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Updated: May 6, 2026

The Deese-Roediger-McDermott DRM Task: A Simple Cognitive Paradigm to Investigate False Memories in the Laboratory
Published on: January 31, 2017
Word-length effects in immediate memory: Overwriting trace decay theory.
1Purdue University, 1364 Psychological Sciences Building, 47907-1364, West Lafayette, IN, neath@psych.purdue.edu.
Memory recall is impaired for longer words, challenging traditional decay-based working memory models. A feature model explains this word-length effect without invoking time-based decay processes.
Area of Science:
- Cognitive Psychology
- Neuroscience
- Memory Research
Background:
- The word-length effect, where longer words are harder to recall, is traditionally explained by time-based decay in working memory.
- Existing models often incorporate articulatory loop structures and decay mechanisms to account for memory limitations.
Purpose of the Study:
- To investigate the word-length effect in memory recall.
- To propose and test an alternative explanation for the word-length effect using a feature model.
- To challenge the necessity of time-based decay in working memory theories.
Main Methods:
- Utilized an extended version of Nairne's (1990) feature model.
- Simulated memory recall for items of varying lengths, controlling for frequency, syllables, and phonemes.
- Compared model predictions with empirical findings on modality, phonological similarity, articulatory suppression, and serial position effects.
Main Results:
- The feature model successfully replicated the linear relationship between memory span and pronunciation rate.
- The model predicted memory performance without incorporating time-based decay.
- The model accurately accounted for various factors influencing memory recall, including modality and phonological similarity.
Conclusions:
- Word-length effects in memory do not necessitate time-based decay mechanisms in working memory.
- A feature-based approach provides a viable alternative explanation for the word-length effect.
- Rethinking the role of decay is crucial for advancing memory theories.
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