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视觉周边区域会永葆“年轻”吗?

Are visual peripheries forever young?

作者信息

Burnat Kalina

机构信息

Laboratory of Neuroplasticity, Department of Molecular and Cellular Neurobiology, Nencki Institute of Experimental Biology, Pasteur 3, 02-093 Warsaw, Poland.

出版信息

Neural Plast. 2015;2015:307929. doi: 10.1155/2015/307929. Epub 2015 Apr 6.

Abstract

The paper presents a concept of lifelong plasticity of peripheral vision. Central vision processing is accepted as critical and irreplaceable for normal perception in humans. While peripheral processing chiefly carries information about motion stimuli features and redirects foveal attention to new objects, it can also take over functions typical for central vision. Here I review the data showing the plasticity of peripheral vision found in functional, developmental, and comparative studies. Even though it is well established that afferent projections from central and peripheral retinal regions are not established simultaneously during early postnatal life, central vision is commonly used as a general model of development of the visual system. Based on clinical studies and visually deprived animal models, I describe how central and peripheral visual field representations separately rely on early visual experience. Peripheral visual processing (motion) is more affected by binocular visual deprivation than central visual processing (spatial resolution). In addition, our own experimental findings show the possible recruitment of coarse peripheral vision for fine spatial analysis. Accordingly, I hypothesize that the balance between central and peripheral visual processing, established in the course of development, is susceptible to plastic adaptations during the entire life span, with peripheral vision capable of taking over central processing.

摘要

本文提出了周边视觉终身可塑性的概念。中央视觉处理被认为对人类的正常感知至关重要且不可替代。虽然周边处理主要携带有关运动刺激特征的信息,并将中央凹注意力重新导向新物体,但它也可以接管中央视觉的典型功能。在此,我回顾了功能、发育和比较研究中发现的周边视觉可塑性的数据。尽管人们已经充分认识到,在出生后早期,中央和周边视网膜区域的传入投射并非同时建立,但中央视觉通常被用作视觉系统发育的一般模型。基于临床研究和视觉剥夺动物模型,我描述了中央和周边视野表征如何分别依赖早期视觉经验。周边视觉处理(运动)比中央视觉处理(空间分辨率)更容易受到双眼视觉剥夺的影响。此外,我们自己的实验结果表明,粗糙的周边视觉可能被用于精细的空间分析。因此,我假设在发育过程中建立的中央和周边视觉处理之间的平衡在整个生命周期中都易于发生可塑性适应,周边视觉能够接管中央处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d88/4402573/f107bd50bf3a/NP2015-307929.001.jpg

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