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主位优势与刺激历史偏倚在方位工作记忆中相互作用。

Cardinal bias interacts with the stimulus history bias in orientation working memory.

机构信息

Department of Psychology, Arizona State University, 950 S. McAllister Ave., Tempe, AZ, 85287, USA.

出版信息

Atten Percept Psychophys. 2024 Apr;86(3):828-837. doi: 10.3758/s13414-024-02867-w. Epub 2024 Mar 5.

Abstract

Reports in a visual working memory(WM) task exhibit biases related to the categorical structure of the stimulus space (e.g., cardinal bias) as well as biases related to previously seen stumuli (e.g., serial bias). While these biases are common and can occur simultaneously, the extent to which they interact in WM remains unknown. In the present study, I used orientation delayed estimation tasks known to produce both cardinal and serial biases and found that the serial bias systematically varied based on the relative positions of the cardinal axis and the preceding stimulus in orientation space. When they were positioned in a way that generated cardinal and serial biases in the same direction (i.e., on the same side of the target orientation), reports for the target orientation exhibited a regular repulsive serial bias. However, when their positions resulted in the biases in the opposite directions (i.e., on the opposite side of the target orientation), no serial bias occurred. This absence of serial bias was replicated in a follow-up experiment where the locations of the stimulus orientation and the response probe were completely randomized, suggesting that the interaction occurs independently from location-based response preparation processes. Together, these results demonstrate that the prior stimulus and the cardinal axis impose interactive impact on the processing of new stimulus, producing differential patterns of serial bias depending on the specific stimulus being processed. These findings place significant implications on computational models addressing the nature of the stimulus history effect and its underlying mechanisms.

摘要

在视觉工作记忆(WM)任务的报告中,存在与刺激空间的类别结构(例如,基数偏向)以及与先前看到的刺激(例如,序列偏向)相关的偏向。虽然这些偏向很常见并且可以同时发生,但它们在 WM 中的相互作用程度尚不清楚。在本研究中,我使用了已知会产生基数和序列偏向的方向延迟估计任务,并发现序列偏向系统地根据基数轴和方向空间中先前刺激的相对位置而变化。当它们的位置产生相同方向的基数和序列偏向(即,目标方向的同一侧)时,目标方向的报告表现出规则的排斥性序列偏向。然而,当它们的位置导致偏向相反的方向(即,目标方向的相反侧)时,没有发生序列偏向。在后续的实验中,当刺激方向和响应探针的位置完全随机化时,这种没有序列偏向的情况得到了复制,这表明这种相互作用独立于基于位置的响应准备过程。这些结果表明,先前的刺激和基数轴对新刺激的处理施加了相互影响,根据正在处理的特定刺激产生了不同的序列偏向模式。这些发现对解决刺激历史效应的本质及其潜在机制的计算模型具有重要意义。

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