首页> 外文期刊>Journal of Neurophysiology >Role of frontal eye fields in countermanding saccades: visual, movement, and fixation activity.
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Role of frontal eye fields in countermanding saccades: visual, movement, and fixation activity.

机译:额眼视野在对抗扫视中的作用:视觉,运动和注视活动。

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A new approach was developed to investigate the role of visual-, movement-, and fixation-related neural activity in gaze control. We recorded unit activity in the frontal eye fields (FEF), an area in frontal cortex that plays a central role in the production of purposeful eye movements, of monkeys (Macaca mulatta) performing visually and memory-guided saccades. The countermanding paradigm was employed to assess whether single cells generate signals sufficient to control movement production. The countermanding paradigm consists of a task that manipulates the monkeys' ability to withhold planned saccades combined with an analysis based on a race model that provides an estimate of the time needed to cancel the movement that is being prepared. We obtained clear evidence that FEF neurons with eye movement-related activity generate signals sufficient to control the production of gaze shifts. Movement-related activity, which was growing toward a trigger threshold as the saccades were prepared, decayed in response to the stop signal within the time required to cancel the saccade. Neurons with fixation-related activity were less common, but during the countermanding paradigm, these neurons exhibited an equally clear gaze-control signal. Fixation cells that had a pause in firing before a saccade exhibited elevated activity in response to the stop signal within the time that the saccade was cancelled. In contrast to cells with movement or fixation activity, neurons with only visually evoked activity exhibited no evidence of signals sufficient to control the production of gaze shifts. However, a fraction of tonic visual cells exhibited a reduction of activity once a saccade command had been cancelled even though the visual target was still present in the receptive field. These findings demonstrate the use of the countermanding paradigm in identifying neural signatures of motor control and provide new information about the fine balance between gaze shifting and gaze holding mechanisms.
机译:开发了一种新方法来研究视觉,运动和注视相关的神经活动在注视控制中的作用。我们记录了额叶视野(FEF)中的单位活动,额叶皮质是在有目的的眼球运动产生中发挥重要作用的额叶猴,它们在视觉和记忆引导下进行扫视。反向范式被用来评估单个细胞是否产生足以控制运动产生的信号。对抗模式包括操纵猴子保留计划扫视的能力的任务,以及基于种族模型的分析,该模型提供了取消正在准备的运动所需时间的估计。我们获得了明确的证据,具有与眼动相关的活动的FEF神经元产生足以控制凝视转移产生的信号。在准备扫视镜时,与运动相关的活动已朝着触发阈值增长,在取消扫视镜所需的时间内,响应停止信号而衰减。具有固定相关活性的神经元较少见,但在反范式中,这些神经元表现出同样清晰的注视控制信号。在扫视运动之前暂停的固定细胞在扫视运动被取消的时间内,响应于停止信号表现出升高的活性。与具有运动或固定活性的细胞相反,仅具有视觉诱发活性的神经元没有显示出足以控制凝视移位产生的信号的证据。但是,一旦取消了扫视命令,即使视觉目标仍然存在于接受区域中,一小部分的补品视觉细胞的活性也会降低。这些发现证明了反范式在识别运动控制的神经特征中的用途,并提供了有关凝视转移和凝视保持机制之间精细平衡的新信息。

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