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Vestibular nerve and nuclei unit responses and eye movement responses to repetitive galvanic stimulation of the labyrinth in the rat.

作者信息

Courjon J H, Precht W, Sirkin D W

出版信息

Exp Brain Res. 1987;66(1):41-8. doi: 10.1007/BF00236200.

DOI:10.1007/BF00236200
PMID:3582534
Abstract

Two-second cathodal current pulses were applied at one-minute intervals at a point external to the round window in the ear of each albino rat subject. Responses were recorded in the vestibular nerve ganglion, the vestibular nuclei (single units), or in the eye movements (search coil recording method) of anaesthetized, decerebrated, or alert rats. The unit responses to the galvanic stimuli were characterized and compared with responses to galvanic and rotational stimuli reported in the literature. The main focus of the study, however, was effects of stimulus repetition. In both the vestibular nerve and vestibular nuclei recordings, the responses of many units were substantially larger or smaller at the end of a 13-pulse stimulus train than at the beginning. In the vestibular nuclei, but not in the nerve, there was a slight bias towards a decrease in response magnitude, with 10/88 units showing decreases great enough to be considered as reflecting an habituation process. In contrast, the eye movement responses showed more consistent response decrements, especially in the alert condition, but also in the other conditions (none of the unit recordings were done in alert rats). It is concluded that some of the modifications underlying habituation of the vestibuloocular reflex probably occur in portions of the neuronal reflex pathways that are downstream from the vestibular nuclei.

摘要

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本文引用的文献

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PRIMARY, SECONDARY, AND CALORIC NYSTAGMUS OF THE CAT FOLLOWING HABITUATION TO ROTATION.猫在适应旋转后出现的原发性、继发性和温热性眼球震颤
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Neuronal habituation in the vestibular nuclei of the cat.猫前庭核中的神经元习惯化
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The response of primary horizontal semicircular canal neurons in the rat and guinea pig to angular acceleration.大鼠和豚鼠初级水平半规管神经元对角加速度的反应。
使用模拟技术解析电前庭刺激,并将电流与报告的运动相关联:常见和特殊电极位置的比较。
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Repetitive Low-Intensity Vestibular Noise Stimulation Partly Reverses Behavioral and Brain Activity Changes following Bilateral Vestibular Loss in Rats.重复性低强度前庭噪声刺激部分逆转了双侧前庭失能大鼠的行为和大脑活动变化。
Biomolecules. 2023 Oct 26;13(11):1580. doi: 10.3390/biom13111580.
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