Literature DB >> 32705467

Altered structural and functional connectivity in CSF1R-related leukoencephalopathy.

Fei-Xia Zhan1, Ze-Yu Zhu1, Qing Liu2, Hai-Yan Zhou1, Xing-Hua Luan1, Xiao-Jun Huang1, Xiao-Li Liu3, Wo-Tu Tian1, Shi-Ge Wang1, Xiao-Xuan Song1, Guang Chen1, Ming-Liang Zhao1, Ying Wang1, Hui-Dong Tang1, Jiong Hu4, Sheng-Di Chen1, Bin-Yin Li5, Li Cao6.   

Abstract

CSF1R-related leukoencephalopathy is a rare white-matter encephalopathy characterized by motor and neuropsychiatric symptoms due to colony-stimulating factor 1 receptor (CSF1R) gene mutation. Few studies have investigated the intrinsic brain alternations of patients with CSF1R-related leukoencephalopathy. We aim to evaluate the structural and functional changes in those patients. Seven patients with CSF1R-related leukoencephalopathy and 15 age-matched healthy controls (HCs) underwent multimodal magnetic resonance imaging (MRI), including high-resolution T1-weighted imaging, T2-weighted fluid attenuated inversion recovery imaging, diffusion-weighted imaging, diffusion kurtosis imaging (DKI) and resting-state functional MRI. First, to detect structural alterations, the gray matter volumes were compared using voxel-based morphometry analyses. Second, DKI parametric maps were used to evaluate the white matter (WM) connectivity changes. Finally, we constructed a seed-based resting-state functional connectivity matrix based on 90 regions of interest and examined the functional network changes of CSF1R-related leukoencephalopathy. Unlike the HCs, patients with CSF1R-related leukoencephalopathy predominantly had morphological atrophy in the bilateral thalamus and left hippocampus. In addition, the abnormal diffusivity was mainly distributed in the splenium of the corpus callosum, periventricular regions, centrum semiovale, subcortical U-fibers and midline cortex structures. Moreover, the patients had significantly reduced functional connectivity between the bilateral caudate nucleus and their contralateral hippocampus. Therefore, in addition to hyperintensity on the T2-weighted images, CSF1R-related leukoencephalopathy also showed abnormal structural and functional alterations, including subcortical atrophy and reduced functional connectivity, as well as altered diffuse parameters in the WM and subcortical regions. These findings expand our understanding of the potential pathophysiologic mechanism behind this hereditary disease.
© 2020. Springer Science+Business Media, LLC, part of Springer Nature.

Entities:  

Keywords:  CSF1R-related leukoencephalopathy; Colony-stimulating factor 1 receptor; Diffusional kurtosis imaging; Functional MRI

Year:  2021        PMID: 32705467     DOI: 10.1007/s11682-020-00360-0

Source DB:  PubMed          Journal:  Brain Imaging Behav        ISSN: 1931-7557            Impact factor:   3.978


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