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大脑中的非视网膜拓扑视觉处理

Nonretinotopic visual processing in the brain.

作者信息

Melcher David, Morrone Maria Concetta

机构信息

Center for Mind/Brain Sciences (CIMeC),University of Trento,Rovereto,Italy.

Department of Translational Research on New Technologies in Medicine and Surgery,University of Pisa,Pisa,Italy.

出版信息

Vis Neurosci. 2015 Jan;32:E017. doi: 10.1017/S095252381500019X.

Abstract

A basic principle in visual neuroscience is the retinotopic organization of neural receptive fields. Here, we review behavioral, neurophysiological, and neuroimaging evidence for nonretinotopic processing of visual stimuli. A number of behavioral studies have shown perception depending on object or external-space coordinate systems, in addition to retinal coordinates. Both single-cell neurophysiology and neuroimaging have provided evidence for the modulation of neural firing by gaze position and processing of visual information based on craniotopic or spatiotopic coordinates. Transient remapping of the spatial and temporal properties of neurons contingent on saccadic eye movements has been demonstrated in visual cortex, as well as frontal and parietal areas involved in saliency/priority maps, and is a good candidate to mediate some of the spatial invariance demonstrated by perception. Recent studies suggest that spatiotopic selectivity depends on a low spatial resolution system of maps that operates over a longer time frame than retinotopic processing and is strongly modulated by high-level cognitive factors such as attention. The interaction of an initial and rapid retinotopic processing stage, tied to new fixations, and a longer lasting but less precise nonretinotopic level of visual representation could underlie the perception of both a detailed and a stable visual world across saccadic eye movements.

摘要

视觉神经科学的一个基本原则是神经感受野的视网膜拓扑组织。在此,我们综述视觉刺激非视网膜拓扑处理的行为学、神经生理学和神经影像学证据。一些行为学研究表明,除了视网膜坐标外,知觉还取决于物体或外部空间坐标系。单细胞神经生理学和神经影像学都提供了证据,证明注视位置对神经放电的调制以及基于颅顶或空间拓扑坐标对视觉信息的处理。在视觉皮层以及参与显著性/优先级图谱的额叶和顶叶区域,已经证实了与眼球扫视运动相关的神经元空间和时间特性的瞬时重新映射,这是介导知觉所表现出的一些空间不变性的一个很好的候选因素。最近的研究表明,空间拓扑选择性取决于一个低空间分辨率的图谱系统,该系统的运行时间框架比视网膜拓扑处理更长,并且受到诸如注意力等高级认知因素的强烈调制。与新注视相关的初始快速视网膜拓扑处理阶段与持续时间更长但不太精确的非视网膜拓扑视觉表征水平之间的相互作用,可能是在眼球扫视运动过程中对详细且稳定的视觉世界进行感知的基础。

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