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前庭小脑病变对有色家兔前庭眼反射和视动反应的动态特性及适应性的影响。

Effects of vestibulocerebellar lesions upon dynamic characteristics and adaptation of vestibulo-ocular and optokinetic responses in pigmented rabbits.

作者信息

Nagao S

出版信息

Exp Brain Res. 1983;53(1):36-46. doi: 10.1007/BF00239396.

Abstract

The vestibulo-ocular reflex (VOR) and optokinetic response (OKR) in the horizontal plane were examined in pigmented rabbits, using sinusoidal whole-body rotation and sinusoidal rotation of a striped screen. Sustained rotation of the animal (5 degrees peak-to-peak, 0.1 Hz) for 4 h, under different optokinetic stimulus conditions, induced the following adaptive changes in the VOR: (1) outphase rotation of the screen (5 degrees) increased the VOR gain by 0.3 (on average); (2) with the screen fixed in space, VOR gain increased by 0.2. (3) in-phase rotation of the screen (5 degrees) decreased the VOR gain by 0.16. However, (4) in-phase rotation of the screen at twice (10 degrees) the amplitude of whole-body rotation did not affect the gain. Instead, it induced a significant phase lead (23 degrees) in the VOR, which did not occur in other stimulus conditions. Adaptive increases of the OKR gain occurred under sustained rotation of the screen alone (2.5 degrees, 0.33 Hz). After bilateral destruction of floccular Purkinje cells with kainic acid the VOR gain and phase were affected only very slightly, but adaptive changes in the VOR were abolished. By contrast, the OKR gain was reduced and the OKR phase delayed. OKR adaptation was also affected in such a way that a gain increase initially produced could not be maintained during sustained screen rotation. Ablation of nodulus-uvala caused a gain increase and phase lead in both VOR and OKR, and its only effect on adaptability of the VOR or the OKR was observed for the VOR under stimulus condition (4).

摘要

利用正弦全身旋转和条纹屏幕的正弦旋转,对有色家兔在水平面内的前庭眼反射(VOR)和视动反应(OKR)进行了检测。在不同的视动刺激条件下,让动物持续旋转(峰 - 峰值5度,0.1赫兹)4小时,可诱导VOR产生以下适应性变化:(1)屏幕异相旋转(5度)平均使VOR增益增加0.3;(2)屏幕固定不动时,VOR增益增加0.2;(3)屏幕同相旋转(5度)使VOR增益降低0.16。然而,(4)屏幕同相旋转幅度为全身旋转幅度的两倍(10度)时,对增益没有影响。相反,它在VOR中诱导出显著的相位超前(23度),这在其他刺激条件下未出现。仅在屏幕持续旋转(2.5度,0.33赫兹)时,OKR增益会适应性增加。用 kainic 酸双侧损毁绒球浦肯野细胞后,VOR增益和相位仅受到非常轻微的影响,但VOR的适应性变化被消除。相比之下,OKR增益降低,OKR相位延迟。OKR适应性也受到影响,使得最初产生的增益增加在屏幕持续旋转期间无法维持。切除小结 - 小舌会导致VOR和OKR的增益增加和相位超前,并且仅在刺激条件(4)下观察到其对VOR或OKR适应性的唯一影响。

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