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猴子小脑小叶V和VI蚓旁区域浦肯野细胞的自然放电。

The natural discharges of Purkinje cells in paravermal regions of lobules V and VI of the monkey's cerebellum.

作者信息

Harvey R J, Porter R, Rawson J A

出版信息

J Physiol. 1977 Oct;271(2):515-36. doi: 10.1113/jphysiol.1977.sp012012.

Abstract
  1. Conscious monkeys were trained with food rewards to perform movement tasks with the left hand and to accept manipulation of the joints and muscles and natural non-noxious stimulation of the skin of both forelimbs.2. Recordings were made from 230 Purkinje cells situated in the paravermal region of lobules V and VI or immediately adjacent folia of the left cerebellum in a region from 2 to 7 mm from the mid line. These neurones were all in a zone which was demonstrated to receive inputs from the ipsilateral hand and which is known to receive projections, via the pontine nuclei from the ;arm area' of motor cortex in the right hemisphere.3. Modulation of the natural activity of 182 of these 230 Purkinje cells (79%) occurred in a reproducible manner in temporal association, each with a particular phase of the self-paced movement tasks performed by the animal using the ipsilateral arm and hand. The patterns of modulation of Purkinje cell firing in this limited zone of cerebellar cortex could be classified into one of four groups, and each cell's discharge was associated with a particular aspect of movement such as general arm flexion, shoulder retraction, elbow extension or elbow flexion whenever it occurred.4. The cells were spontaneously active at rest. Most commonly, marked accelerations of the discharge were related to one direction of the particular aspect of movement and a reduction of activity or even total silence accompanied movement in the opposite direction.5. Variation of the amount of discharge demonstrated during a movement performance with which this discharge was characteristically associated could be related to the range of the movement or its duration, more activity being characteristic of more prolonged movement performance through larger angles of joint displacement.6. Both simple spikes and complex spikes of some cells showed characteristic modulation of their activity during the monkey's self-initiated movements. Cells whose simple spikes did not change in frequency during the movement task, also showed no modification of complex spike discharge.7. Of the 182 neurones whose discharges changed during active movement performance, 105 (roughly 60%) were demonstrated to be in receipt of an input from peripheral receptors in the hand which could be activated by brisk tapping of the skin or brushing of hairs. In contrast, none of the Purkinje cells whose discharges were unchanged during arm movements could be demonstrated to receive such an input.8. Movement of joints through their full range and prodding of muscles were completely ineffective stimuli for causing changes in Purkinje cell firing in this zone of the cerebellar cortex while the animal was passive and relaxed. Imposed perturbations of movement performance injected unexpectedly during the execution of a movement task were also ineffective in modifying the discharge of these Purkinje cells in relation to the task.
摘要
  1. 对清醒的猴子进行训练,通过食物奖励使其用左手执行运动任务,并接受对双前肢关节、肌肉的操作以及对皮肤的自然无害刺激。

  2. 在位于小叶V和VI的蚓旁区域或左小脑紧邻小叶、距中线2至7毫米区域内的230个浦肯野细胞进行记录。这些神经元都处于一个区域,该区域已被证明接收来自同侧手的输入,并且已知通过脑桥核接收来自右半球运动皮层“臂区”的投射。

  3. 这230个浦肯野细胞中的182个(79%)的自然活动调制以可重复的方式与时间相关联,每个都与动物使用同侧手臂和手执行的自定节奏运动任务的特定阶段相关。在小脑皮层的这个有限区域内,浦肯野细胞放电的调制模式可分为四组之一,并且每当出现时,每个细胞的放电都与运动的特定方面相关,例如手臂整体屈曲、肩部后缩、肘部伸展或肘部屈曲。

  4. 这些细胞在静息时自发活动。最常见的是,放电的明显加速与运动特定方面的一个方向相关,而在相反方向运动时活动减少甚至完全沉默。

  5. 在与该放电典型相关的运动执行过程中所表现出的放电量变化可能与运动范围或持续时间有关,通过更大角度的关节位移进行更长时间的运动表现时,更多活动为其特征。

  6. 一些细胞简单锋电位和复合锋电位在猴子自发运动期间都表现出其活动的特征性调制。在运动任务期间其简单锋电位频率不变的细胞,其复合锋电位放电也没有变化。

  7. 在主动运动执行期间其放电发生变化的182个神经元中,有105个(约60%)被证明接收来自手部外周感受器的输入,这种输入可通过轻快敲击皮肤或拂动毛发来激活。相比之下,在手臂运动期间其放电未改变的浦肯野细胞中,没有一个被证明接收这样的输入。

  8. 在动物被动放松时,关节全范围运动和肌肉戳刺对于引起小脑皮层这个区域内浦肯野细胞放电变化是完全无效的刺激。在运动任务执行期间意外施加的运动表现干扰对于改变这些浦肯野细胞与任务相关的放电也是无效的。

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Cerebrocerebellar relationships in the monkey.猴子的大脑与小脑的关系。
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J Neurophysiol. 1950 Nov;13(6):465-86. doi: 10.1152/jn.1950.13.6.465.
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The cerebellum of the cat and the monkey.猫和猴子的小脑。
J Comp Neurol. 1953 Aug;99(1):135-99. doi: 10.1002/cne.900990110.

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