首页> 美国卫生研究院文献>The Journal of Neuroscience >Changes in Excitability of Ascending and Descending Inputs to Cerebellar Climbing Fibers during Locomotion
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Changes in Excitability of Ascending and Descending Inputs to Cerebellar Climbing Fibers during Locomotion

机译:运动过程中小脑爬升纤维的上升和下降输入兴奋性变化

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摘要

The inferior olive climbing fiber projection plays a central role in all major theories of cerebellar function. Therefore, mechanisms that control the ability of climbing fibers to forward information to the cerebellum are of considerable interest. We examined changes in transmission in cerebro-olivocerebellar pathways (COCPs) and spino-olivocerebellar pathways (SOCPs) during locomotion in awake cats (n = 4) using low-intensity electrical stimuli delivered to the contralateral cerebral peduncle or the ipsilateral superficial radial nerve to set up volleys in COCPs and SOCPs, respectively. The responses were recorded as evoked extracellular climbing fiber field potentials within the C1 or C3 zones in the paravermal cerebellar cortex (lobule Va–Vc). At most C1 and C3 zone sites, the largest COCP responses occurred during the stance phase, and the smallest responses occurred during the swing phase of the ipsilateral forelimb step cycle. In marked contrast, SOCP responses recorded at the same sites were usually largest during the swing phase and smallest during the stance phase. Because substantial climbing fiber responses could be evoked in all phases of the step cycle, the results imply that olivary neurons remain excitable throughout, and that the differences between SOCPs and COCPs in their pattern of step-related modulation are unlikely to have arisen solely through inhibition at the level of the inferior olive (e.g., by activity in the inhibitory cerebellar nucleo-olivary pathway). The different patterns of modulation also suggest that climbing fiber signals conveyed by COCPs and SOCPs are likely to affect information processing within the cerebellar cortical C1 and C3 zones at different times during locomotion.
机译:在所有小脑功能的主要理论中,劣质的橄榄攀爬纤维投射都起着核心作用。因此,控制攀爬纤维将信息转发到小脑的能力的机制引起了极大的兴趣。我们在清醒猫(n = 4)运动过程中使用了低强度电刺激传递到对侧脑蒂或同侧浅radial神经,检查了脑-小脑小径途径(COCPs)和脊髓-小脑小径途径(SOCPs)的传递变化。分别在COCP和SOCP中设置排球。反应被记录为在小脑小脑皮层(小叶Va–Vc)的C1或C3区域内诱发的细胞外攀爬纤维场电位。在大多数C1和C3区域部位,最大的COCP响应发生在站立阶段,而最小的响应发生在同侧前肢步周期的摆动阶段。与之形成鲜明对比的是,记录在同一位置的SOCP响应通常在摆动阶段最大,而在站立阶段最小。由于在阶跃周期的所有阶段都可能引起大量的攀岩纤维反应,因此结果表明,橄榄神经元始终保持兴奋性,并且SOCP和COCP之间的阶跃相关调制模式的差异不可能仅通过抑制来产生在下橄榄的水平(例如,通过抑制小脑核-橄榄途径的活性)。不同的调制方式还表明,在运动过程中,COCP和SOCP传递的攀爬光纤信号可能会影响小脑皮质C1和C3区域内的信息处理。

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