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上丘在注视转移过程中适应性眼-头协调中的作用。

Role of superior colliculus in adaptive eye-head coordination during gaze shifts.

作者信息

Constantin Alina G, Wang Hongying, Crawford J Douglas

机构信息

Center for Vision Research, York University, 4700 Keele Street, Toronto, Ontario M3J 1P3, Canada.

出版信息

J Neurophysiol. 2004 Oct;92(4):2168-84. doi: 10.1152/jn.00103.2004. Epub 2004 Jun 9.

Abstract

The goal of this study was to determine which aspects of adaptive eye-head coordination are implemented upstream or downstream from the motor output layers of the superior colliculus (SC). Two monkeys were trained to perform head-free gaze shifts while looking through a 10 degrees aperture in opaque, head-fixed goggles. This training produced context-dependent alterations in eye-head coordination, including a coordinated pattern of saccade-vestibuloocular reflex (VOR) eye movements that caused eye position to converge toward the aperture, and an increased contribution of head movement to the gaze shift. One would expect the adaptations that were implemented downstream from the SC to be preserved in gaze shifts evoked by SC stimulation. To test this, we analyzed gaze shifts evoked from 19 SC sites in monkey 1 and 38 sites in monkey 2, both with and without goggles. We found no evidence that the goggle paradigm altered the basic gaze position-dependent spatial coding of the evoked movements (i.e., gaze was still coded in an eye-centered frame). However, several aspects of the context-dependent coordination strategy were preserved during stimulation, including the adaptive convergence of final eye position toward the goggles aperture, and the position-dependent patterns of eye and head movement required to achieve this. For example, when initial eye position was offset from the learned aperture location at the time of stimulation, a coordinated saccade-VOR eye movement drove it back to the original aperture, and the head compensated to preserve gaze kinematics. Some adapted amplitude-velocity relationships in eye, gaze, and head movement also may have been preserved. In contrast, context-dependent changes in overall eye and head contribution to gaze amplitude were not preserved during SC stimulation. We conclude that 1) the motor output command from the SC to the brain stem can be adapted to produce different position-dependent coordination strategies for different behavioral contexts, particularly for eye-in-head position, but 2) these brain stem coordination mechanisms implement only the default (normal) level of head amplitude contribution to the gaze shift. We propose that a parallel cortical drive, absent during SC stimulation, is required to adjust the overall head contribution for different behavioral contexts.

摘要

本研究的目的是确定适应性眼-头协调的哪些方面是在中脑上丘(SC)运动输出层的上游或下游实现的。训练了两只猴子,使其在头戴固定的不透明护目镜、通过10度孔径观察时进行无头部注视转移。这种训练产生了依赖于上下文的眼-头协调变化,包括扫视-前庭眼反射(VOR)眼球运动的协调模式,该模式导致眼球位置朝着孔径汇聚,以及头部运动对注视转移的贡献增加。人们可能会预期,在SC下游实现的适应性变化会在SC刺激诱发的注视转移中得以保留。为了对此进行测试,我们分析了猴子1的19个SC位点和猴子2 的38个位点诱发的注视转移,有无护目镜的情况均进行了分析。我们没有发现证据表明护目镜范式改变了诱发运动的基本注视位置依赖性空间编码(即注视仍以眼球为中心的坐标系进行编码)。然而,在刺激过程中,依赖于上下文的协调策略的几个方面得以保留,包括最终眼球位置朝着护目镜孔径的适应性汇聚,以及实现这一点所需的眼球和头部运动的位置依赖性模式。例如,如果在刺激时初始眼球位置偏离了学习到的孔径位置,扫视-VOR眼球运动的协调会将其带回原始孔径,并且头部会进行补偿以保持注视运动学。眼球、注视和头部运动中一些适应的幅度-速度关系也可能得以保留。相比之下,在SC刺激期间,眼球和头部对注视幅度的总体贡献中依赖于上下文的变化并未保留。我们得出结论:1)从SC到脑干的运动输出指令可以进行调整,以针对不同的行为情境产生不同的位置依赖性协调策略,特别是针对头内眼球位置,但2)这些脑干协调机制仅实现了头部幅度对注视转移贡献的默认(正常)水平。我们提出,在SC刺激期间不存在的平行皮质驱动,对于针对不同行为情境调整头部的总体贡献是必需的。

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