Similarity-Based Compression in Working Memory: Implications for Decay and Refreshing Models
暂无分享,去创建一个
[1] Eda Mizrak,et al. The semantic relatedness effect in serial recall: Deconfounding encoding and recall order , 2022, Journal of Memory and Language.
[2] J. Saint-Aubin,et al. Phonological similarity in the serial recall task hinders item recall, not just order , 2022, British journal of psychology.
[3] Benoît Lemaire,et al. Between-item similarity frees up working memory resources through compression: A domain-general property. , 2022, Journal of experimental psychology. General.
[4] Nathaniel R. Greene,et al. Exploring the use of phonological and semantic representations in working memory. , 2022, Journal of experimental psychology. Learning, memory, and cognition.
[5] S. Majerus,et al. Semantic knowledge constrains the processing of serial order information in working memory. , 2021, Journal of experimental psychology. Learning, memory, and cognition.
[6] M. Poirier,et al. A model of the production effect over the short-term: The cost of relative distinctiveness , 2021 .
[7] F. Mathy,et al. A compressibility account of the color-sharing bonus in working memory , 2021, Attention, Perception, & Psychophysics.
[8] D. Norris,et al. Chunking and data compression in verbal short-term memory , 2020, Cognition.
[9] Benoît Lemaire,et al. How does semantic knowledge impact working memory maintenance? Computational and behavioral investigations , 2020, Journal of Memory and Language.
[10] S. Saito,et al. The detrimental effect of semantic similarity in short-term memory tasks: A meta-regression approach , 2020, Psychonomic Bulletin & Review.
[11] D. Norris,et al. Chunking and Redintegration in Verbal Short-Term Memory , 2019, Journal of experimental psychology. Learning, memory, and cognition.
[12] Alessandra S. Souza,et al. How Does Chunking Help Working Memory? , 2019, Journal of experimental psychology. Learning, memory, and cognition.
[13] Candice C Morey,et al. Perceptual grouping boosts visual working memory capacity and reduces effort during retention. , 2018, British journal of psychology.
[14] Benoît Lemaire,et al. A Computational Model of Working Memory Integrating Time-Based Decay and Interference , 2018, Front. Psychol..
[15] Sophie Portrat,et al. What is the time course of working memory attentional refreshing? , 2018, Psychonomic bulletin & review.
[16] Julie C. Helmers,et al. Chunking as a rational strategy for lossy data compression in visual working memory , 2017, bioRxiv.
[17] Nelson Cowan,et al. Decay Theory of Immediate Memory: From Brown (1958) to Today (2014) , 2016, Quarterly journal of experimental psychology.
[18] F. Mathy,et al. Chunk formation in immediate memory and how it relates to data compression , 2016, Cognition.
[19] Jeffrey N Rouder,et al. Searching for serial refreshing in working memory: Using response times to track the content of the focus of attention over time , 2016, Psychonomic bulletin & review.
[20] Sophie Portrat,et al. Promoting the experimental dialogue between working memory and chunking: Behavioral data and simulation , 2015, Memory & Cognition.
[21] Stephan Lewandowsky,et al. Rehearsal in serial recall: An unworkable solution to the nonexistent problem of decay. , 2015, Psychological review.
[22] Stephan Lewandowsky,et al. Further evidence against decay in working memory , 2014 .
[23] Katherine Guérard,et al. Delineating the contribution of long-term associations to immediate recall , 2014, Memory.
[24] John Jonides,et al. Neural evidence for a 3-state model of visual short-term memory , 2013, NeuroImage.
[25] Dwight J. Peterson,et al. The Gestalt principle of similarity benefits visual working memory , 2013, Psychonomic bulletin & review.
[26] Stephan Lewandowsky,et al. Evidence against decay in verbal working memory. , 2013, Journal of experimental psychology. General.
[27] Philip T Quinlan,et al. Grouping and binding in visual short-term memory. , 2012, Journal of experimental psychology. Learning, memory, and cognition.
[28] F. Mathy,et al. What’s magic about magic numbers? Chunking and data compression in short-term memory , 2012, Cognition.
[29] Kevin Diependaele,et al. Further evidence for temporal decay in working memory: reply to Lewandowsky and Oberauer (2009). , 2011, Journal of experimental psychology. Learning, memory, and cognition.
[30] Thomas Sanocki,et al. Color Relations Increase the Capacity of Visual Short-Term Memory , 2011, Perception.
[31] G. Alvarez. Representing multiple objects as an ensemble enhances visual cognition , 2011, Trends in Cognitive Sciences.
