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  3. Bi-Temporal Anodal Transcranial Direct Current Stimulation during Slow-Wave Sleep Boosts Slow-Wave Density but Not Memory Consolidation

Bi-Temporal Anodal Transcranial Direct Current Stimulation during Slow-Wave Sleep Boosts Slow-Wave Density but Not Memory Consolidation

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DOI
10.48350/154768
Publisher DOI
10.3390/brainsci11040410
PubMed ID
33805063
Abstract
Slow-wave sleep (SWS) has been shown to promote long-term consolidation of episodic memo-ries in hippocampo–neocortical networks. Previous research has aimed to modulate cortical sleep slow-waves and spindles to facilitate episodic memory consolidation. Here, we instead aimed to modulate hippocampal activity during slow-wave sleep using transcranial direct cur-rent stimulation in 18 healthy humans. A pair-associate episodic memory task was used to eval-uate sleep-dependent memory consolidation with face–occupation stimuli. Pre- and post-nap re-trieval was assessed as a measure of memory performance. Anodal stimulation with 2 mA was applied bilaterally over the lateral temporal cortex, motivated by its particularly extensive con-nections to the hippocampus. The participants slept in a magnetic resonance (MR)-simulator during the recordings to test the feasibility for a future MR-study. We used a sham-controlled, double-blind, counterbalanced randomized, within-subject crossover design. We show that stimulation vs. sham significantly increased slow-wave density and the temporal coupling of fast spindles and slow-waves. While retention of episodic memories across sleep was not affect-ed across the entire sample of participants, it was impaired in participants with below-average pre-sleep memory performance. Hence, bi-temporal anodal direct current stimulation applied during sleep enhanced sleep parameters that are typically involved in memory consolidation, but it failed to improve memory consolidation and even tended to impair consolidation in poor learners. These findings suggest that artificially enhancing memory-related sleep parameters to improve memory consolidation can actually backfire in those participants who are in most need of memory improvement.
Date Issued
2021-03-24
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
memory consolidation
•
hippocampus
•
sleep
•
slow wave
•
transcranial direct current stimulation
•
temporal lobe
Language(s)
en
Author(s)
Ruch, Simon  orcid-logo
Institut für Psychologie, Weitere Forschungsgruppen  
Fehér Orrenskog, Daniel Kristoffer  orcid-logo
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Homan, Stephanie Andrea  orcid-logo
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Morishima, Yosuke  
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Müller, Sarah Maria  
Universitätsklinik für Allgemeine Innere Medizin  
Müller, Stefanie Verena  
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Dierks, Thomas  
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Grieder, Matthias  orcid-logo
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Additional Credits
Zentrum für Translationale Forschung der Universitätsklinik für Psychiatrie und Psychotherapie  
Institut für Psychologie, Weitere Forschungsgruppen  
Universitätsklinik für Allgemeine Innere Medizin  
Journal
Brain Sciences
Publisher
MDPI
ISSN
2076-3425
Access(Rights)
open.access
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