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连续捕获和返回抑制:机制比较。

Contingent capture and inhibition of return: a comparison of mechanisms.

机构信息

Psychology Department, University of California, Berkeley, CA 94720, USA.

出版信息

Exp Brain Res. 2011 Sep;214(1):47-60. doi: 10.1007/s00221-011-2805-x. Epub 2011 Aug 4.

Abstract

We investigated the cause(s) of two effects associated with involuntary attention in the spatial cueing task: contingent capture and inhibition of return (IOR). Previously, we found that there were two mechanisms of involuntary attention in this task: (1) a (serial) search mechanism that predicts a larger cueing effect in reaction time with more display locations and (2) a decision (threshold) mechanism that predicts a smaller cueing effect with more display locations (Prinzmetal et al. 2010). In the present study, contingent capture and IOR had completely different patterns of results when we manipulated the number of display locations and the presence of distractors. Contingent capture was best described by a search model, whereas the inhibition of return was best described by a decision model. Furthermore, we fit a linear ballistic accumulator model to the results and IOR was accounted for by a change of threshold, whereas the results from contingent capture experiments could not be fit with a change of threshold and were better fit by a search model.

摘要

我们研究了与空间提示任务中的非自愿注意相关的两个效应的原因

伴随捕获和返回抑制(IOR)。之前,我们发现该任务中有两种非自愿注意机制:(1)一种(串行)搜索机制,预测在更多显示位置的情况下,反应时间的提示效应更大;(2)一种决策(阈值)机制,预测在更多显示位置的情况下,提示效应更小(Prinzmetal 等人,2010 年)。在本研究中,当我们操纵显示位置的数量和分心物的存在时,伴随捕获和 IOR 具有完全不同的结果模式。伴随捕获最好用搜索模型来描述,而返回抑制最好用决策模型来描述。此外,我们将线性弹道累积器模型拟合到结果中,发现 IOR 是由阈值变化引起的,而伴随捕获实验的结果不能用阈值变化来拟合,用搜索模型拟合得更好。

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