编码上下文的变化有利于项目识别。

IF 2.2 3区 心理学 Q2 PSYCHOLOGY, EXPERIMENTAL
Jefferson Salan, Devyn E Smith, Erica S Shafer, Rachel A Diana
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引用次数: 0

摘要

当前的研究评估了改变重复事件的编码情境是否是改善跨检索情境识别记忆的一种潜在策略。情境变异,也称为编码变异,历来主要通过回忆和诱导回忆任务进行研究,人们一致认为编码变异并不一定有利于情节性检索。然而,最近的研究(见正文)表明,测试类型可能会决定策略的有效性。与这些最新研究结果一致,我们在四次实验中发现,当一个单词在多变的语境中学习比在少变的语境中学习更有利于简单项目的识别。这种语境可变性的主效应出现在与重复间距操作交叉以及与编码-检索语境匹配操作交叉的情况下。与在未来检索情境中重复研究相比,在未来检索情境之外的编码情境的变化会导致更好的项目识别。我们认为,当前的研究和最近的其他发现表明,有必要重新评估编码变异性作为一种有益学习策略的历史共识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Variation in encoding context benefits item recognition.

Variation in encoding context benefits item recognition.

The current study assesses whether varying the encoding context of a repeated event is a potential strategy to improve recognition memory across retrieval contexts. Context variability, also known as encoding variability, has historically been investigated primarily using recall and cued recall tasks, with the consensus being that encoding variability is not necessarily beneficial for episodic retrieval. However, recent studies (see text) suggest that test type may determine the strategy's effectiveness. Aligned with these recent findings, we found consistent benefits to simple item recognition when a word was studied in more variable contexts compared to less variable contexts across four experiments. This main effect of context variability occurred when crossed with a manipulation of repetition spacing and when crossed with a manipulation of encoding-retrieval context match. Variation in encoding contexts beyond the future retrieval context led to better item recognition than repeated study exposures within the future retrieval context. We argue that the current study and other recent findings indicate a need to re-evaluate the historical consensus on encoding variability as a beneficial strategy for learning.

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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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