Involvement of specific striatal subregion contributes to executive deficits in Alzheimer disease
Li Liu1, Shaozhen Yan1, Min Chu1
1From the Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing, China (Liu, Chu, Xie, Cui, Jiang, Chen, Nan, Wu); the Department of Radiology and Nuclear Medicine, Xuanwu Hospital, Capital Medical University, Beijing, China (Yan, Lu); the Beijing Engineering Research Center of Radiographic Techniques and Equipment, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China (Nie); the School of Nuclear Science and Technology, University of Chinese Academy of Sciences, Beijing, China (Nie); the McGill Centre for Studies in Aging, Alzheimer's Disease Research Unit, Montreal, Que. (Rosa-Neto); the Beijing Key Laboratory of Magnetic Resonance Imaging and Brain Informatics, Beijing, China (Lu).
Background:
There is growing evidence that the striatum plays a central role in cognitive dysfunction. However, it remains unclear whether and how the striatum contributes specifically to executive deficits in Alzheimer disease (AD). We sought to elucidate aberrations in the striatal subregion associated with executive function and its metabolic connectivity with the cortical regions to investigate its role in the pathogenesis of executive deficits in patients with AD.
Methods:
Patients with AD and healthy controls underwent a neuropsychological assessment battery, including assessment of executive function, and a hybrid positron emission tomography/magnetic resonance imaging (PET/MRI) scan. We performed voxel-wise analyses of cerebral metabolism between patients and controls, focusing on the executive subregion of the striatum according to the Oxford-GSK-Imanova Striatal Connectivity Atlas. We assessed the correlation between the [18F]-fluorodeoxyglucose standardized uptake value ratio of the striatal executive subregion and clinical variables, and we analyzed seed-based metabolic connectivity of the striatal executive subregion with the dorsolateral prefrontal cortex (DLPFC) using [18F]-fluorodeoxyglucose PET.
Results:
We included 50 patients with AD and 33 controls in our analyses. The patterns of striatal hypometabolism in patients with AD were specific to executive and caudal motor subregions. Metabolic activity in the executive subregion of the striatum correlated negatively with the severity of executive dysfunction, as measured with the Trial-Making Test (TMT) part B and the difference score TMT B-A, and correlated positively with Digit Span (backward) and Verbal Fluency Test scales, particularly on the left side. Compared with controls, patients with AD showed reduced metabolic connectivity between striatal executive subregions and the dorsolateral prefrontal cortex (DLPFC).
Limitations:
Our study was limited by small sample sizes and cross-sectional findings.
Conclusion:
Our findings show that patients with AD have impairments in the executive subregion of the striatum, and these deficits may be associated with a disconnection between the executive striatum and DLPFC, providing valuable insight into the pathogenesis of this disease.
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