Keyword search (4,163 papers available)

"consolidation" Keyword-tagged Publications:

Title Authors PubMed ID
1 Phase-Amplitude Coupling of NREM Sleep Oscillations Shows Between-Night Stability and is Related to Overnight Memory Gains Cross N; O' Byrne J; Weiner OM; Giraud J; Perrault AA; Dang-Vu TT; 40214027
PERFORM
2 In-situ consolidation of thermoplastic composites by automated fiber placement: Characterization of defects Fereidouni M; Hoa SV; 39895653
ENCS
3 What is Learned Determines How Pavlovian Conditioned Fear is Consolidated in the Brain Leake J; Leidl DM; Lay BPP; Fam JP; Giles MC; Qureshi OA; Westbrook RF; Holmes NM; 37963767
CSBN
4 Slow oscillation-spindle cross-frequency coupling predicts overnight declarative memory consolidation in older adults Oren M Weiner 37002805
PERFORM
5 Danger Changes the Way the Brain Consolidates Neutral Information; and Does So by Interacting with Processes Involved in the Encoding of That Information Omar A Qureshi 36927572
PSYCHOLOGY
6 Sleep affects higher-level categorization of speech sounds, but not frequency encoding Chapelle A; Savard MA; Restani R; Ghaemmaghami P; Thillou N; Zardoui K; Chandrasekaran B; Coffey EBJ; 35732089
PSYCHOLOGY
7 Sigma oscillations protect or reinstate motor memory depending on their temporal coordination with slow waves Nicolas J; King BR; Levesque D; Lazzouni L; Coffey EBJ; Swinnen S; Doyon J; Carrier J; Albouy G; 35726850
PSYCHOLOGY
8 Different Patterns of Sleep-Dependent Procedural Memory Consolidation in Vipassana Meditation Practitioners and Non-meditating Controls. Solomonova E, Dubé S, Blanchette-Carrière C, Sandra DA, Samson-Richer A, Carr M, Paquette T, Nielsen T 32038390
PSYCHOLOGY
9 Cortical reactivations during sleep spindles following declarative learning. Jegou A, Schabus M, Gosseries O, Dahmen B, Albouy G, Desseilles M, Sterpenich V, Phillips C, Maquet P, Grova C, Dang-Vu TT 30928690
PERFORM
10 Consolidation alters motor sequence-specific distributed representations. Pinsard B, Boutin A, Gabitov E, Lungu O, Benali H, Doyon J 30882348
PERFORM

 

Title:Sleep affects higher-level categorization of speech sounds, but not frequency encoding
Authors:Chapelle ASavard MARestani RGhaemmaghami PThillou NZardoui KChandrasekaran BCoffey EBJ
Link:pubmed.ncbi.nlm.nih.gov/35732089/
DOI:10.1016/j.cortex.2022.04.018
Publication:Cortex; a journal devoted to the study of the nervous system and behavior
Keywords:Categorical learningConsolidationFrequency-following responseSleepSpeech
PMID:35732089 Category: Date Added:2022-06-23
Dept Affiliation: PSYCHOLOGY
1 Lyon Neuroscience Research Centre, Lyon, France; Department of Psychology, Concordia University, Montreal, QC, Canada.
2 Department of Psychology, Concordia University, Montreal, QC, Canada.
3 Department of Psychology, Concordia University, Montreal, QC, Canada; Université Paris Nanterre, Paris, France.
4 Department of Communication Science and Disorders, University of Pittsburgh, Pittsburgh, USA.
5 Department of Psychology, Concordia University, Montreal, QC, Canada. Electronic address: emily.coffey@concordia.ca.

Description:

Sleep can increase consolidation of new knowledge and skills. It is less clear whether sleep plays a role in other aspects of experience-dependent neuroplasticity, which underlie important human capabilities such as spoken language processing. Theories of sensory learning differ in their predictions; some imply rapid learning at early sensory levels, while other propose a slow, progressive timecourse such that higher-level categorical representations guide immediate, novice learning, while lower-level sensory changes do not emerge until later stages. In this study, we investigated the role of sleep across both behavioural and physiological indices of auditory neuroplasticity. Forty healthy young human adults (23 female) who did not speak a tonal language participated in the study. They learned to categorize non-native Mandarin lexical tones using a sound-to-category training paradigm, and were then randomly assigned to a Nap or Wake condition. Polysomnographic data were recorded to quantify sleep during a 3 h afternoon nap opportunity, or equivalent period of quiet wakeful activity. Measures of behavioural performance accuracy revealed a significant improvement in learning the sound-to-category training paradigm between Nap and Wake groups. Conversely, a neural index of fine sound encoding fidelity of speech sounds known as the frequency-following response (FFR) suggested no change due to sleep, and a null model was supported, using Bayesian statistics. Together, these results support theories that propose a slow, progressive and hierarchical timecourse for sensory learning. Sleep's effect may play the biggest role in the higher-level learning, although contributions to more protracted processes of plasticity that exceed the study duration cannot be ruled out.




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