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先前被忽略的单一音选择受损:突显映射变化的证据。

Impaired selection of a previously ignored singleton: Evidence for salience map plastic changes.

机构信息

Center for Mind/Brain Sciences (CIMeC), University of Trento, Trento, Italy.

Department of Psychology, University of Bologna, Bologna, Italy.

出版信息

Q J Exp Psychol (Hove). 2022 Jun;75(6):1114-1120. doi: 10.1177/17470218211047859. Epub 2021 Oct 5.

Abstract

Spatial suppression of a salient colour distractor is achievable via statistical learning. Distractor suppression attenuates unwanted capture, but at the same time target selection at the most likely distractor location is impaired. This result corroborates the idea that the distractor salience is attenuated via inhibitory signals applied to the corresponding location in the priority map. What is less clear, however, is whether lingering impairment in target selection when the distractor is removed are due to the proactive strategic maintenance of the suppressive signal at the previous most likely distractor location or result from the fact that suppression has induced plastic changes in the priority map, probably changing input weights. Here, we provide evidence that supports the latter possibility, as we found that impairment in target selection persisted even when the singleton distractor in the training phase became the target of search in a subsequent test phase. This manipulation rules out the possibility that the observed impairments at the previous most likely distractor location were caused by a signal suppression maintained at this location. Rather, the results reveal that the inhibitory signals cause long-lasting changes in the priority map, which affect future computation of the target salience at the same location, and therefore the efficiency of attentional selection.

摘要

通过统计学习可以实现对显著颜色干扰物的空间抑制。干扰抑制减弱了不想要的捕获,但同时也损害了在最可能的干扰物位置的目标选择。这一结果证实了这样一种观点,即通过施加到优先级图中相应位置的抑制信号来减弱干扰物的显著度。然而,不太清楚的是,当去除干扰物时,目标选择的持续损害是由于先前最可能的干扰物位置上抑制信号的主动策略性维持,还是由于抑制作用导致了优先级图中的塑性变化,可能改变了输入权重。在这里,我们提供了支持后一种可能性的证据,因为我们发现,即使在训练阶段的单一干扰物在随后的测试阶段成为搜索的目标时,目标选择的损害仍然存在。这种操作排除了在先前最可能的干扰物位置观察到的损害是由该位置维持的信号抑制引起的可能性。相反,结果表明抑制信号导致优先级图中产生持久的变化,从而影响同一位置上目标显著度的未来计算,因此影响注意力选择的效率。

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