Nagao S
Department of Physiology, Faculty of Medicine, University of Tokyo, Japan.
Exp Brain Res. 1988;73(3):489-97. doi: 10.1007/BF00406606.
Single unit spike activities of Purkinje cells in the cerebellar flocculus were examined during sustained horizontal sinusoidal oscillation (0.33 Hz, 2.5 degrees peak-to-peak) of a striped screen around an alert pigmented rabbit. The floccular area specifically related to horizontal reflex eye movement (H-zone) was identified by means of local stimulation that induced abduction of the ipsilateral eye. In control states, simple spike discharge of most of the H-zone Purkinje cells was enhanced by backward screen movement and depressed by forward screen movement, while complex spike discharge was modulated reciprocally. After one-hour sustained oscillation of the screen, the gain of horizontal optokinetic eye movement response (HOKR) increased by 0.16 on average. Correspondingly, simple spike modulation in most of H-zone Purkinje cells tested significantly increased in amplitude, while complex spike modulation tended to decrease. No such systematic changes were observed in other Purkinje cells. These results are consistent with the hypothesis that the floccular H-zone Purkinje cells adaptively control the optokinetic eye movement through modification of the visual mossy fiber responsiveness under the influence of the retinal error signals conveyed by the visual climbing pathway.
在一只警觉的有色家兔周围,条纹屏幕以0.33Hz、峰峰值2.5度进行持续水平正弦振荡期间,对小脑绒球浦肯野细胞的单单位放电活动进行了检测。通过诱发同侧眼外展的局部刺激,确定了与水平反射性眼动(H区)特别相关的绒球区域。在对照状态下,大多数H区浦肯野细胞的简单锋电位放电在屏幕向后移动时增强,在屏幕向前移动时受到抑制,而复合锋电位放电则呈相反调制。在屏幕持续振荡1小时后,水平视动性眼动反应(HOKR)的增益平均增加了0.16。相应地,大多数受试H区浦肯野细胞的简单锋电位调制幅度显著增加,而复合锋电位调制则趋于减少。在其他浦肯野细胞中未观察到这种系统性变化。这些结果与以下假设一致,即绒球H区浦肯野细胞在视觉攀爬通路传递的视网膜误差信号影响下,通过改变视觉苔藓纤维反应性来适应性地控制视动性眼动。