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Heterogeneity of Purkinje cell simple spike-complex spike interactions: zebrin- and non-zebrin-related variations

机译:Purkinje细胞的异质性简单穗 - 复杂穗相互作用:Zebrin-和非斑马相关的变化

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Purkinje cells (PCs) generate two types of action potentials, called simple and complex spikes (SSs and CSs). We first investigated the CS-associated modulation of SS activity and its relationship to the zebrin status of the PC. The modulation pattern consisted of a pre-CS rise in SS activity, and then, following the CS, a pause, a rebound, and finally a late inhibition of SS activity for both zebrin positive (Z+) and negative (Z-) cells, though the amplitudes of the phases were larger in Z+ cells. Moreover, the amplitudes of the pre-CS rise with the late inhibitory phase of the modulation were correlated across PCs. In contrast, correlations between modulation phases across CSs of individual PCs were generally weak. Next, the relationship between CS spikelets and SS activity was investigated. The number of spikelets/CS correlated with the average SS firing rate only for Z+ cells. In contrast, correlations across CSs between spikelet numbers and the amplitudes of the SS modulation phases were generally weak. Division of spikelets into likely axonally propagated and non-propagated groups (based on their interspikelet interval) showed that the correlation of spikelet number with SS firing rate primarily reflected a relationship with non-propagated spikelets. In sum, the results show both zebrin-related and non-zebrin-related physiological heterogeneity in SS-CS interactions among PCs, which suggests that the cerebellar cortex is more functionally diverse than is assumed by standard theories of cerebellar function.
机译:Purkinje Cells(PC)生成两种类型的动作电位,称为简单和复杂的尖峰(SSS和CSS)。我们首先研究了SS活动的CS相关调制及其与PC Zebrin状态的关系。调制图案包括一个预CS上升SS活性的,然后,继CS,暂停,反弹,最后一晚抑制两者zebrin阳性(Z +)及负(Z-)细胞SS活性,虽然Z +细胞中阶段的振幅较大。此外,CS预抑制阶段的预抑制阶段的幅度均横跨PC相关。相反,各个PC的CSS之间的调制阶段之间的相关性通常较弱。接下来,研究了CS尖峰与SS活动之间的关系。 Spikelets / CS的数量与仅针对Z +细胞的平均SS发射率相关。相反,Spikelet数量与SS调制相的幅度之间的CSS之间的相关性通常较弱。小穗划分成可能轴突增殖和非传播性基团(基于它们interspikelet间隔)表明,小穗数的与SS射速相关主要反映与非传播小穗的关系。总之,结果表明,在PC之间的SS-CS相互作用中表明斑颈相关和非Zebrin相关的生理异质性,这表明小脑皮质比未经突破功能的标准理论所采用更具功能性多样化。

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