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Physiological correlates of perceptual learning in monkey V1 and V2.猴子初级视皮层(V1)和次级视皮层(V2)中知觉学习的生理相关性
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Practising orientation identification improves orientation coding in V1 neurons.进行方向识别训练可改善初级视觉皮层(V1)神经元的方向编码。
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知觉学习对猴子视觉皮层V4区神经元反应的影响。

The effect of perceptual learning on neuronal responses in monkey visual area V4.

作者信息

Yang Tianming, Maunsell John H R

机构信息

Baylor College of Medicine and Howard Hughes Medical Institute, Houston, Texas 77030, USA.

出版信息

J Neurosci. 2004 Feb 18;24(7):1617-26. doi: 10.1523/JNEUROSCI.4442-03.2004.

DOI:10.1523/JNEUROSCI.4442-03.2004
PMID:14973244
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6730469/
Abstract

Previous studies have shown that perceptual learning can substantially alter the response properties of neurons in the primary somatosensory and auditory cortices. Although psychophysical studies suggest that perceptual learning induces similar changes in primary visual cortex (V1), studies that have measured the response properties of individual neurons have failed to find effects of the size described for the other sensory systems. We have examined the effect of learning on neuronal response properties in a visual area that lies at a later stage of cortical processing, area V4. Adult macaque monkeys were trained extensively on orientation discrimination at a specific retinal location using a narrow range of orientations. During the course of training, the subjects achieved substantial improvement in orientation discrimination that was primarily restricted to the trained location. After training, neurons in V4 with receptive fields overlapping the trained location had stronger responses and narrower orientation tuning curves than neurons with receptive fields in the opposite, untrained hemifield. The changes were most prominent for neurons that preferred orientations close to the trained range of orientations. These results provide the first demonstration of perceptual learning modifying basic neuronal response properties at an intermediate level of visual cortex and give insights into the distribution of plasticity across adult visual cortex.

摘要

先前的研究表明,知觉学习能够显著改变初级躯体感觉皮层和听觉皮层中神经元的反应特性。尽管心理物理学研究表明,知觉学习会在初级视觉皮层(V1)引发类似的变化,但那些测量单个神经元反应特性的研究却未能发现如其他感觉系统所描述的那种程度的影响。我们研究了学习对处于皮层加工后期阶段的一个视觉区域——V4区中神经元反应特性的影响。成年猕猴在特定视网膜位置使用窄范围的方向进行了大量的方向辨别训练。在训练过程中,受试者在方向辨别上取得了显著进步,且主要局限于训练位置。训练后,V4区中感受野与训练位置重叠的神经元比感受野位于对侧未训练半视野的神经元具有更强的反应和更窄的方向调谐曲线。对于偏好接近训练方向范围的方向的神经元,这些变化最为显著。这些结果首次证明了知觉学习在视觉皮层的中间水平改变了基本的神经元反应特性,并为成年视觉皮层中可塑性的分布提供了见解。