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Temporal Binding and Segmentation in Visual Search: A Computational Neuroscience Analysis

机译:视觉搜索中的时间绑定和分段:计算神经科学分析

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Human visual search operates not only over space but also over time, as old items remain in the visual field and new items appear. Preview search (where one set of distractors appears before the onset of a second set) has been used as a paradigm to study search over time and space [Watson, D. G., & Humphreys, G. W. Visual marking: Prioritizing selection for new objects by top–down attentional inhibition of old objects. Psychological Review, 104, 90–122, 1997], with participants showing efficient search when old distractors can be ignored and new targets prioritized. The benefits of preview search are lost, however, if a temporal gap is introduced between a first presentation of the old items and the re-presentation of all the items in the search display [Kunar, M. A., Humphreys, G. W., & Smith, K. J. History matters: The preview benefit in search is not onset capture. Psychological Science, 14, 181–185, 2003a], consistent with the old items being bound by temporal onset to the new stimuli. This effect of temporal binding can be eliminated if the old items reappear briefly before the new items, indicating also a role for the memory of the old items. Here we simulate these effects of temporal coding in search using the spiking search over time and space model [Mavritsaki, E., Heinke, D., Allen, H., Deco, G., & Humphreys, G. W. Bridging the gap between physiology and behavior: Evidence from the sSoTS model of human visual attention. Psychological Review, 118, 3–41, 2011]. We show that a form of temporal binding by new onsets has to be introduced to the model to simulate the effects of a temporal gap, but that effects of the memory of the old item can stem from continued neural suppression across a temporal gap. We also show that the model can capture the effects of brain lesion on preview search under the different temporal conditions. The study provides a proof-of-principle analysis that neural suppression and temporal binding can be sufficient to account for human search over time and space.
机译:人类视觉搜索不仅在空间上而且在时间上进行操作,因为旧项目保留在视野中,而新项目出现。预览搜索(其中一组干扰物在第二组干扰物出现之前出现)已用作研究时间和空间搜索的范例[Watson,DG,&Humphreys,GW视觉标记:按顶部优先选择新对象降低对旧物件的注意力抑制。 Psychological Review,104,90–122,1997],当旧的干扰物可以忽略而新的目标被优先考虑时,参与者表现出有效的搜索。但是,如果在旧项目的首次展示与搜索显示中所有项目的重新展示之间引入了时间间隙,则预览搜索的好处就会丧失[Kunar,MA,Humphreys,GW,&Smith,KJ历史很重要:搜索中的预览优势不是开始捕获。心理科学,第14卷,第181-185页,2003a],这与旧项目在时间上对新刺激的束缚是一致的。如果旧项目在新项目之前短暂地再次出现,则可以消除时间绑定的这种影响,这也表明了旧项目的记忆作用。在这里,我们使用时空模型[Mavritsaki,E.,Heinke,D.,Allen,H.,Deco,G.,&Humphreys,GW填补了生理学和生物学之间的空白,行为:来自人类视觉注意力的sSoTS模型的证据。心理评论,2011年,第118卷,第3–41页]。我们表明,必须通过新的发作将一种时间绑定形式引入模型中,以模拟时间间隙的影响,但是旧项记忆的影响可能源于持续跨越时间间隙的神经抑制。我们还表明,该模型可以捕获在不同时间条件下预览预览搜索中脑部病变的影响。这项研究提供了原理证明分析,即神经抑制和时间约束足以解释人类在时间和空间上的搜索。

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