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解码揭示了运动知觉学习导致 V3A 的可塑性。

Decoding reveals plasticity in V3A as a result of motion perceptual learning.

机构信息

Department of Cognitive, Linguistic & Psychological Sciences, Brown University, Providence, Rhode Island, United States of America.

出版信息

PLoS One. 2012;7(8):e44003. doi: 10.1371/journal.pone.0044003. Epub 2012 Aug 28.

Abstract

Visual perceptual learning (VPL) is defined as visual performance improvement after visual experiences. VPL is often highly specific for a visual feature presented during training. Such specificity is observed in behavioral tuning function changes with the highest improvement centered on the trained feature and was originally thought to be evidence for changes in the early visual system associated with VPL. However, results of neurophysiological studies have been highly controversial concerning whether the plasticity underlying VPL occurs within the visual cortex. The controversy may be partially due to the lack of observation of neural tuning function changes in multiple visual areas in association with VPL. Here using human subjects we systematically compared behavioral tuning function changes after global motion detection training with decoded tuning function changes for 8 visual areas using pattern classification analysis on functional magnetic resonance imaging (fMRI) signals. We found that the behavioral tuning function changes were extremely highly correlated to decoded tuning function changes only in V3A, which is known to be highly responsive to global motion with human subjects. We conclude that VPL of a global motion detection task involves plasticity in a specific visual cortical area.

摘要

视觉感知学习(VPL)被定义为视觉体验后视觉表现的提高。VPL 通常对训练期间呈现的视觉特征具有高度特异性。这种特异性在行为调谐功能的变化中观察到,调谐功能的最高改善集中在训练特征上,最初被认为是与 VPL 相关的早期视觉系统变化的证据。然而,关于 VPL 所基于的可塑性是否发生在视皮层内,神经生理学研究的结果一直存在很大争议。这种争议可能部分归因于缺乏对与 VPL 相关的多个视觉区域的神经调谐功能变化的观察。在这里,我们使用人类受试者,通过对功能磁共振成像(fMRI)信号进行模式分类分析,系统地比较了全局运动检测训练后行为调谐功能的变化与 8 个视觉区域的解码调谐功能变化。我们发现,行为调谐功能的变化与 V3A 的解码调谐功能变化极其高度相关,V3A 是已知对人类的全局运动反应非常敏感的区域。我们的结论是,全局运动检测任务的 VPL 涉及特定视觉皮层区域的可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d02/3429406/e4393548f8d3/pone.0044003.g001.jpg

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