首页> 美国卫生研究院文献>Journal of Neurophysiology >Neuronal Diversity: Categorizing Types of Neurons: Differential Purkinje cell simple spike activity and pausing behavior related to cerebellar modules
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Neuronal Diversity: Categorizing Types of Neurons: Differential Purkinje cell simple spike activity and pausing behavior related to cerebellar modules

机译:神经元多样性:分类神经元类型:与小脑模块有关的差异性浦肯野细胞简单的峰值活动和暂停行为

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摘要

The massive computational capacity of the cerebellar cortex is conveyed by Purkinje cells onto cerebellar and vestibular nuclei neurons through their GABAergic, inhibitory output. This implies that pauses in Purkinje cell simple spike activity are potentially instrumental in cerebellar information processing, but their occurrence and extent are still heavily debated. The cerebellar cortex, although often treated as such, is not homogeneous. Cerebellar modules with distinct anatomical connectivity and gene expression have been described, and Purkinje cells in these modules also differ in firing rate of simple and complex spikes. In this study we systematically correlate, in awake mice, the pausing in simple spike activity of Purkinje cells recorded throughout the entire cerebellum, with their location in terms of lobule, transverse zone, and zebrin-identified cerebellar module. A subset of Purkinje cells displayed long (>500-ms) pauses, but we found that their occurrence correlated with tissue damage and lower temperature. In contrast to long pauses, short pauses (<500 ms) and the shape of the interspike interval (ISI) distributions can differ between Purkinje cells of different lobules and cerebellar modules. In fact, the ISI distributions can differ both between and within populations of Purkinje cells with the same zebrin identity, and these differences are at least in part caused by differential synaptic inputs. Our results suggest that long pauses are rare but that there are differences related to shorter intersimple spike intervals between and within specific subsets of Purkinje cells, indicating a potential further segregation in the activity of cerebellar Purkinje cells.
机译:小脑皮层的巨大计算能力通过Purkinje细胞通过其GABA能抑制输出传递到小脑和前庭核神经元上。这意味着,浦肯野细胞简单突波活动的停顿可能在小脑信息处理中起重要作用,但其发生和程度仍存在争议。小脑皮层尽管经常被照做,但并不均匀。已经描述了具有独特的解剖学连通性和基因表达的小脑组件,并且这些组件中的浦肯野细胞在简单和复杂尖峰的发射速率上也不同。在这项研究中,我们系统地将清醒小鼠中记录在整个小脑中的Purkinje细胞的简单棘突活动暂停与它们在小叶,横带和以斑脑蛋白鉴定的小脑模块方面的位置相关联。浦肯野细胞的一个子集显示出较长的暂停(> 500毫秒),但我们发现它们的出现与组织损伤和温度降低有关。与长停顿相反,不同小叶和小脑模块的Purkinje细胞之间短停顿(<500 ms)和钉间间隔(ISI)分布的形状可能不同。实际上,具有相同的斑马蛋白特性的浦肯野细胞群之间和群内,ISI分布都可能不同,并且这些差异至少部分是由不同的突触输入引起的。我们的结果表明,长停顿很少见,但在Purkinje细胞的特定子集之间和内部的较短的简单插穗间隔之间存在差异,这表明小脑Purkinje细胞的活性可能进一步分离。

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