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Semantic control across Alzheimer Disease phenotypes: cognitive mechanisms and neural correlates

  • Pilar Armas
  • , Alejandra O. Morcillo‐Nieto
  • , Sara E Zsadanyi
  • , Sonia Karin Marques‐Kiderle
  • , Julia Filella-Merce
  • , Francesco Ciongoli
  • , Isabel Sala
  • , M. Belen Sanchez-Saudinos
  • , Sara Rubio‐Guerra
  • , Nuole Zhu
  • , Isabel Barroeta
  • , Maria Carmona-Iragui
  • , Ignacio Illán‐Gala
  • , Daniel Alcolea
  • , Alberto Lleo
  • , Juan Fortea
  • , Stephanie M Grasso
  • , Marco Calabria
  • , Javier Hernando
  • , Elizabeth Jefferies
  • Matthew A. Lambon Ralph, Richard J. Binney, Alexandre Bejanin, Miguel A. Santos-Santos
  • Universitat Politècnica de Catalunya
  • Sant Pau Memory Unit, Hospital de la Santa Creu i Sant Pau, Barcelona
  • Universitat Oberta de Catalunya
  • University of Texas, Austin
  • York University
  • University of Cambridge

Research output: Contribution to journalArticlepeer-review

Abstract

Introduction: Semantic cognition, our ability to understand meaning, relies on two distinct but interacting systems: one involved in knowledge representation and another in control processes. This control system is thought to comprise at least two mechanisms: controlled retrieval, which facilitates access to information relevant to a specific goal or context, and selection, which is engaged to resolve competition among multiple simultaneously active semantic representations. The present study aimed at understanding if, and how, controlled semantic cognition is impaired in Alzheimer’s disease (AD), and the neuroanatomical correlates of these deficits. We supposed that in AD, semantic deficits could reflect damage to the retrieval and/or the selection mechanism and could differ according to the clinical phenotype of AD.
Methods: Our sample included the typical amnestic (ADtyp, N=11) clinical presentation as well as the atypical language-dominant variant (logopenic variant primary progressive aphasia, lvPPA, N=17). 16 healthy controls also took part. We examined object use knowledge in a task that manipulated the levels of both controlled-retrieval and selection semantic control mechanisms.
Results: Increased semantic control demands worsened performance in all groups including controls. Both patient groups were impaired in controlled retrieval, but not selection, compared to controls. Furthermore, lvPPA scored consistently lower than controls and ADtyp in all conditions of the experimental task, even the condition with the lowest semantic control demands, pointing to broader semantic difficulties beyond controlled-retrieval and selection. Exploratory analyses suggested the two mechanisms were linked to partially distinct predominant cognitive associations, controlled-retrieval with tests of semantic-knowledge and selection with executive function. Neuroimaging showed partially overlapping but distinct correlates for the two mechanisms, potentially reflecting differing reliance on semantic versus domain-general control brain networks.
Conclusions: Our results refine current models of semantic dysfunction in AD, highlighting involvement of both domain-general and more specialized control mechanisms, with potential implications for differential diagnosis, symptom management, and rehabilitation planning.
Original languageEnglish
JournalFrontiers in Aging Neuroscience
Volume18
DOIs
Publication statusPublished - 12 Aug 2026

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Alzheimer’s disease
  • logopenic variant primary progressive aphasia
  • semantic cognition
  • semantic control
  • controlled retrieval
  • selection mechanism
  • neuroimaging

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