Slowdown vs. breakdown of memory recall by retrieval stopping.

IF 2.2 3区 心理学 Q2 PSYCHOLOGY, EXPERIMENTAL
Satoru Nishiyama, Randall C O'Reilly, Satoru Saito
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引用次数: 0

Abstract

Think/No-Think studies have shown that people can prevent memories from coming up to their mind by explicitly attempting to not think of them. However, there is an important limitation in the measures typically used: binary recall vs. no-recall accuracy under a specific time deadline. In this study, we instead focused on recall latency with a longer response window to accommodate a wider range of recall latencies. We found in Experiment 1 that direct suppression in the standard No-Think condition had a relatively uniform, graded effect, slowing the recall process in such a way that more recall failures occur with a short deadline, but a longer deadline (10 s) allows for successful recall at rates comparable to a baseline condition. In Experiment 2, thought substitution also caused the slowdown of the recall despite still lower recall rate than a baseline in 10 s. These results suggest that memory recall is subject to graded impairment across all items in a consistent manner instead of the breakdown of recall among a subset of memories. For understanding forgetting by retrieval stopping, excessive use of recall rate should be avoided, and recall latency is a potential alternative.

由于检索停止而导致的记忆恢复速度减慢与中断。
思考/不思考的研究表明,人们可以通过明确地试图不去想记忆来阻止记忆出现在脑海中。然而,在通常使用的度量中有一个重要的限制:特定时间期限下的二元召回与无召回准确率。在这项研究中,我们用更长的反应窗口来关注回忆延迟,以适应更大范围的回忆延迟。我们在实验1中发现,在标准的“不思考”条件下,直接抑制有一个相对统一的、分级的效果,以这样一种方式减慢了回忆过程,即在较短的截止日期下,更多的回忆失败发生,但在较长的截止日期(10秒)下,成功的回忆率与基线条件相当。在实验2中,尽管10 s的回忆率仍低于基线,但思想替代也导致了回忆速度的减慢。这些结果表明,记忆回忆在所有项目中都以一致的方式受到分级损害,而不是在一部分记忆中被分解。为了理解通过停止检索来理解遗忘,应避免过度使用回忆率,而回忆延迟是一种潜在的替代方法。
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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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