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电刺激恒河猴辅助眼区诱发的头部运动。

Head movement evoked by electrical stimulation in the supplementary eye field of the rhesus monkey.

作者信息

Chen L Longtang, Walton Mark M G

机构信息

Department of Otolaryngology, University of Texas Medical Branch, Galveston, 77555, USA.

出版信息

J Neurophysiol. 2005 Dec;94(6):4502-19. doi: 10.1152/jn.00510.2005. Epub 2005 Sep 7.

Abstract

Although the supplementary eye field (SEF) has been implicated in the control of head movements associated with gaze shifts, there is no direct evidence that SEF plays a role in the generation of head movements independent of gaze. If the SEF does, varying the duration of stimulation should selectively alter the head-movement kinematics during the postgaze-shift period. The duration of the stimulation was manipulated while head-unrestrained monkeys maintained stable head forward postures. The initial positions of the eyes in the orbits were systematically varied. Although combined movements of the eyes and head were produced in the majority of the trials, head movements were sometimes evoked in the absence of gaze shifts. These head-alone movements were most frequent when the initial eye position was contralateral to the stimulated side. When the stimulation produced eye and head movements, gaze onset was sometimes preceded by a relatively low-velocity phase of the head movement. Evoked head movements were primarily horizontal, unlike the gaze shifts, which typically had vertical components that varied according to the initial positions of the eyes in the orbits. The postgaze-shift head movements tended to be of low velocity and in many cases persisted until stimulation offset. In general, prolonging the stimulation resulted in improved centering of the eyes in the orbits. These findings suggest that, in addition to its previously described role in the generation of coordinated eye-head gaze shifts, the SEF is also involved in the control of head movements in the absence of a change of gaze.

摘要

尽管辅助眼区(SEF)被认为与控制与眼跳相关的头部运动有关,但尚无直接证据表明SEF在独立于眼动的头部运动产生中发挥作用。如果SEF确实如此,改变刺激持续时间应能在眼跳后阶段选择性地改变头部运动的运动学特征。在头部不受约束的猴子保持头部向前稳定姿势的情况下,对刺激持续时间进行了操控。眼眶中眼睛的初始位置被系统地改变。尽管在大多数试验中产生了眼睛和头部的联合运动,但有时在没有眼跳的情况下也会诱发头部运动。当初始眼位与受刺激侧对侧时,这些单独的头部运动最为频繁。当刺激产生眼睛和头部运动时,眼跳开始有时会先于头部运动的一个相对低速阶段。诱发的头部运动主要是水平的,这与眼跳不同,眼跳通常具有根据眼眶中眼睛的初始位置而变化的垂直分量。眼跳后的头部运动往往速度较低,并且在许多情况下会持续到刺激结束。一般来说,延长刺激会使眼睛在眼眶中的居中情况得到改善。这些发现表明,除了其先前描述的在产生协调的眼-头眼跳中的作用外,SEF还参与在没有眼动变化时对头部运动的控制。

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