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Perisaccadic Remapping and Rescaling of Visual Responses in Macaque Superior Colliculus

机译:猕猴上腔囊的视周反应性重映射和视标度重定

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摘要

Visual neurons have spatial receptive fields that encode the positions of objects relative to the fovea. Because foveate animals execute frequent saccadic eye movements, this position information is constantly changing, even though the visual world is generally stationary. Interestingly, visual receptive fields in many brain regions have been found to exhibit changes in strength, size, or position around the time of each saccade, and these changes have often been suggested to be involved in the maintenance of perceptual stability. Crucial to the circuitry underlying perisaccadic changes in visual receptive fields is the superior colliculus (SC), a brainstem structure responsible for integrating visual and oculomotor signals. In this work we have studied the time-course of receptive field changes in the SC. We find that the distribution of the latencies of SC responses to stimuli placed outside the fixation receptive field is bimodal: The first mode is comprised of early responses that are temporally locked to the onset of the visual probe stimulus and stronger for probes placed closer to the classical receptive field. We suggest that such responses are therefore consistent with a perisaccadic rescaling, or enhancement, of weak visual responses within a fixed spatial receptive field. The second mode is more similar to the remapping that has been reported in the cortex, as responses are time-locked to saccade onset and stronger for stimuli placed in the postsaccadic receptive field location. We suggest that these two temporal phases of spatial updating may represent different sources of input to the SC.
机译:视觉神经元具有对物体相对于中央凹的位置进行编码的空间感受野。因为有爱心的动物经常进行眼球的眼跳运动,所以即使视觉世界通常是静止的,该位置信息也在不断变化。有趣的是,已发现许多大脑区域的视觉感受力在每次扫视时表现出强度,大小或位置的变化,并且经常建议这些变化与维持知觉稳定性有关。上丘(SC)是视神经束周周变化基础的电路的关键,上丘(SC)是负责整合视觉和动眼信号的脑干结构。在这项工作中,我们研究了SC中感受野变化的时程。我们发现SC响应对放置在固定接受野外的刺激的潜伏期分布是双峰的:第一种模式由早期响应组成,这些响应在时间上被锁定在视觉探针刺激的发作上,而对于更靠近探针的刺激则更强。古典接受领域。我们建议,这种反应因此与固定空间接受场内的视力减弱或视觉增强有关。第二种模式与皮质中已报道的重新映射更相似,因为响应被锁定在扫视发作的时间上,并且对于放置在结ad后感受野位置的刺激更强。我们建议空间更新的这两个时间阶段可能代表SC的不同输入源。

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