眶额皮质
前额叶皮质
扣带回前部
神经科学
心理学
蓝斑
皮质(解剖学)
脑回
背
额上回
大脑定位
额下回
扣带皮质
额中回
工作记忆
作者
Patrick Hewan,Alfie Wearn,Jeremy Hogeveen,Kayla Williams,R Nathan Spreng,Gary R. Turner,Sylvia Villeneuve,Judes Poirier,John C S Breitner,Sylvain Baillet,Andrée-Ann Baril,Bellec Pierre,Véronique Bohbot,Danilo Bzdok,Mallar Chakravarty,D Louis Collins,Mahsa Dadar,Simon Ducharme,Alan Evans,Claudine Gauthier
标识
DOI:10.1093/geronb/gbag132
摘要
OBJECTIVES: Prefrontal regions are implicated in explore-exploit decision-making during foraging. Older adults often show an exploitation bias, and this age period is also marked by deteriorating prefrontal myelination. To investigate whether these phenomena are linked, we examined whether lower magnetization transfer saturation (MTsat), a myelin-sensitive quantitative MRI (qMRI) measure, in these regions predicts greater exploitation bias during foraging, and whether cortical microstructure is a better predictor of bias than macrostructure (i.e., cortical thickness). METHODS: Cognitively healthy older adults with familial risk of Alzheimer's disease (AD) (N = 118, 60-88 years) completed a foraging task indexing explore-exploit decision-making. qMRI was used to derive MTsat values for the frontopolar cortex (FPC), medial orbitofrontal cortex (OFC), rostral middle frontal gyrus (rMFG), dorsal anterior cingulate cortex (dACC), as well as the locus coeruleus (LC), a core subcortical region strongly implicated in explore-exploit decision-making. Secondary analyses examined associations between available AD risk markers and foraging. RESULTS: Lower MTsat in the FPC, OFC, rMFG, and LC was associated with an exploitation bias, with LC and FPC emerging as the strongest predictors. No relationship was observed for the dACC. MTsat remained a significant predictor of foraging after controlling for cortical thickness. Observed associations were largely unrelated to AD risk markers. DISCUSSION: Individual differences in cortical microstructural integrity within a well-defined explore-exploit circuit are associated with an exploitative decision-making bias in older adults. These findings highlight the value of qMRI microstructural integrity markers, beyond standard macrostructural assays, in characterizing the neural correlates of exploitation biases in later life.
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