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知觉负载调节注意瞬脱期间出现在任务无关位置的干扰项的加工。

Perceptual load modulates the processing of distractors presented at task-irrelevant locations during the attentional blink.

作者信息

Elliott James C, Giesbrecht Barry

机构信息

Department of Psychology, University of California, Santa Barbara, CA 93106, USA.

出版信息

Atten Percept Psychophys. 2010 Nov;72(8):2106-14. doi: 10.3758/bf03196687.

Abstract

The distribution of attention in both space and time is critical for processing our dynamic environment. Studies of spatial attention suggest that the distribution of attention is decreased when the perceptual load of a task increases, resulting in decreased processing of task-irrelevant distractors. Studies of the attentional blink (AB) suggest that the temporal distribution of attention also influences distractor processing, such that distractor processing increases during the AB relative to outside the AB (Jiang & Chun, 2001). Two experiments are reported in which the extent to which the difficulty of the first target task (T1) modulates the processing of task-irrelevant distractors during the AB was tested. To investigate this issue, both the first and second target tasks (T1 and T2) required identifying a central stimulus that was flanked by low-load or high-load distractors. Consistent with previous studies of the AB, there was evidence of more distractor processing during the AB than outside the AB. Critically, however, the interference caused by distractors presented simultaneously with T2 during the AB was reduced when T1 perceptual load was high relative to when it was low. These results suggest that increasing T1 perceptual load decreases distractor processing during the AB and that perceptual processes influence both the temporal and spatial distribution of attention.

摘要

注意力在空间和时间上的分配对于处理我们的动态环境至关重要。空间注意力研究表明,当任务的感知负荷增加时,注意力的分配会减少,从而导致对与任务无关的干扰物的处理减少。注意瞬脱(AB)研究表明,注意力的时间分配也会影响干扰物处理,使得在注意瞬脱期间相对于注意瞬脱之外,干扰物处理增加(Jiang & Chun,2001)。本文报告了两个实验,测试了第一个目标任务(T1)的难度在多大程度上调节了注意瞬脱期间与任务无关的干扰物的处理。为了研究这个问题,第一个和第二个目标任务(T1和T2)都要求识别一个中央刺激,该刺激两侧是低负荷或高负荷干扰物。与先前对注意瞬脱的研究一致,有证据表明在注意瞬脱期间比在注意瞬脱之外有更多的干扰物处理。然而,关键的是,当T1感知负荷高时,与T2同时呈现的干扰物在注意瞬脱期间引起的干扰相对于T1感知负荷低时有所减少。这些结果表明,增加T1感知负荷会减少注意瞬脱期间的干扰物处理,并且感知过程会影响注意力的时间和空间分配。

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