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Behavior-Related Pauses in Simple-Spike Activity of Mouse Purkinje Cells Are Linked to Spike Rate Modulation

机译:小鼠浦肯野细胞的简单穗活动中与行为相关的暂停链接到穗速率调节。

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摘要

Purkinje cells (PCs) in the mammalian cerebellum express high-frequency spontaneous activity with average spike rates between 30 and 200 Hz. Cerebellar nuclear (CN) neurons receive converging input from many PCs, resulting in a continuous barrage of inhibitory inputs. It has been hypothesized that pauses in PC activity trigger increases in CN spiking activity. A prediction derived from this hypothesis is that pauses in PC simple-spike activity represent relevant behavioral or sensory events. Here, we asked whether pauses in the simple-spike activity of PCs related to either fluid licking or respiration, play a special role in representing information about behavior. Both behaviors are widely represented in cerebellar PC simple-spike activity. We recorded PC activity in the vermis and lobus simplex of head-fixed mice while monitoring licking and respiratory behavior. Using cross-correlation and Granger causality analysis, we examined whether short interspike intervals (ISIs) had a different temporal relationship to behavior than long ISIs or pauses. Behavior-related simple-spike pauses occurred during low-rate simple-spike activity in both licking- and breathing-related PCs. Granger causality analysis revealed causal relationships between simple-spike pauses and behavior. However, the same results were obtained from an analysis of surrogate spike trains with gamma ISI distributions constructed to match rate modulations of behavior-related Purkinje cells. Our results therefore suggest that the occurrence of pauses in simple-spike activity does not represent additional information about behavioral or sensory events that goes beyond the simple-spike rate modulations.
机译:哺乳动物小脑中的浦肯野细胞(PC)表达高频自发活动,平均刺突频率在30到200 Hz之间。小脑核(CN)神经元从许多PC接收会聚的输入,从而导致连续不断的抑制输入。已经假设PC活动的暂停会触发CN刺突活动的增加。从该假设得出的预测是,个人计算机简单峰值活动的暂停代表相关的行为或感觉事件。在这里,我们问到与舔舔或呼吸有关的PC的简单峰值活动中的暂停是否在表示有关行为的信息中起特殊作用。两种行为在小脑PC简单尖峰活动中都有广泛体现。我们在监测舔舔和呼吸行为的同时记录了头固定小鼠的the和单叶的PC活性。使用互相关和格兰杰因果关系分析,我们检查了短钉间时间间隔(ISI)与行为的时间关系是否与长ISI或暂停有不同的时间关系。与行为相关的简单尖峰暂停发生在与舔和呼吸相关的PC的低速率简单尖峰活动期间。 Granger因果关系分析揭示了简单尖峰停顿与行为之间的因果关系。但是,从具有伽玛ISI分布的替代性尖峰序列的分析获得了相同的结果,该分布被构造为与行为相关的Purkinje细胞的速率调制相匹配。因此,我们的结果表明,简单尖峰活动中出现的停顿并不代表超出简单尖峰速率调制之外的有关行为或感官事件的其他信息。

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