前额皮质的视觉注意力。

IF 5 2区 医学 Q1 NEUROSCIENCES Annual Review of Vision Science Pub Date : 2022-06-09 DOI:10.1146/annurev-vision-100720-031711
J. Martinez-Trujillo
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引用次数: 8

摘要

自愿注意力选择与行为相关的信号进行进一步处理,同时过滤掉干扰信号。据报道,在灵长类动物视觉处理流的多个区域,自愿视觉注意的神经相关性最早和最强的影响都集中在前额叶皮层。在这篇文章中,我回顾了支持以下假设的证据,即引导自主注意力分配的信号出现在前额叶皮层的区域,并到达上游区域,根据其行为相关性来调节传入视觉信息的处理。位于弓形沟和额视野前方和后方的区域产生引导空间注意力分配的信号。位于弓形沟前方和腹侧的区域产生基于特征的注意力信号。额前微循环特别适合支持自主注意力,因为它们能够产生注意力模板信号并实现信号门控,并且与大脑其他部分有广泛的连接。《视觉科学年度评论》第8卷预计最终在线出版日期为2022年9月。请参阅http://www.annualreviews.org/page/journal/pubdates用于修订估算。
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Visual Attention in the Prefrontal Cortex.
Voluntary attention selects behaviorally relevant signals for further processing while filtering out distracter signals. Neural correlates of voluntary visual attention have been reported across multiple areas of the primate visual processing streams, with the earliest and strongest effects isolated in the prefrontal cortex. In this article, I review evidence supporting the hypothesis that signals guiding the allocation of voluntary attention emerge in areas of the prefrontal cortex and reach upstream areas to modulate the processing of incoming visual information according to its behavioral relevance. Areas located anterior and dorsal to the arcuate sulcus and the frontal eye fields produce signals that guide the allocation of spatial attention. Areas located anterior and ventral to the arcuate sulcus produce signals for feature-based attention. Prefrontal microcircuits are particularly suited to supporting voluntary attention because of their ability to generate attentional template signals and implement signal gating and their extensive connectivity with the rest of the brain. Expected final online publication date for the Annual Review of Vision Science, Volume 8 is September 2022. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.
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来源期刊
Annual Review of Vision Science
Annual Review of Vision Science Medicine-Ophthalmology
CiteScore
11.10
自引率
1.70%
发文量
19
期刊介绍: The Annual Review of Vision Science reviews progress in the visual sciences, a cross-cutting set of disciplines which intersect psychology, neuroscience, computer science, cell biology and genetics, and clinical medicine. The journal covers a broad range of topics and techniques, including optics, retina, central visual processing, visual perception, eye movements, visual development, vision models, computer vision, and the mechanisms of visual disease, dysfunction, and sight restoration. The study of vision is central to progress in many areas of science, and this new journal will explore and expose the connections that link it to biology, behavior, computation, engineering, and medicine.
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