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Pauses in cholinergic interneuron firing exert an inhibitory control on striatal output in vivo

机译:胆碱能中间神经元放电的暂停可抑制体内纹状体输出

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The cholinergic interneurons (CINs) of the striatum are crucial for normal motor and behavioral functions of the basal ganglia. Striatal CINs exhibit tonic firing punctuated by distinct pauses. Pauses occur in response to motivationally significant events, but their function is unknown. Here we investigated the effects of pauses in CIN firing on spiny projection neurons (SPNs) – the output neurons of the striatum – using in vivo whole cell and juxtacellular recordings in mice. We found that optogenetically-induced pauses in CIN firing inhibited subthreshold membrane potential activity and decreased firing of SPNs. During pauses, SPN membrane potential fluctuations became more hyperpolarized and UP state durations became shorter. In addition, short-term plasticity of corticostriatal inputs was decreased during pauses. Our results indicate that, in vivo, the net effect of the pause in CIN firing on SPNs activity is inhibition and provide a novel mechanism for cholinergic control of striatal output.
机译:纹状体的胆碱能中间神经(CIN)对于基底神经节的正常运动和行为功能至关重要。纹状体CIN表现为强直性放电,并伴有明显的停顿。在发生重大动机事件时会发生暂停,但其功能尚不清楚。在这里,我们使用小鼠体内的全细胞和近细胞记录,研究了CIN激发暂停对棘突状投射神经元(SPN)–纹状体的输出神经元的影响。我们发现,CIN激发的光遗传学诱导的停顿抑制了亚阈值膜电位活性并降低了SPN的激发。在暂停期间,SPN膜电位波动变得更加极化,UP状态持续时间变得更短。此外,在停顿期间,皮质骨皮质投入的短期可塑性降低了。我们的结果表明,在体内,CIN放电暂停对SPNs活性的净影响是抑制作用,并为纹状体输出的胆碱能控制提供了新的机制。

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