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首页> 外文期刊>Frontiers in Psychology >Parallel Distractor Rejection as a Binding Mechanism in Search
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Parallel Distractor Rejection as a Binding Mechanism in Search

机译:平行牵开器拒绝作为搜索中的绑定机制

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摘要

The relatively common experimental visual search task of finding a red X amongst red O’s and green X’s (conjunction search) presents the visual system with a binding problem. Illusory conjunctions (ICs) of features across objects must be avoided and only features present in the same object bound together. Correct binding into unique objects by the visual system may be promoted, and ICs minimized, by inhibiting the locations of distractors possessing non-target features (e.g., Treisman and Sato, 1990). Such parallel rejection of interfering distractors leaves the target as the only item competing for selection; thus solving the binding problem. In the present article we explore the theoretical and empirical basis of this process of active distractor inhibition in search. Specific experiments that provide strong evidence for a process of active distractor inhibition in search are highlighted. In the final part of the article we consider how distractor inhibition, as defined here, may be realized at a neurophysiological level (Treisman and Sato, 1990).
机译:相对常见的实验性视觉搜索任务是在红色O和绿色X之间寻找红色X(合取搜索),这给视觉系统带来了束缚问题。必须避免跨对象的特征的虚假连接(IC),并且仅将存在于同一对象中的特征绑定在一起。通过抑制具有非目标特征的干扰物的位置,可以促进视觉系统正确结合到独特的物体中,并使IC最小化(例如Treisman和Sato,1990)。干扰干扰物的这种并行排除使目标成为竞争选择的唯一项目。从而解决了绑定问题。在本文中,我们探索了主动干扰物抑制搜索过程的理论和经验基础。着重强调了为实验中主动干扰物抑制过程提供有力证据的特定实验。在本文的最后部分,我们考虑如何在神经生理学水平上实现此处定义的干扰物抑制(Treisman和Sato,1990)。

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