Literature DB >> 33716691

Structural and Functional Changes Are Related to Cognitive Status in Wilson's Disease.

Sheng Hu1,2, Chunsheng Xu1,3, Ting Dong3, Hongli Wu2, Yi Wang2, Anqin Wang3, Hongxing Kan2, Chuanfu Li3.   

Abstract

Patients with Wilson's disease (WD) suffer from prospective memory (PM) impairment, and some of patients develop cognitive impairment. However, very little is known about how brain structure and function changes effect PM in WD. Here, we employed multimodal neuroimaging data acquired from 22 WD patients and 26 healthy controls (HC) who underwent three-dimensional T1-weighted, diffusion tensor imaging (DTI), and resting state functional magnetic resonance imaging (RS-fMRI). We investigated gray matter (GM) volumes with voxel-based morphometry, DTI metrics using the fiber tractography method, and RS-fMRI using the seed-based functional connectivity method. Compared with HC, WD patients showed GM volume reductions in the basal ganglia (BG) and occipital fusiform gyrus, as well as volume increase in the visual association cortex. Moreover, whiter matter (WM) tracks of WD were widely impaired in association and limbic fibers. WM tracks in association fibers are significant related to PM in WD patients. Relative to HC, WD patients showed that the visual association cortex functionally connects to the thalamus and hippocampus, which is associated with global cognitive function in patients with WD. Together, these findings suggested that PM impairment in WD may be modulated by aberrant WM in association fibers, and that GM volume changes in the association cortex has no direct effect on cognitive status, but indirectly affect global cognitive function by its aberrant functional connectivity (FC) in patients with WD. Our findings may provide a new window to further study how WD develops into cognitive impairment, and deepen our understanding of the cognitive status and neuropathology of WD.
Copyright © 2021 Hu, Xu, Dong, Wu, Wang, Wang, Kan and Li.

Entities:  

Keywords:  Wilson’s disease; association fibers; diffusion tensor imaging; functional connectivity; functional magnetic resonance imaging; limbic fibers; visual association cortex

Year:  2021        PMID: 33716691      PMCID: PMC7947794          DOI: 10.3389/fnhum.2021.610947

Source DB:  PubMed          Journal:  Front Hum Neurosci        ISSN: 1662-5161            Impact factor:   3.169


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