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Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning

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Published in:Human Brain Mapping
Format: Online Article RSS Article
Published: 2026
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container_title Human Brain Mapping
description
discipline_display Psychiatry and Neurology
discipline_facet Psychiatry and Neurology
format Online Article
RSS Article
genre Journal Article
id rss_article:59109
institution FRELIP
journal_source_facet Human Brain Mapping
last_indexed 2026-06-20T21:20:55.268Z
publishDate 2026
publishDateSort 2026
record_format rss_article
spellingShingle Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
Psychiatry and Neurology
General
Psychiatry and Neurology
sub_discipline_display General
sub_discipline_facet General
subject_display Psychiatry and Neurology
General
Psychiatry and Neurology
subject_facet Psychiatry and Neurology
General
Psychiatry and Neurology
title Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_alt Mecanismos fisiológicos distintos impulsan la plasticidad de la materia gris en el aprendizaje de secuencias complejas versus simples
Des mécanismes physiologiques distincts conduisent à la plasticité de la matière grise dans l'apprentissage de séquences complexes versus simples
Mecanismos Fisiológicos Distintos Impulsionam a Plasticidade da Matéria Cinzenta na Aprendizagem de Sequências Complexas Versus Simples
title_auth Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_es_txt Mecanismos fisiológicos distintos impulsan la plasticidad de la materia gris en el aprendizaje de secuencias complejas versus simples
title_fr_txt Des mécanismes physiologiques distincts conduisent à la plasticité de la matière grise dans l'apprentissage de séquences complexes versus simples
title_full Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_fullStr Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_full_unstemmed Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_pt_txt Mecanismos Fisiológicos Distintos Impulsionam a Plasticidade da Matéria Cinzenta na Aprendizagem de Sequências Complexas Versus Simples
title_short Distinct Physiological Mechanisms Drive Grey Matter Plasticity in Complex Versus Simple Sequence Learning
title_sort distinct physiological mechanisms drive grey matter plasticity in complex versus simple sequence learning
topic Psychiatry and Neurology
General
Psychiatry and Neurology
url https://onlinelibrary.wiley.com/doi/10.1002/hbm.70562?af=R