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DyNAMiC: A prospective longitudinal study of dopamine and brain connectomes: A new window into cognitive aging

Authors :
Nordin, Kristin
Gorbach, Tetiana
Pedersen, Robin
Panes Lundmark, Vania
Johansson, Jarkko
Andersson, Micael
McNulty, Charlotte
Riklund, Katrine
Wåhlin, Anders
Papenberg, Goran
Kalpouzos, Grégoria
Bäckman, Lars
Salami, Alireza
Nordin, Kristin
Gorbach, Tetiana
Pedersen, Robin
Panes Lundmark, Vania
Johansson, Jarkko
Andersson, Micael
McNulty, Charlotte
Riklund, Katrine
Wåhlin, Anders
Papenberg, Goran
Kalpouzos, Grégoria
Bäckman, Lars
Salami, Alireza
Publication Year :
2022

Abstract

Concomitant exploration of structural, functional, and neurochemical brain mechanisms underlying age-related cognitive decline is crucial in promoting healthy aging. Here, we present the DopamiNe, Age, connectoMe, and Cognition (DyNAMiC) project, a multimodal, prospective 5-year longitudinal study spanning the adult human lifespan. DyNAMiC examines age-related changes in the brain’s structural and functional connectome in relation to changes in dopamine D1 receptor availability (D1DR), and their associations to cognitive decline. Critically, due to the complete lack of longitudinal D1DR data, the true trajectory of one of the most age-sensitive dopamine systems remains unknown. The first DyNAMiC wave included 180 healthy participants (20–80 years). Brain imaging included magnetic resonance imaging assessing brain structure (white matter, gray matter, iron), perfusion, and function (during rest and task), and positron emission tomography (PET) with the [11C]SCH23390 radioligand. A subsample (n = 20, >65 years) was additionally scanned with [11C]raclopride PET measuring D2DR. Age-related variation was evident for multiple modalities, such as D1DR; D2DR, and performance across the domains of episodic memory, working memory, and perceptual speed. Initial analyses demonstrated an inverted u-shaped association between D1DR and resting-state functional connectivity across cortical network nodes, such that regions with intermediate D1DR levels showed the highest levels of nodal strength. Evident within each age group, this is the first observation of such an association across the adult lifespan, suggesting that emergent functional architecture depends on underlying D1DR systems. Taken together, DyNAMiC is the largest D1DR study worldwide, and will enable a comprehensive examination of brain mechanisms underlying age-related cognitive decline.

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312833237
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1002.jnr.25039