[电刺激猫小脑输入和输出时循环运动反应发生器的传出活动参数重排]。

Neirofiziologiia = Neurophysiology Pub Date : 1992-01-01
A M Degtiarenko
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引用次数: 0

摘要

研究了电刺激下橄榄核、外侧网状核以及小脑顶核和间位核对抓痕和运动产生器活动参数的重排。抓挠和运动发生器的特点是能够有效地重新安排其活动的时间结构,以响应由小脑的苔藓和攀爬输入到达的信号的相位和振幅特征的某些变化。运动发生器的屈肌半中心和抓挠发生器的瞄准半中心在这些半中心工作的前半阶段受到从下橄榄核和外侧网状核到达小脑的信号的影响,其活动的周期和强度都增加了。在屈肌后半期和瞄准期刺激下橄榄核和外侧网状核会引起运动和抓挠产生器半中心活动相关性的不同变化。抓抓时瞄准半中心的活动周期略有缩短,运动时伸肌半中心的活动周期略有减少。在控制肢体伸肌运动的半中心工作阶段刺激上述结构可缩短运动时伸肌半中心活动周期,而对抓挠时抓挠抽搐半中心活动周期无影响。搔抓产生器与运动产生器不同,其特点是与电刺激小脑核及其传入输入引起的产生器传入活动参数的重排有很大程度的相似性。讨论了在小脑输入信号的相位和幅度特性变化过程中形成对划痕和运动产生器的校正影响的可能机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Rearrangements of efferent activity parameters in generators of cyclic motor reactions during electric stimulation of cerebellum inputs and outputs in the cat].

Rearrangements of the activity parameters of scratching and locomotor generators conditioned by electric stimulation of the inferior olive, nucleus reticularis lateralis as well as of the fastigial nucleus and nucleus interpositus of the cerebellum were investigated on decerebrate immobilized animals. Scratching and locomotor generators were characterized by the ability to effectively rearrange the time structure of their activity in response to certain changes in phase and amplitude characteristics of signals arriving both by the mossy and climbing inputs of the cerebellum. The flexor half-centre of the locomotor generator and aiming half-centre of the scratching generator increased both the period and intensity of their activity under influence of signals arriving to the cerebellum from the inferior olive and nucleus reticularis lateralis at the first half of the working phase of these half-centres. Stimulation of the inferior olive and nucleus reticularis lateralis during the second half of the flexor and aiming phases evoked somewhat different changes in correlation of activity for half-centres of the locomotor and scratching generators. A slight shortening of the activity period of the aiming half-centre during scratching and a decrease of the activity period of the extensor half-centre during locomotion were observed. Stimulation of the structures mentioned above during the working phase of half-centres controlling limb extensor movements evoked shortening of the extensor half-centres activity period during locomotion and exerted no effect on the scratching jerk half-centre activity period during scratching. The scratching generator, unlike the locomotor generator is characterized by a significant degree of resemblance of the rearrangement of generator efferent activity parameters evoked by electric stimulation of the cerebellum nuclei and its afferent inputs. Possible mechanisms of forming the correcting influences on scratching and locomotor generators from the cerebellum during changes in phase and amplitude characteristics of its input signals are discussed.

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