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电刺激及橄榄小脑通路可逆性损伤对猫绒球浦肯野细胞活性的影响。

Effects of electrical stimulation and reversible lesions of the olivocerebellar pathway on Purkinje cell activity in the flocculus of the cat.

作者信息

Demer J L, Echelman D A, Robinson D A

出版信息

Brain Res. 1985 Oct 28;346(1):22-31. doi: 10.1016/0006-8993(85)91090-x.

Abstract

The activity of Purkinje cells (P-cells) in the flocculus of 8 lightly anesthetized cats and one alert cat was recorded for periods of up to several hours each. The resting simple spike (SS) rate in the anesthetized cats was 37 +/- 21 Hz (mean +/- standard deviation), similar to that observed in the alert cat. Complex spikes (CSs) were evoked by an electrode placed in the climbing fiber (CF) decussation or inferior olive (IO). For each P-cell, SS activity was suppressed completely at or above a cut-off frequency of evoked CSs; median cut-off rate was 5 Hz (range 1-10 Hz, 15 cells). Reversible lesions of the CF pathway were made by microinjection of 1-10 microliter of saturated lidocaine into the IO or CF decussation. This abolished spontaneous CS activity and produced two reversible effects on SS discharge: (1) an increase in mean SS rate of 98%, from 23 +/- 13 to 40 +/- 18 Hz (11 cells); and (2) a decrease of 50% in the variability of SS firing rate. Similar effects were observed in two P-cells whose CF axons were lesioned mechanically. These results show that electrical stimulation and reversible lesions in areas previously shown to alter the gain of the vestibulo-ocular reflex (VOR) also alter CF input to the flocculus, suggesting that the gain changes were caused by changes in CS rate. This study confirms and extends the observation that a reciprocal relationship exists between CS rate and SS background rate, and therefore further suggests that the changes in the gain of the VOR might be due to changes in SS background rate.

摘要

对8只轻度麻醉的猫和1只清醒猫的小脑绒球浦肯野细胞(P细胞)活动进行了长达数小时的记录。麻醉猫的静息单峰放电(SS)频率为37±21Hz(平均值±标准差),与清醒猫的相似。通过置于攀缘纤维(CF)交叉处或下橄榄核(IO)的电极诱发复合峰电位(CSs)。对于每个P细胞,当诱发CSs的频率达到或超过截止频率时,SS活动完全被抑制;截止频率的中位数为5Hz(范围1 - 10Hz,15个细胞)。通过向IO或CF交叉处微量注射1 - 10微升饱和利多卡因对CF通路进行可逆性损伤。这消除了自发的CS活动,并对SS放电产生了两种可逆效应:(1)平均SS频率增加98%,从23±13Hz增加到40±18Hz(11个细胞);(2)SS放电频率的变异性降低50%。在另外两个CF轴突受到机械损伤的P细胞中也观察到了类似的效应。这些结果表明,先前已证明可改变前庭眼反射(VOR)增益的区域中的电刺激和可逆性损伤,也改变了绒球的CF输入,提示增益变化是由CS频率变化引起的。本研究证实并扩展了CS频率与SS背景频率之间存在相互关系的观察结果,因此进一步表明VOR增益的变化可能是由于SS背景频率的变化所致。

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