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额叶眼区将与运动、记忆和视觉相关的延迟活动发送至上丘。

Frontal eye field sends delay activity related to movement, memory, and vision to the superior colliculus.

作者信息

Sommer M A, Wurtz R H

机构信息

Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20892-4435, USA.

出版信息

J Neurophysiol. 2001 Apr;85(4):1673-85. doi: 10.1152/jn.2001.85.4.1673.

Abstract

Many neurons within prefrontal cortex exhibit a tonic discharge between visual stimulation and motor response. This delay activity may contribute to movement, memory, and vision. We studied delay activity sent from the frontal eye field (FEF) in prefrontal cortex to the superior colliculus (SC). We evaluated whether this efferent delay activity was related to movement, memory, or vision, to establish its possible functions. Using antidromic stimulation, we identified 66 FEF neurons projecting to the SC and we recorded from them while monkeys performed a Go/Nogo task. Early in every trial, a monkey was instructed as to whether it would have to make a saccade (Go) or not (Nogo) to a target location, which permitted identification of delay activity related to movement. In half of the trials (memory trials), the target disappeared, which permitted identification of delay activity related to memory. In the remaining trials (visual trials), the target remained visible, which permitted identification of delay activity related to vision. We found that 77% (51/66) of the FEF output neurons had delay activity. In 53% (27/51) of these neurons, delay activity was modulated by Go/Nogo instructions. The modulation preceded saccades made into only part of the visual field, indicating that the modulation was movement-related. In some neurons, delay activity was modulated by Go/Nogo instructions in both memory and visual trials and seemed to represent where to move in general. In other neurons, delay activity was modulated by Go/Nogo instructions only in memory trials, which suggested that it was a correlate of working memory, or only in visual trials, which suggested that it was a correlate of visual attention. In 47% (24/51) of FEF output neurons, delay activity was unaffected by Go/Nogo instructions, which indicated that the activity was related to the visual stimulus. In some of these neurons, delay activity occurred in both memory and visual trials and seemed to represent a coordinate in visual space. In others, delay activity occurred only in memory trials and seemed to represent transient visual memory. In the remainder, delay activity occurred only in visual trials and seemed to be a tonic visual response. In conclusion, the FEF sends diverse delay activity signals related to movement, memory, and vision to the SC, where the signals may be used for saccade generation. Downstream transmission of various delay activity signals may be an important, general way in which the prefrontal cortex contributes to the control of movement.

摘要

前额叶皮质内的许多神经元在视觉刺激和运动反应之间表现出持续性放电。这种延迟活动可能有助于运动、记忆和视觉。我们研究了从前额叶皮质的额叶眼区(FEF)发送到上丘(SC)的延迟活动。我们评估了这种传出延迟活动是否与运动、记忆或视觉相关,以确定其可能的功能。使用逆向刺激,我们识别出66个投射到SC的FEF神经元,并在猴子执行Go/NoGo任务时对它们进行记录。在每次试验的早期,指示猴子是否必须向目标位置进行扫视(Go)或不进行扫视(NoGo),这使得能够识别与运动相关的延迟活动。在一半的试验(记忆试验)中,目标消失,这使得能够识别与记忆相关的延迟活动。在其余的试验(视觉试验)中,目标保持可见,这使得能够识别与视觉相关的延迟活动。我们发现77%(51/66)的FEF输出神经元具有延迟活动。在这些神经元中的53%(27/51)中,延迟活动受Go/NoGo指令调制。这种调制仅在向视野的一部分进行扫视之前出现,表明这种调制与运动相关。在一些神经元中,延迟活动在记忆试验和视觉试验中均受Go/NoGo指令调制,并且似乎总体上代表了向何处移动。在其他神经元中,延迟活动仅在记忆试验中受Go/NoGo指令调制,这表明它是工作记忆的一个相关因素,或者仅在视觉试验中受调制,这表明它是视觉注意力的一个相关因素。在47%(24/51)的FEF输出神经元中,延迟活动不受Go/NoGo指令影响,这表明该活动与视觉刺激相关。在其中一些神经元中,延迟活动在记忆试验和视觉试验中均出现,并且似乎代表视觉空间中的一个坐标。在其他神经元中,延迟活动仅在记忆试验中出现,并且似乎代表瞬时视觉记忆。在其余神经元中,延迟活动仅在视觉试验中出现,并且似乎是一种持续性视觉反应。总之,FEF向SC发送与运动、记忆和视觉相关的多种延迟活动信号,这些信号可能用于产生扫视。各种延迟活动信号的下游传递可能是前额叶皮质对运动控制做出贡献的一种重要的、普遍的方式。

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