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Gating of transmission in climbing fibre paths to cerebellar cortical C1 and C3 zones in the rostral paramedian lobule during locomotion in the cat

机译:在猫的运动过程中攀爬纤维路径中的传递门到小脑皮质中叶小脑C1和C3区的传输门控

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摘要

class="enumerated" style="list-style-type:decimal">Climbing fibre field potentials evoked by low intensity (non-noxious) electrical stimulation of the ipsilateral superficial radial nerve have been recorded in the rostral paramedian lobule (PML) in awake cats. Chronically implanted microwires were used to monitor the responses at eight different C1 and C3 zone sites during quiet rest and during steady walking on a moving belt. The latency and other characteristics of the responses identified them as mediated mainly via the dorsal funiculus-spino-olivocerebellar path (DF-SOCP).At each site, mean size of response (measured as the area under the field, in mV ms) varied systematically during the step cycle without parallel fluctuations in size of the peripheral nerve volley. Largest responses occurred overwhelmingly during the stance phase of the step cycle in the ipsilateral forelimb while smallest responses occurred most frequently during swing.Simultaneous recording from pairs of C1 zone sites located in the anterior lobe (lobule V) and C1 or C3 zone sites in rostral PML revealed markedly different patterns of step-related modulation.The findings shed light on the extent to which the SOCPs projecting to different parts of a given zone can be regarded as functionally uniform and have implications as to their reliability as channels for conveying peripheral signals to the cerebellum during locomotion.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在清醒的猫的鼻中旁小叶(PML)中已记录到同侧浅nerve神经的低强度(非有害)电刺激引起的攀爬纤维场电位。长期植入的微线用于监测安静休息和在移动皮带上稳定行走期间在八个不同的C1和C3区部位的响应。应答的潜伏期和其他特征主要是通过背侧-脊柱-小盂小路(DF-SOCP)介导的。 在每个部位,平均应答大小(以指腹下方的面积衡量)场,以mV ms为单位)在步长周期内系统变化,而周围神经截距的大小没有平行波动。在同侧前肢的步态周期站立阶段,最大的反应绝大多数发生,而在挥杆过程中,最小的反应最频繁发生。 同时记录前叶(小叶V)和小叶C1对部位延髓性PML中的C1或C3区位点显示出明显不同的阶跃相关调制模式。 这一发现揭示了投射到给定区不同部分的SOCP在功能上是统一的并对其在运动过程中作为将周围信号传输到小脑的通道的可靠性具有意义。

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