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源于皮肤机械感受器的小脑攀缘纤维活动的皮质和外周调制。

Cortical and peripheral modification of cerebellar climbing fibre activity arising from cutaneous mechanoreceptors.

作者信息

Leicht R, Rowe M J, Schmidt R F

出版信息

J Physiol. 1973 Feb;228(3):619-35. doi: 10.1113/jphysiol.1973.sp010103.

Abstract
  1. In cats anaesthetized with Nembutal climbing fibre (CF) responses evoked in individual cerebellar Purkyne cells by mechanical stimulation of the skin were conditioned by preceding stimuli both to the periphery and to the precruciate area of the cerebral cortex.2. Cortical stimulation, generally subthreshold for evoking a CF response itself, induced an inhibition of cutaneous evoked CF responses in 65% of all Purkyne cells tested. The maximum inhibition ranged from 40 to 100% of the control responses at conditioning-testing intervals of 30-70 msec and the duration of the inhibition was usually 125 msec.3. In most cases the corticofugal inhibition of cutaneously evoked CF responses was mediated by inhibitory mechanisms outside the cerebellar cortex, probably at relays within the spino-olivocerebellar pathways. Purkyne cells undergoing corticofugal inhibition were distributed widely within both the vermis and the pars intermedia of the anterior lobe.4. In 40% of all Purkyne cells tested, there was evidence for afferent inhibition of their peripherally evoked CF responses as revealed by conditioning stimuli applied to the skin outside the receptive field. Again it was found that the inhibition was exerted at levels prior to the cerebellum.5. It is concluded that the afferent input transmitted to Purkyne cells via climbing fibres can be modified by corticofugal and peripheral influences exerted on the relays of the CF pathways outside the cerebellar cortex.
摘要
  1. 在戊巴比妥麻醉的猫中,通过对皮肤进行机械刺激在单个小脑浦肯野细胞中诱发的攀缘纤维(CF)反应,会受到先前施加于外周和大脑皮层十字前区的刺激的调节。

  2. 皮层刺激本身通常低于诱发CF反应的阈值,在所有测试的浦肯野细胞中,有65%的细胞其皮层刺激会诱导对皮肤诱发的CF反应产生抑制。在30 - 70毫秒的条件刺激 - 测试间隔下,最大抑制范围为对照反应的40%至100%,抑制持续时间通常为125毫秒。

  3. 在大多数情况下,皮层对皮肤诱发的CF反应的抑制是由小脑皮层外的抑制机制介导的,可能是在脊髓 - 橄榄 - 小脑通路的中继处。接受皮层抑制的浦肯野细胞在前叶的蚓部和中间部均广泛分布。

  4. 在所有测试的浦肯野细胞中,有40%的细胞存在对其外周诱发的CF反应的传入抑制,这是通过对感受野之外的皮肤施加条件刺激所揭示的。同样发现,这种抑制作用发生在小脑之前的水平。

  5. 得出的结论是,通过攀缘纤维传递到浦肯野细胞的传入输入可以受到对小脑皮层外CF通路中继处施加的皮层离心和外周影响的调节。

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