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一种板鳃亚纲鱼类(小斑星鲨)鳍的反射运动过程中小脑神经元的活动。

The activity of cerebellar neurones of an elasmobranch fish (Scyliorhinus canicula) during a reflex movement of a fin.

作者信息

Paul D H, Roberts B L

出版信息

J Physiol. 1981 Dec;321:369-83. doi: 10.1113/jphysiol.1981.sp013990.

Abstract
  1. Response of neurones in the corpus cerebelli of Scyliorhinus canicula (Elasmobranchii) have been recorded in decerebrate unanaesthetized fish during the performance of pectoral fin reflexes (p.f.r.) evoked by electrical stimulation of the fins.2. Of 421 single units recorded in the posterior dorsal quadrant of the corpus, 111 (26%) had their discharges modulated when the reflex was evoked; fifty nine were Purkinje (P) cells discharging single spikes, thirteen were P cells discharging complex responses, thirty-six were stellate (S) cells and three were not positively identified.3. The responses of fifty-one units (thirty-seven P cells and fourteen S cells) were analysed in detail. In thirty-one of the P cells and all the S cells the initial response was excitatory, six P cells gave an inhibitory response only and a further three were inhibited after the initial excitation. Only one S cell had an inhibitory component in its response.4. The discharges of the S cells completely overlapped the inhibitory responses of the P cells.5. Only one cell (a P cell) was evoked at a latency shorter than that of the p.f.r. In one other P cell discharging single spikes spontaneously, the evoked response was a long latency (146 msec) complex response. Four other P cells discharged only complex responses but the pattern of their response to the p.f.r. was similar to that of P cells discharging single spikes only.6. No cerebellar responses were evoked if the fin stimulus was below the threshold necessary to evoke a p.f.r. In curarized fish, unit responses were recorded that were qualitatively similar to those recorded in unparalysed fish.7. These results suggest that (i) because of the long latency of the responses, the cerebellum is unlikely to have a role in the initiation of the p.f.r.; (ii) the responses during the p.f.r. were evoked via a mossy fibre-parallel fibre pathway; (iii) the responses were correlated with motor activity rather than sensory input.
摘要
  1. 在电刺激胸鳍诱发胸鳍反射(p.f.r.)过程中,对星鲨(板鳃亚纲)小脑体中的神经元反应进行了记录,实验对象为去大脑未麻醉的鱼类。

  2. 在小脑体后背部象限记录的421个单个神经元中,有111个(26%)在诱发反射时其放电受到调制;其中59个是发放单峰的浦肯野(P)细胞,13个是发放复合反应的P细胞,36个是星状(S)细胞,3个未得到明确鉴定。

  3. 对51个神经元(37个P细胞和14个S细胞)的反应进行了详细分析。在31个P细胞和所有S细胞中,初始反应是兴奋性的,6个P细胞仅给出抑制性反应,另外3个在初始兴奋后受到抑制。只有1个S细胞的反应中有抑制成分。

  4. S细胞的放电与P细胞的抑制性反应完全重叠。

  5. 只有1个细胞(1个P细胞)的诱发潜伏期短于胸鳍反射的潜伏期。在另1个自发发放单峰的P细胞中,诱发反应是长潜伏期(146毫秒)的复合反应。另外4个P细胞仅发放复合反应,但它们对胸鳍反射的反应模式与仅发放单峰的P细胞相似。

  6. 如果鳍部刺激低于诱发胸鳍反射所需的阈值,则不会诱发小脑反应。在箭毒化的鱼类中,记录到的单位反应在性质上与未麻痹鱼类中记录到的反应相似。

  7. 这些结果表明:(i)由于反应潜伏期长,小脑不太可能在胸鳍反射的起始中起作用;(ii)胸鳍反射期间的反应是通过苔藓纤维 - 平行纤维通路诱发的;(iii)这些反应与运动活动相关,而非与感觉输入相关。

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