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The perceptual wink model of non-switching attentional blink tasks

机译:非切换注意力眨眼任务的感知眨眼模型

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摘要

The attentional blink (AB) is a temporary deficit for a second target (T2) when that target appears after a first target (T1). Although sophisticated models have been developed to explain the substantial AB literature in isolation, the current study considers how the AB relates to perceptual dynamics more broadly. We show that the time-course of the AB is closely related to the time course of the transition from positive to negative repetition priming effects in perceptual identification. Many AB tasks involve a switch between a T1 defined in one manner and a T2 defined in a different manner. Other AB tasks are non-switching, with all targets belonging to the same well-known category (e.g., letter targets versus number distractors) or sharing the same perceptual feature. We propose that these non-switching AB tasks reflect perceptual habituation for the target-defining attribute; thus, a 'perceptual wink', with perception of one attribute (target identity) undisturbed while perception of another (target detection) is impaired. On this account, the immediate benefit following T1 (lag-1 sparing) reflects positive repetition priming and the subsequent deficit (the blink) reflects negative repetition priming for the realization that a target occurred. In developing the perceptual wink model, we extended the nROUSE model of perceptual priming to explain the results of two new experiments combining the AB and identity repetitions. This establishes important connections between non-switching AB tasks and perceptual dynamics.
机译:注意力眨眼(AB)是当该目标出现在第一目标(T1)之后出现的第二个目标(T2)的临时赤字。虽然已经开发了复杂的模型来解释了孤立的实质性AB文学,但目前的研究考虑了AB如何更广泛地涉及感知动态。我们表明AB的时间过程与在感知识别中从正到负重复灌注效应的过渡时间过程密切相关。许多AB任务涉及以一种方式定义的T1之间的开关,并且以不同方式定义的T2。其他AB任务是非切换,所有目标都属于相同的众所周知的类别(例如,字母目标与数字分散组)或共享相同的感知功能。我们建议这些非切换AB任务反映了目标定义属性的感知习惯;因此,在对另一个(目标检测)的感知时不受约一个属性(目标身份)的感知的“感知眨眼”是损害的。在此账户中,T1(LAG-1保留)之后的即时益处反映了阳性重复灌注,随后的缺陷(眨眼)反映了用于实现目标发生的否定重复启动。在开发感知眨眼模型时,我们扩展了感知兴趣的Nrouse模型,以解释与AB和身份重复相结合的两个新实验的结果。这在非切换AB任务和感知动力学之间建立了重要的联系。

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