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人类知觉学习的感觉阈值与神经生理学关联

Sensory thresholds and neurophysiological correlates of human perceptual learning.

作者信息

Skrandies W, Lang G, Jedynak A

机构信息

Institute of Physiology, Justus-Liebig University, Giessen, FRG.

出版信息

Spat Vis. 1996;9(4):475-89. doi: 10.1163/156856896x00213.

Abstract

The repeated presentation of visual targets yields significant improvements of psychophysical thresholds, and in the present paper corresponding alterations in neurophysiological activity of the human brain are reported. A group of 23 healthy adults was investigated in a psychophysical experiment in which hyperacuity thresholds were determined repeatedly for up to about 25 min with vertically and horizontally oriented targets. Evoked brain activity was recorded during the same experimental session from 30 electrodes over the occipital brain areas. For each subject mean potentials were computed offline for two conditions corresponding to "before learning' (i.e. the first half of the experiment) and "after learning' (i.e. the second half of the experiment), and visual evoked brain activity was compared between these conditions. In the psychophysical experiments vernier thresholds decreased significantly with time, and this improvement in performance could be confirmed in a control session after an interval of 9 weeks. All changes in discrimination performance were specifically bound to stimulus orientation. Learning effects were also observed in electrical brain activity, which displayed significantly smaller component latencies and larger amplitudes as a function of training time. In addition, learning affected the topography of the evoked potential fields suggesting that cortical neurons are activated in a different way before and after perceptual learning.

摘要

视觉目标的重复呈现会使心理物理学阈值得到显著改善,本文报告了人类大脑神经生理活动的相应变化。在一项心理物理学实验中,对一组23名健康成年人进行了研究,在该实验中,使用垂直和水平方向的目标,反复测定超敏锐度阈值,长达约25分钟。在同一实验过程中,从枕叶脑区上方的30个电极记录诱发的脑活动。对于每个受试者,离线计算对应于“学习前”(即实验的前半部分)和“学习后”(即实验的后半部分)两种条件下的平均电位,并比较这两种条件下的视觉诱发脑活动。在心理物理学实验中,游标阈值随时间显著降低,并且在9周的间隔后的对照实验中可以证实这种性能的改善。辨别性能的所有变化都与刺激方向有特定的关联。在脑电活动中也观察到了学习效应,其显示出随着训练时间的推移,成分潜伏期显著缩短,振幅增大。此外,学习影响了诱发电位场的地形图,表明在知觉学习前后,皮层神经元以不同的方式被激活。

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