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注意力集中注视对额叶眼区电刺激诱发的眼动的影响。

The effect of attentive fixation on eye movements evoked by electrical stimulation of the frontal eye fields.

作者信息

Goldberg M E, Bushnell M C, Bruce C J

出版信息

Exp Brain Res. 1986;61(3):579-84. doi: 10.1007/BF00237584.

Abstract

Electrical stimulation of the frontal eye fields of the rhesus monkey evokes saccadic eye movements. Both the amplitude of electrically elicited saccades and the threshold current for eliciting them are primarily determined by the location of the stimulating electrode within the frontal eye fields; however, threshold and amplitude also are systematically affected by the monkey's behavioral state when the stimulation is applied. If the monkey is alert, but not performing a task, saccade amplitudes are largest and thresholds are lowest. Conversely, if the monkey actively fixates a visual target, elicited saccades are smaller and threshold currents are higher. Saccades evoked during fixation have slower velocities appropriate for their reduced amplitude. Phase plane plots of eye velocity versus eye position indicate that these saccades are originally programmed to be smaller and slower, and hence are not large saccades voluntarily braked in mid-flight. As opposed to their amplitude and threshold, the direction of electrically evoked saccades is unaffected by the state of fixation. The state of attentive fixation, but not the visual fixation target itself, is the responsible factor for these effects. These results suggest that there is a difference between the state of active fixation and the state of having the eye still in the orbit without active fixation. The oculomotor system in the latter case is relatively more susceptible to signals from the cerebral cortex.

摘要

对恒河猴额叶眼区进行电刺激会诱发眼球的快速扫视运动。电刺激诱发的扫视幅度以及诱发这些扫视的阈值电流,主要取决于额叶眼区内刺激电极的位置;然而,当施加刺激时,阈值和幅度也会受到猴子行为状态的系统性影响。如果猴子处于警觉状态但未执行任务,扫视幅度最大且阈值最低。相反,如果猴子主动注视一个视觉目标,诱发的扫视会更小且阈值电流更高。在注视过程中诱发的扫视速度较慢,与其减小的幅度相适应。眼速度与眼位置的相平面图表明,这些扫视最初被设定得更小、更慢,因此并非是在飞行中途被主动制动的大扫视。与扫视幅度和阈值不同,电刺激诱发的扫视方向不受注视状态的影响。引起这些效应的因素是专注注视状态,而非视觉注视目标本身。这些结果表明,主动注视状态与眼球静止于眼眶内而无主动注视的状态之间存在差异。在后一种情况下,动眼系统相对更容易受到来自大脑皮层信号的影响。

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