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Anna Rieckmann

Universität der Bundeswehr München, Umeå University, Karolinska Institute, University of York, Athinoula A. Martinos Center for Biomedical Imaging, Goldsmiths University of London

ORCID iD 0000-0002-5389-1578

Employment

  • Universität der Bundeswehr München Professor of Biological Psychology
    2022 - Present
  • Umeå University Group leader
    2016 - 2021
  • Athinoula A. Martinos Center for Biomedical Imaging Postdoc
    2012 - 2015

Education

  • Karolinska Institute PhD
    2007 - 2011
  • University of York MSc in Cognitive Neuroscience
    2005 - 2006
  • Goldsmiths University of London BSc Psychology
    2002 - 2005

Projects & Funding

Projects & funding information is unavailable.

Publications (50)

  • Cohort Profile Update: Survey of Health, Ageing and Retirement in Europe: Biomarker data for age-related health conditions
    medRxiv 2026
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  • Dedifferentiation of caudate functional organization is linked to reduced D1 dopamine receptor availability and poorer memory function in aging
    Imaging Neuroscience 2025
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  • Longitudinal tractography of the mouse corpus callosum reveals topographical order and differences due to sex and aging
    Brain Structure and Function 2025
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  • Two long-axis dimensions of hippocampal-cortical integration support memory function across the adult lifespan
    Elife 2025
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  • Assessment of circulating apoE4 levels from dried blood spot samples in a large survey setting
    Alzheimer's & Dementia: Diagnosis, Assessment & Disease Monitoring 2024
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  • COGNITION AND AGEING--INTRODUCING SHARE-HCAP
    SHARE WAVE 9 METHODOLOGY: From the SHARE Corona Survey 2 to the SHARE Main Wave 9 Interview 2024
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  • Circulating apoE4 protein levels from dried blood spots predict cognitive function in a large population-based survey setting
    Alzheimer's & Dementia 2024
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  • Dedifferentiation of caudate-cortical connectivity is linked to reduced D1 dopamine receptor availability and poorer memory function in aging
    2024
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  • Dopamine D1-receptor organization contributes to functional brain architecture
    Journal of Neuroscience 2024
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  • Dopamine release in human associative striatum during reversal learning
    Nature Communications 2024
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