Decomposing the multiple encoding benefit in visual long-term memory: Primary contributions by the number of encoding opportunities.

IF 2.2 3区 心理学 Q2 PSYCHOLOGY, EXPERIMENTAL Memory & Cognition Pub Date : 2024-07-02 DOI:10.3758/s13421-024-01602-y
Caitlin J I Tozios, Keisuke Fukuda
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Abstract

Although access to the seemingly infinite capacity of our visual long-term memory (VLTM) can be restricted by visual working memory (VWM) capacity at encoding and retrieval, access can be improved with repeated encoding. This leads to the multiple encoding benefit (MEB), the finding that VLTM performance improves as the number of opportunities to encode the same information increases over time. However, as the number of encoding opportunities increases, so do other factors such as the number of identical encoded VWM representations and chances to engage in successful retrieval during each opportunity. Thus, across two experiments, we disentangled the contributions of each of these factors to the MEB by having participants encode a varying number of identical objects across multiple encoding opportunities. Along with behavioural data, we also examined two established EEG correlates that track the number of maintained VWM representations, namely the posterior alpha suppression and the negative slow wave. Here, we identified that the primary mechanism behind the MEB was the number of encoding opportunities. That is, recognition memory performance was higher following an increase in the number of encoding opportunities, and this could not be attributed solely to an increase in the number of encoded VWM representations or successful retrieval. Our results thus contribute to the understanding of the fundamental mechanisms behind the influence of VWM on VLTM encoding.

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分解视觉长时记忆中的多重编码益处:编码机会数量的主要贡献
虽然在编码和检索时,视觉工作记忆(VWM)的容量会限制我们对看似无限大的视觉长时记忆(VLTM)容量的使用,但重复编码可以改善我们对视觉长时记忆的使用。这就产生了多重编码效益(MEB),即随着对同一信息进行编码的次数增加,VLTM 的性能也会随之提高。然而,随着编码机会数量的增加,其他因素也会随之增加,如相同编码 VWM 表征的数量以及在每次机会中成功检索的机会。因此,在两个实验中,我们通过让参与者在多个编码机会中对不同数量的相同对象进行编码,来分离这些因素对 MEB 的贡献。除了行为数据外,我们还研究了两个已确立的脑电图相关因素,即后阿尔法抑制和负慢波,它们可追踪维持的 VWM 表征的数量。在这里,我们发现 MEB 背后的主要机制是编码机会的数量。也就是说,在编码机会数量增加后,识别记忆的表现会更高,而这不能仅仅归因于编码的 VWM 表征数量的增加或成功检索。因此,我们的研究结果有助于理解VWM对VLTM编码影响的基本机制。
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来源期刊
Memory & Cognition
Memory & Cognition PSYCHOLOGY, EXPERIMENTAL-
CiteScore
4.40
自引率
8.30%
发文量
112
期刊介绍: Memory & Cognition covers human memory and learning, conceptual processes, psycholinguistics, problem solving, thinking, decision making, and skilled performance, including relevant work in the areas of computer simulation, information processing, mathematical psychology, developmental psychology, and experimental social psychology.
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