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上丘以视网膜坐标对注视指令进行编码。

The superior colliculus encodes gaze commands in retinal coordinates.

作者信息

Klier E M, Wang H, Crawford J D

机构信息

CIHR Group for Action and Perception, York University, 4700 Keele Street, Toronto, Ontario M3J 1P3, Canada.

出版信息

Nat Neurosci. 2001 Jun;4(6):627-32. doi: 10.1038/88450.

Abstract

The superior colliculus (SC) has a topographic map of visual space, but the spatial nature of its output command for orienting gaze shifts remains unclear. Here we show that the SC codes neither desired gaze displacement nor gaze direction in space (as debated previously), but rather, desired gaze direction in retinal coordinates. Electrical micro-stimulation of the SC in two head-free (non-immobilized) monkeys evoked natural-looking, eye-head gaze shifts, with anterior sites producing small, fixed-vector movements and posterior sites producing larger, strongly converging movements. However, when correctly calculated in retinal coordinates, all of these trajectories became 'fixed-vector.' Moreover, our data show that this eye-centered SC command is then further transformed, as a function of eye and head position, by downstream mechanisms into the head- and body-centered commands for coordinated eye-head gaze shifts.

摘要

上丘(SC)具有视觉空间的地形图,但其用于引导注视转移的输出指令的空间性质仍不清楚。在这里,我们表明,上丘编码的既不是期望的注视位移,也不是空间中的注视方向(如先前所争论的),而是视网膜坐标中的期望注视方向。对两只无头部限制(未固定)的猴子的上丘进行电微刺激,诱发了自然的、眼-头注视转移,前部位点产生小的、固定向量的运动,而后部位点产生更大的、强烈汇聚的运动。然而,当在视网膜坐标中正确计算时,所有这些轨迹都变成了“固定向量”。此外,我们的数据表明,这种以眼为中心的上丘指令随后会根据眼睛和头部位置,通过下游机制进一步转换为用于协调眼-头注视转移的以头部和身体为中心的指令。

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