in advance of the fast-spiking unit firing. Many of these temporal relationships were dependent on the sleep-wake state. Coordinated activity was also found amongst pairs of the same phenotype, both fast-spiking units and putative medium-sized spiny neurons, which was often marked by a broad peak of concurrent firing. When studying fast-spiking neurons in a reward-searching task, they generally showed a pre-reward ramping increment in firing rate but a decrement specifically when the rat received reward. In conclusion, our data indicate that various forms of temporally coordinated activity exist amongst ventral striatal interneurons and principal cells, which cannot be explained by feed-forward inhibitory circuits alone. Furthermore, firing patterns of ventral striatal fast-spiking interneurons do not merely correlate with the general arousal state of the animal but display distinct reward-related changes in firing rate.
机译:尽管以前的体外研究表明快突神经元与纹状体中主细胞的抑制性突触连接,但仍存在与神经元活动性变化相关的行为事件的性质以及神经元激发与主细胞突触的时间协调性的不确定性。在自然条件下。使用自由移动大鼠腹侧纹状体的体内四极体记录,根据尖峰波形和峰速率,将快突神经元与假定的中型多刺神经元区分开。快速爆发和推定的中等规模的棘突神经元放电模式的互相关图显示了多种时间关系,包括同时爆发的峰值和快速爆发的单位活动周围的中型棘突神经元突增的瞬时递减。值得注意的是,这些减量的开始主要是在快速加标单元点火之前。这些时间关系中的许多依赖于睡眠-觉醒状态。在相同的表型对之间也发现了协调的活性,包括快速加标单位和假定的中等大小的多刺神经元,通常以同时发芽的宽峰为特征。当在奖励搜索任务中研究快速爆发的神经元时,它们通常会显示出发率的前奖励斜坡增加,但特别是在大鼠获得奖励时减少。总之,我们的数据表明腹侧纹状体中间神经元和主要细胞之间存在各种形式的时间协调活动,这不能单独用前馈抑制电路来解释。此外,腹侧纹状体快速突触中枢神经元的发射模式不仅与动物的一般唤醒状态相关,而且还显示出与发射率相关的明显奖励相关变化。

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