Learning to ignore visual onset distractors hinges on a configuration-dependent coordinates system.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-10-01 Epub Date: 2024-08-15 DOI:10.1037/xhp0001236
Massimo Turatto, Matteo De Tommaso, Leonardo Chelazzi
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引用次数: 0

Abstract

Decrement of attentional capture elicited by visual onset distractors, consistent with habituation, has been extensively characterized over the past several years. However, the type of spatial frame of reference according to which such decrement occurs in the brain remains unknown. Here, four related experiments are reported to shed light on this issue. Observers were asked to discriminate the orientation of a titled line while ignoring a salient but task-irrelevant visual onset that occurred on some trials. The experiments all involved an initial habituation phase, during which capture elicited by the onset distractor progressively decreased, as in prior studies. Importantly, in all experiments, the location of the target and the distractor remained fixed during this phase. After habituation was established, in a final test phase of the various experiments, the spatial arrangement of the target and the distractor was changed to test for the relative contribution to habituation of retinotopic, spatiotopic, and configuration-dependent visual representations. Experiment 1 indicated that spatiotopic representations contribute little, if at all, to the observed decrement in attentional capture. The results from Experiment 2 were compatible with the notion that such capture reduction occurs in either retinotopic- or configuration-specific representations. However, Experiment 3 ruled out the contribution of retinotopic representations, leaving configuration-specific representation as the sole viable interpretation. This conclusion was confirmed by the results of Experiments 4 and 5. In conclusion, visual onset distractors appear to be rejected at a level of the visual hierarchy where visual events are encoded in a configuration-specific or context-dependent manner. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

学习忽略视觉起始分心物取决于一个依赖于构型的坐标系统。
在过去的几年中,人们广泛地描述了由视觉开始分心引起的注意力捕捉下降,这与习惯化是一致的。然而,大脑是根据哪种类型的空间参照系来发生这种减弱的,至今仍是个未知数。本文报告了四项相关实验,以揭示这一问题。实验要求观察者辨别一条有标题的线的方向,同时忽略在某些试验中出现的与任务无关的突出视觉开始。与之前的研究一样,所有的实验都有一个初始的习惯化阶段,在此期间,起始分心物引起的捕捉逐渐减少。重要的是,在所有实验中,目标和分心物的位置在这一阶段都是固定的。习惯化建立后,在不同实验的最后测试阶段,目标和分心物的空间排列被改变,以测试视网膜表象、空间表象和构型依赖性视觉表象对习惯化的相对贡献。实验 1 表明,空间表象对所观察到的注意捕捉下降的贡献很小,如果有的话。实验 2 的结果与视网膜表象或构型特异性表象导致捕捉能力下降的观点一致。然而,实验 3 排除了视网膜表征的作用,使得构型特异性表征成为唯一可行的解释。实验 4 和实验 5 的结果证实了这一结论。总之,在视觉层次结构中,视觉事件是以配置特异性或上下文依赖性的方式进行编码的,在这个层次上,视觉发病分心物似乎会被拒绝。(PsycInfo Database Record (c) 2024 APA, 版权所有)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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