[32] Stephan Lewandowsky,et al. Modeling working memory: a computational implementation of the Time-Based Resource-Sharing theory , 2011, Psychonomic bulletin & review.
[33] S. Lewandowsky,et al. Computational Models as Aids to Better Reasoning in Psychology , 2010 .
[34] Alice R. Albrecht,et al. Perceptually Averaging in a Continuous Visual World , 2010, Psychological science.
[35] Paul M Bays,et al. The precision of visual working memory is set by allocation of a shared resource. , 2009, Journal of vision.
[36] Nelson Cowan,et al. Core verbal working-memory capacity: The limit in words retained without covert articulation , 2009, Quarterly journal of experimental psychology.
[37] S. Luck,et al. The influence of similarity on visual working memory representations , 2009, Visual cognition.
[38] Stephan Lewandowsky,et al. No temporal decay in verbal short-term memory , 2009, Trends in Cognitive Sciences.
[39] M. Maybery,et al. Equivalent effects of grouping by time, voice, and location on response timing in verbal serial memory. , 2008, Journal of experimental psychology. Learning, memory, and cognition.
[40] P. Barrouillet,et al. Time-related decay or interference-based forgetting in working memory? , 2008, Journal of experimental psychology. Learning, memory, and cognition.
[41] S. Luck,et al. Discrete fixed-resolution representations in visual working memory , 2008, Nature.
[42] Jean Saint-Aubin,et al. Short Article: Visual Similarity in Short-Term Recall for Where and When , 2008, Quarterly journal of experimental psychology.
[43] Robert M. French,et al. KAMA: A Temperature-Driven Model of Mate Choice Using Dynamic Partner Representations , 2008, Adapt. Behav..
[44] Michael J Kahana,et al. Auditory Short-Term Memory Behaves Like Visual Short-Term Memory , 2007, PLoS biology.
[45] Dylan M. Jones,et al. Organization of visuo-spatial serial memory: interaction of temporal order with spatial and temporal grouping , 2006, Psychological research.
[46] N. Cowan,et al. Chunk limits and length limits in immediate recall: a reconciliation. , 2005, Journal of experimental psychology. Learning, memory, and cognition.
[47] Andrew R. A. Conway,et al. On the capacity of attention: Its estimation and its role in working memory and cognitive aptitudes , 2005, Cognitive Psychology.
[48] F. Parmentier,et al. Transitional information in spatial serial memory: path characteristics affect recall performance. , 2005, Journal of experimental psychology. Learning, memory, and cognition.
[49] Carlo De Lillo,et al. Imposing structure on a Corsi-type task: Evidence for hierarchical organisation based on spatial proximity in serial-spatial memory , 2004, Brain and Cognition.
[50] Lisa M. Nimmo,et al. Investigating the Phonological Similarity Effect: Syllable Structure and the Position of Common Phonemes. , 2004 .
[51] P. Barrouillet,et al. Time constraints and resource sharing in adults' working memory spans. , 2004, Journal of experimental psychology. General.
[52] D. Ariely. Seeing Sets: Representation by Statistical Properties , 2001, Psychological science.
[53] S. Lewandowsky. Redintegration and Response Suppression in Serial Recall: A Dynamic Network Model , 1999 .
[54] Gerald Tehan,et al. Phonological Similarity and Trace Degradation in the Serial Recall Task: When CAT helps RAT, but not MAN , 1999 .
[55] M. Poirier,et al. Semantic Similarity and Immediate Serial Recall: Is There a Detrimental Effect on Order Information? , 1999, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[56] R. Dell’Acqua,et al. The Demonstration of Short-Term Consolidation , 1998, Cognitive Psychology.
[57] M. Poirier,et al. Memory for Related and Unrelated Words: Further Evidence on the Influence of Semantic Factors in Immediate Serial Recall , 1995, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[58] C. D. Gelatt,et al. Optimization by Simulated Annealing , 1983, Science.
[59] A D Baddeley,et al. Short-term Memory for Word Sequences as a Function of Acoustic, Semantic and Formal Similarity , 1966, The Quarterly journal of experimental psychology.
[60] L. R. Peterson,et al. Short-term retention of individual verbal items. , 1959, Journal of experimental psychology.
[61] Sang Chul Chong,et al. Similarity-based clusters are representational units of visual working memory. , 2019, Journal of experimental psychology. Learning, memory, and cognition.
[62] P. Barrouillet,et al. Interference : unique source of forgetting in working memory ? , 2009 .
[63] Nelson Cowan,et al. Deconfounding Serial Recall , 2002 .