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通过对猕猴V1区进行微刺激来延迟视觉引导的眼跳:延迟场的空间特性

Delaying visually guided saccades by microstimulation of macaque V1: spatial properties of delay fields.

作者信息

Tehovnik Edward J, Slocum Warren M, Schiller Peter H

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, E25-634, Cambridge, MA 02139, USA.

出版信息

Eur J Neurosci. 2005 Nov;22(10):2635-43. doi: 10.1111/j.1460-9568.2005.04454.x.

Abstract

Electrical microstimulation of macaque primary visual cortex (area V1) is known to delay the execution of saccadic eye movements made to a punctate visual target placed into the receptive field of the stimulated neurons. We examined the spatial extent of this delay effect, which we call a delay field, by placing a 0.2 degrees visual target at various locations relative to the receptive field of the stimulated neurons and by stimulating different sites within the operculum of V1. A 100-ms train of stimulation consisting of current pulses at or less than 100 microA was delivered immediately before monkeys generated a saccadic eye movement to the visual target. The region of tissue activated was within 0.5 mm from the electrode tip. The depth of stimulation for a given site ranged from 0.9 to 2.0 mm below the cortical surface. The location of the receptive fields of the stimulated neurons ranged from 1.8 to 4.4 degrees of eccentricity from the center of gaze. Within this range, the size of the delay field increased from 0.1 to 0.55 degrees of visual angle. The shape of the field was roughly circular. The size of the delay field increased as the stimulation site was located further from the foveal representation of V1. These results are consistent with the finding that phosphenes evoked by electrical stimulation of human V1 are circular and increase in size as the stimulating electrode is placed more distant from the foveal representation of V1.

摘要

已知对猕猴初级视觉皮层(V1区)进行电微刺激会延迟向置于受刺激神经元感受野内的点状视觉目标做出的扫视眼动的执行。我们通过将一个0.2度的视觉目标相对于受刺激神经元的感受野放置在不同位置,并刺激V1区盖区内的不同位点,来研究这种延迟效应的空间范围,我们将其称为延迟场。在猴子向视觉目标产生扫视眼动之前,立即给予一串由100微安及以下的电流脉冲组成的100毫秒刺激。被激活的组织区域在距电极尖端0.5毫米范围内。给定位点的刺激深度在皮层表面以下0.9至2.0毫米之间。受刺激神经元的感受野位置与注视中心的偏心度范围为1.8至4.4度。在此范围内,延迟场的大小从0.1度视角增加到0.55度视角。场的形状大致为圆形。延迟场的大小随着刺激位点离V1区的中央凹表征越远而增加。这些结果与以下发现一致:对人类V1区进行电刺激诱发的光幻视是圆形的,并且随着刺激电极离V1区的中央凹表征越远,其大小会增加。

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