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内隐学习在知觉加工的感觉水平上调节选择性注意。

Implicit learning modulates selective attention at sensory levels of perceptual processing.

作者信息

Couperus Jane W

机构信息

Hampshire College, Amherst, Massachusetts 01002, USA.

出版信息

Atten Percept Psychophys. 2009 Feb;71(2):342-51. doi: 10.3758/APP.71.2.342.

Abstract

Electrophysiological evidence suggests that attention can be modulated as early as 100 msec after stimulus presentation. However, it is not clear whether these changes are based primarily on stimulus properties such as perceptual load (i.e., the level of perceptual difficulty), or other properties, such as general attentional set or learned expectations concerning perceptual load. Using event-related potentials, this study examined how implicit learning of perceptual load conditions modulates selective attention at sensory levels of perceptual analysis. The results show significant differences in P1 amplitude recorded over occipital areas of the brain as a function of learned expectations of perceptual load, only when perceptual load could be reliably predicted by the preceding stimuli. Moreover, differences in processing were found when both low and high perceptual load conditions could be predicted. These findings suggest that implicit learning modulates the allocation of attention at early stages of perceptual processing.

摘要

电生理证据表明,注意力早在刺激呈现后100毫秒就可以被调节。然而,尚不清楚这些变化主要是基于诸如知觉负荷(即知觉难度水平)等刺激属性,还是基于其他属性,如一般注意定势或关于知觉负荷的习得期望。本研究利用事件相关电位,考察了知觉负荷条件的内隐学习如何在知觉分析的感觉水平上调节选择性注意。结果显示,仅当先前刺激能够可靠地预测知觉负荷时,大脑枕叶区域记录到的P1波幅会因对知觉负荷的习得期望而出现显著差异。此外,当低知觉负荷和高知觉负荷条件都能被预测时,还发现了加工过程中的差异。这些发现表明,内隐学习在知觉加工的早期阶段调节注意力的分配。

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