Hoffmann K P, Schoppmann A
Exp Brain Res. 1981;42(2):146-57. doi: 10.1007/BF00236901.
All cells in the nucleus of the optic tract (NOT) of the cat, that could be activated antidromically from the inferior olive, were shown to be direction-specific, as influenced by horizontal movements of an extensive visual stimulus. Cells in the left NOT were activated by leftward and inhibited by rightward movement, while those in the right NOT were activated by rightward and inhibited by leftward movement. Vertical movements did not modulate the spontaneous activity of the cells. The mean spontaneous discharge rate in 50 NOT cells was 30 spikes/s. This direction-specific response was maintained over a broad velocity range (Less Than 0.1 degrees - Greater Than 100 degrees/s). Velocities over 200 degrees/s could inhibit NOT cells regardless of stimulus direction. All cells in the NOT were driven by the contralateral eye, about half of them by the ipsilateral eye also. In addition, activation through the contralateral eye was stronger in most binocular units. Binocular cells preferred the same direction in the visual space through both eyes. An area approximately corresponding to the visual streak in the cat's retina projected most densely onto NOT cells. This included an extensive ipsilateral projection. No clear retinotopic order was seen. The most sensitive zone in the very large receptive fields (most diameters being Greater Than 20 degrees) was along the horizontal zero meridian of the visual field. The retinal input to NOT cells was mediated by W-fibers. The striking similarities between the input characteristics of NOT-cells and optokinetic nystagmus are discussed. The direction selectivity and ocular dominance of the NOT system as a whole can provide a possible explanation for the directional asymmetry in the cat's optokinetic nystagmus when only one eye is stimulated.
猫视束核(NOT)中所有能被下橄榄核逆向激活的细胞,在受到广泛视觉刺激的水平运动影响时,都表现出方向特异性。左侧NOT中的细胞在向左运动时被激活,向右运动时被抑制;而右侧NOT中的细胞在向右运动时被激活,向左运动时被抑制。垂直运动不会调节这些细胞的自发活动。50个NOT细胞的平均自发放电频率为30次/秒。这种方向特异性反应在很宽的速度范围内(小于0.1度 - 大于100度/秒)都能保持。速度超过200度/秒时,无论刺激方向如何,都能抑制NOT细胞。NOT中的所有细胞都由对侧眼驱动,其中约一半也受同侧眼驱动。此外,在大多数双眼单位中,通过对侧眼的激活更强。双眼细胞在视觉空间中通过双眼偏好相同的方向。猫视网膜中大致对应视觉条纹的区域最密集地投射到NOT细胞上。这包括广泛的同侧投射。未观察到清晰的视网膜拓扑顺序。在非常大的感受野(大多数直径大于20度)中,最敏感的区域沿着视野的水平零度子午线。NOT细胞的视网膜输入由W纤维介导。文中讨论了NOT细胞的输入特征与视动性眼球震颤之间的显著相似性。NOT系统整体的方向选择性和眼优势可以为仅刺激一只眼时猫视动性眼球震颤的方向不对称提供一种可能的解释。