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Toward a functional future for the cognitive neuroscience of human aging

  • Zoya Mooraj
  • , Alireza Salami
  • , Karen L. Campbell
  • , Martin J. Dahl
  • , Julian Q. Kosciessa
  • , Matthew R. Nassar
  • , Markus Werkle-Bergner
  • , Fergus I.M. Craik
  • , Ulman Lindenberger
  • , Ulrich Mayr
  • , M. Natasha Rajah
  • , Naftali Raz
  • , Lars Nyberg
  • , Douglas D. Garrett
  • Max Planck Institute for Human Development
  • University College London
  • Karolinska Institutet
  • Umeå University
  • Brock University
  • University of Southern California
  • Radboud University Nijmegen
  • Brown University
  • University of Toronto
  • University of Oregon
  • McGill University
  • Toronto Metropolitan University

Research output: Contribution to journalReview articlepeer-review

19 Scopus citations

Abstract

The cognitive neuroscience of human aging seeks to identify neural mechanisms behind the commonalities and individual differences in age-related behavioral changes. This goal has been pursued predominantly through structural or “task-free” resting-state functional neuroimaging. The former has elucidated the material foundations of behavioral decline, and the latter has provided key insight into how functional brain networks change with age. Crucially, however, neither is able to capture brain activity representing specific cognitive processes as they occur. In contrast, task-based functional imaging allows a direct probe into how aging affects real-time brain-behavior associations in any cognitive domain, from perception to higher-order cognition. Here, we outline why task-based functional neuroimaging must move center stage to better understand the neural bases of cognitive aging. In turn, we sketch a multi-modal, behavior-first research framework that is built upon cognitive experimentation and emphasizes the importance of theory and longitudinal design.

Original languageEnglish
Pages (from-to)154-183
Number of pages30
JournalNeuron
Volume113
Issue number1
DOIs
StatePublished - Jan 8 2025

Keywords

  • EEG
  • PET
  • aging
  • behavior
  • brain
  • cognition
  • fMRI
  • multimodal
  • neurochemistry
  • neuroimaging

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