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Target Cueing Provides Support for Target- and Resource-Based Models of the Attentional Blink

机译:目标提示为注意力眨眼的基于目标和资源的模型提供支持

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摘要

The attentional blink (AB) describes a time-based deficit in processing the second of two masked targets. The AB is attenuated if successive targets appear between the first and final target, or if a cueing target is positioned before the final target. Using various speeds of stimulus presentation, the current study employed successive targets and cueing targets to confirm and extend an understanding of target-target cueing in the AB. In Experiment 1, three targets were presented sequentially at rates of 30 msec/item or 90 msec/item. Successive targets presented at 90 msec improved performance compared with non-successive targets. However, accuracy was equivalently high for successive and non-successive targets presented at 30 msec/item, suggesting that–regardless of whether they occurred consecutively–those items fell within the temporally defined attentional window initiated by the first target. Using four different presentation speeds, Experiment 2 confirmed the time-based definition of the AB and the success of target-cueing at 30 msec/item. This experiment additionally revealed that cueing was most effective when resources were not devoted to the cue, thereby implicating capacity limitations in the AB. Across both experiments, a novel order-error measure suggested that errors tend to decrease with an increasing duration between the targets, but also revealed that certain stimulus conditions result in stable order accuracy. Overall, the results are best encapsulated by target-based and resource-sharing theories of the AB, which collectively value the contributions of capacity limitations and optimizing transient attention in time.
机译:注意眨眼(AB)描述了在处理两个被屏蔽目标中的第二个目标时基于时间的缺陷。如果连续目标出现在第一个目标和最终目标之间,或者提示目标位于最终目标之前,则AB衰减。本研究使用各种速度的刺激提示,采用了连续的目标和提示目标,以确认和扩展对AB中目标-目标提示的理解。在实验1中,以30毫秒/项目或90毫秒/项目的速率依次显示了三个目标。与不成功的目标相比,以90毫秒的速度呈现的连续目标提高了性能。但是,对于以30毫秒/项显示的连续目标和非成功目标,准确性都相当高,这表明,不管它们是否连续发生,这些项目都属于第一个目标启动的时间限定的注意窗口。实验2使用四种不同的演示速度,确认了AB的基于时间的定义以及30毫秒/项的目标提示成功。该实验还表明,当资源不专门用于提示时,提示是最有效的,因此暗示了AB中的容量限制。在这两个实验中,一种新颖的阶次误差测度表明,随着目标之间持续时间的增加,误差趋于减少,但同时也揭示出某些刺激条件会导致阶次准确性保持稳定。总体而言,AB的基于目标和资源共享的理论可以最好地概括这些结果,这些理论共同重视能力限制的贡献并及时优化瞬态注意力。

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