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Disrupted functional brain network topology in Parkinson's disease patients with freezing of gait.

Authors :
Li, Nannan
Suo, Xueling
Zhang, Jinhong
Lei, Du
Wang, Ling
Li, Junying
Peng, Jiaxin
Duan, Liren
Gong, Qiyong
Peng, Rong
Source :
Neuroscience Letters. Aug2021, Vol. 759, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

• Patients with FOG exhibited a disrupted topological organization of functional brain networks. • Nodal centralities and functional connectivity increased in widely distributed networks in PD patients with FOG. • The altered nodal centralities in the right hippocampus were positively correlated with FOG severity. Freezing of gait (FOG) is a common and debilitating gait disturbance in patients with Parkinson's disease (PD), but the potential mechanisms are still unclear. This study aimed to explore alterations in the topological organization of whole-brain functional networks in PD patients with FOG. We recruited 75 patients with PD, 37 patients with FOG and 38 patients without FOG, to undergo resting-state functional magnetic resonance imaging (fMRI). The whole-brain functional networks were constructed, and the topological properties at three (global, nodal, and connectional) levels were analyzed using graph theory approaches. Compared with patients without FOG, patients with FOG exhibited altered global topological properties (a significant decrease in the normalized clustering coefficient and small-worldness), implying a shift toward randomization in their functional brain networks. At the node and connectional levels, patients with FOG showed increased nodal centralities and functional connectivity in the sensorimotor network, frontoparietal network, visual network, subcortical and limbic regions, and decreased nodal centralities in the frontoparietal network and the cerebellum. Furthermore, the altered nodal centralities in the right hippocampus (HIP) were positively correlated with FOG severity. This study suggests that FOG in PD is associated with disrupted topological organization of whole-brain functional networks, involving dysfunction of the multiple networks. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043940
Volume :
759
Database :
Academic Search Index
Journal :
Neuroscience Letters
Publication Type :
Academic Journal
Accession number :
151590944
Full Text :
https://doi.org/10.1016/j.neulet.2021.135970