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Low and high-order topological disruption of functional networks in multiple system atrophy with freezing of gait: A resting-state study
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Zhao, Mengwan
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Pang, Huize
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Li, Xiaolu
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Bu, Shuting
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Wang, Juzhou
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Liu, Yu
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Jiang, Yueluan
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MR Res Collaborat, Siemens Healthineers, Beijing 7 Wangjing Zhonghuan Nanlu, Beijing 100102, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China

Fan, Guoguang
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China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China
机构:
[1] China Med Univ, Dept Radiol, Hosp 1, 155 Nanjing North St, Shenyang 110001, Liaoning, Peoples R China
[2] MR Res Collaborat, Siemens Healthineers, Beijing 7 Wangjing Zhonghuan Nanlu, Beijing 100102, Peoples R China
关键词:
Multiple system atrophy;
Freezing of gait;
Resting -state fMRI;
Functional network;
PARKINSONS-DISEASE;
NUCLEUS-ACCUMBENS;
CONNECTIVITY;
MOTOR;
EMOTION;
CORTEX;
D O I:
10.1016/j.nbd.2024.106504
中图分类号:
Q189 [神经科学];
学科分类号:
071006 ;
摘要:
Objective: Freezing of gait (FOG), a specific survival-threatening gait impairment, needs to be urgently explored in patients with multiple system atrophy (MSA), which is characterized by rapid progression and death within 10 years of symptom onset. The objective of this study was to explore the topological organisation of both lowand high-order functional networks in patients with MAS and FOG. Method: Low-order functional connectivity (LOFC) and high-order functional connectivity FC (HOFC) networks were calculated and further analysed using the graph theory approach in 24 patients with MSA without FOG, 20 patients with FOG, and 25 healthy controls. The relationship between brain activity and the severity of freezing symptoms was investigated in patients with FOG. Results: Regarding global topological properties, patients with FOG exhibited alterations in the whole-brain network, dorsal attention network (DAN), frontoparietal network (FPN), and default network (DMN), compared with patients without FOG. At the node level, patients with FOG showed decreased nodal centralities in sensorimotor network (SMN), DAN, ventral attention network (VAN), FPN, limbic regions, hippocampal network and basal ganglia network (BG), and increased nodal centralities in the FPN, DMN, visual network (VIN) and, cerebellar network. The nodal centralities of the right inferior frontal sulcus, left lateral amygdala and left nucleus accumbens (NAC) were negatively correlated with the FOG severity. Conclusion: This study identified a disrupted topology of functional interactions at both low and high levels with extensive alterations in topological properties in MSA patients with FOG, especially those associated with damage to the FPN. These findings offer new insights into the dysfunctional mechanisms of complex networks and suggest potential neuroimaging biomarkers for FOG in patients with MSA.
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