Munoz D P, Guitton D
Montreal Neurological Institute, Quebec, Canada.
Rev Neurol (Paris). 1989;145(8-9):567-79.
The role of the tecto-reticular and tecto-reticulo-spinal neurons (here called TR(S)Ns) in gaze control is described. TR(S)Ns, located in the deeper layers of the cat superior colliculus (SC), project onto the eye and head premotor circuitry. TR(S)Ns located in the caudal SC had sustained and phasic discharges related to the control of gaze movements. The sustained discharge occurred when the visual axis was positioned at some vector quantity away from a target of interest. Each cell has its preferred vector corresponding to the cell's location on the collicular retinotopic map. This tonic discharge acted as a preamble to the phasic discharge and served to pre-excite the relevant oculomotor circuitry. The phasic discharge preceded gaze shifts whose direction and magnitude matched the preferred vector. The intensity of this discharge was correlated to the acceleration and velocity of the movement. TR(S)Ns situated in the rostral SC were maximally active when the cat fixated a target of interest. These neurons decreased their discharge rate during gaze shifts. Thus, TR(S)Ns provide both fixation and orientation signals to the eye and head premotor circuitry. A scheme is proposed where TR(S)Ns lie within a gaze feedback loop that controls eye and head movements via inputs to long lead burst neurons and omnipause neurons.
本文描述了顶盖-网状及顶盖-网状-脊髓神经元(以下简称TR(S)Ns)在注视控制中的作用。TR(S)Ns位于猫上丘(SC)的深层,投射到眼球和头部的运动前神经回路。位于尾侧上丘的TR(S)Ns具有与注视运动控制相关的持续性和相位性放电。当视轴偏离感兴趣目标一定矢量量时,会出现持续性放电。每个细胞都有与其在丘视网膜拓扑图上的位置相对应的偏好矢量。这种持续性放电作为相位性放电的前奏,用于预先激发相关的动眼神经回路。相位性放电先于注视转移,其方向和幅度与偏好矢量匹配。这种放电的强度与运动的加速度和速度相关。位于头侧上丘的TR(S)Ns在猫注视感兴趣目标时活动最为活跃。这些神经元在注视转移期间放电率降低。因此,TR(S)Ns为眼球和头部的运动前神经回路提供注视和定向信号。本文提出了一种方案,其中TR(S)Ns位于一个注视反馈回路中,该回路通过输入到长潜伏期爆发神经元和全暂停神经元来控制眼球和头部运动。