首页> 外文期刊>The Journal of Physiology >Isochrony in the olivocerebellar system underlies complex spike synchrony
【24h】

Isochrony in the olivocerebellar system underlies complex spike synchrony

机译:少小脑系统的等时性是复杂的尖峰同步的基础

获取原文
获取原文并翻译 | 示例
       

摘要

In a recent issue of The Journal of Physiology Baker & Edgley (2006) published results which they interpreted as showing a non-uniform olivocerebellar conduction time in the rat. Baker and Edgley used the climbing fibre reflex to measure conduction time to different points along a folial wall This reflex is initiated by electrical stimulation of the cerebellar white matter, which triggers antidromic spikes in olivocerebellar axons that invade the infer ior olive (IO). Cur rent generated by these spikes spreads to neighbouring IO neurones via the gap junctions that electrically couple IO neurones (Llinas etal 1974). This spreading excitation can trigger orthodromic spikes that return to the cerebellar cortex and trigger Purkinje cell complex spikes (CSs). Baker and Edgley found that climbing fibre reflex latency varied with recording electrode depth, and inferred from this that conduction time between the IO and cerebellar cortex varies systematically with cortical location. This study conflicts with results by us and others that indicate a near uniform olivocerebellar conduction time in rats and turtles (Sugihara et al. 1993; Lang &Rosenbluth, 2003; Ariel, 2005). Below we discuss several troubling issues with this new study, but first we would like to make the point that spontaneous CS synchrony patterns almost necessitate a uniform olivocerebellar conduction time.
机译:Baker&Edgley(2006)在最近一期的《生理学杂志》上发表了结果,他们将结果解释为显示了大鼠小脑小梁传导时间不均匀。贝克(Baker)和埃德利(Edgley)使用攀爬纤维反射来测量沿叶壁到不同点的传导时间。这种反射是由小脑白质的电刺激引起的,这会触发小脑轴突的反体峰,并侵入下橄榄(IO)。这些尖峰产生的电流通过电连接IO神经元的间隙连接扩散到相邻的IO神经元(Llinas等,1974)。这种扩展的激发可以触发返回到小脑皮层的正畸峰,并触发浦肯野细胞复合峰(CS)。 Baker和Edgley发现,攀爬纤维反射潜伏期随记录电极深度的变化而变化,并据此推断IO和小脑皮质之间的传导时间随皮质位置而系统地变化。这项研究与我们和其他人的结果相矛盾,后者表明大鼠和乌龟的小脑小脑传导时间几乎相同(Sugihara等,1993; Lang&Rosenbluth,2003; Ariel,2005)。下面,我们讨论这项新研究的几个令人困扰的问题,但首先,我们要指出,自发CS同步模式几乎需要均匀的小voc小脑传导时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号