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刺激猴子补充眼区募集对侧头部转动协同作用。

Recruitment of a contralateral head turning synergy by stimulation of monkey supplementary eye fields.

机构信息

Graduate Program in Neuroscience, University of Western Ontario, London, Canada.

出版信息

J Neurophysiol. 2012 Mar;107(6):1694-710. doi: 10.1152/jn.00487.2011. Epub 2011 Dec 14.

DOI:10.1152/jn.00487.2011
PMID:22170964
Abstract

The supplementary eye fields (SEF) are thought to enable higher-level aspects of oculomotor control. The goal of the present experiment was to learn more about the SEF's role in orienting, specifically by examining neck muscle recruitment evoked by stimulation of the SEF. Neck muscle activity was recorded from multiple muscles in two monkeys during SEF stimulation (100 μA, 150-300 ms, 300 Hz, with the head restrained or unrestrained) delivered 200 ms into a gap period, before a visually guided saccade initiated from a central position (doing so avoids confounds between initial position and prestimulation neck muscle activity). SEF stimulation occasionally evoked overt gaze shifts and/or head movements but almost always evoked a response that invariably consisted of a contralateral head turning synergy by increasing activity on contralateral turning muscles and decreasing activity on ipsilateral turning muscles (when background activity was present). Neck muscle responses began well in advance of evoked gaze shifts (~30 ms after stimulation onset, leading gaze shifts by ~40-70 ms on average), started earlier and attained a larger magnitude when accompanied by progressively larger gaze shifts, and persisted on trials without overt gaze shifts. The patterns of evoked neck muscle responses resembled those evoked by frontal eye field (FEF) stimulation, except that response latencies from the SEF were ~10 ms longer. This basic description of the cephalomotor command evoked by SEF stimulation suggests that this structure, while further removed from the motor periphery than the FEF, accesses premotor orienting circuits in the brain stem and spinal cord in a similar manner.

摘要

补充眼区(SEF)被认为能够实现眼球运动控制的更高层次的方面。本实验的目的是更深入地了解 SEF 在定向中的作用,特别是通过检查 SEF 刺激引起的颈部肌肉募集。在视觉引导的扫视从中央位置开始之前(这样做可以避免初始位置和刺激前颈部肌肉活动之间的混淆),在间隙期间将 SEF 刺激(100 μA,150-300 ms,300 Hz)递送至 200 ms,在两只猴子的多个颈部肌肉中记录头部受约束或不受约束时的肌肉活动。SEF 刺激偶尔会引起明显的眼球运动和/或头部运动,但几乎总是会引起反应,该反应始终由对侧头部转动协同作用组成,通过增加对侧转动肌肉的活动并减少同侧转动肌肉的活动(当存在背景活动时)。颈部肌肉反应在诱发的眼球运动之前很早就开始(刺激开始后约 30 ms,平均领先眼球运动约 40-70 ms),当伴有逐渐增大的眼球运动时,反应开始得更早,幅度更大,并且在没有明显眼球运动的试验中持续存在。诱发颈部肌肉反应的模式类似于额眼区(FEF)刺激引起的模式,只是 SEF 的反应潜伏期长约 10 ms。SEF 刺激引起的这种基本描述的头动命令表明,该结构虽然离运动外围比 FEF 更远,但以类似的方式访问脑干和脊髓中的运动前定向回路。

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