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注意调节在视觉皮层中是在知觉学习过程中被改变的。

Attentional modulation in visual cortex is modified during perceptual learning.

机构信息

Department of Psychology, Royal Holloway University of London, Egham, Surrey TW20 0EX, UK.

出版信息

Neuropsychologia. 2011 Dec;49(14):3898-907. doi: 10.1016/j.neuropsychologia.2011.10.007. Epub 2011 Oct 14.

Abstract

Practicing a visual task commonly results in improved performance. Often the improvement does not transfer well to a new retinal location, suggesting that it is mediated by changes occurring in early visual cortex, and indeed neuroimaging and neurophysiological studies both demonstrate that perceptual learning is associated with altered activity in visual cortex. Theoretical treatments tend to invoke neuroplasticity that refines early sensory processing. An alternative possibility is that performance is improved because of an altered attentional strategy and that the changes in early visual areas reflect locally altered top-down attentional modulation. To test this idea, we have used functional MRI to examine changes in attentional modulation in visual cortex while participants learn an orientation discrimination task. By examining activity in visual cortex during the preparatory period when the participant has been cued to attend to an upcoming stimulus, we isolated the top-down modulatory signal received by the visual cortex. We show that this signal changes as learning progresses, possibly reflecting gradual automation of the task. By manipulating task difficulty, we show that the change mirrors performance, occurring most quickly for easier stimuli. The effects were seen only at the retinal locus of the stimulus, ruling out a generalized change in alertness. The results suggest that spatial attention changes during perceptual learning and that this may account for some of the concomitant changes seen in visual cortex.

摘要

练习视觉任务通常会提高表现。通常情况下,这种提高并不能很好地转移到新的视网膜位置,这表明它是由早期视觉皮层发生的变化介导的,事实上,神经影像学和神经生理学研究都表明,知觉学习与视觉皮层活动的改变有关。理论处理方法往往会调用神经可塑性,以完善早期的感官处理。另一种可能性是,由于注意力策略的改变,表现得到了提高,而早期视觉区域的变化反映了局部注意力自上而下调制的改变。为了验证这一观点,我们使用功能磁共振成像(fMRI)来研究参与者在学习方位辨别任务时视觉皮层注意力调制的变化。通过检查参与者在即将出现刺激的提示期间的预备期内视觉皮层的活动,我们分离出了视觉皮层接收到的自上而下的调制信号。我们表明,随着学习的进展,这种信号发生了变化,这可能反映了任务的逐渐自动化。通过操纵任务难度,我们表明这种变化反映了表现,对于较容易的刺激变化最快。这些效果仅在刺激的视网膜位置出现,排除了警觉性的普遍变化。结果表明,在知觉学习过程中空间注意力发生了变化,这可能解释了视觉皮层中同时发生的一些变化。

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