RESEARCH / DISCOVERY
← Back to the library

Disrupted brain functional network topology and potential network reorganization in early-stage Parkinson's disease with probable REM sleep behavior disorder.

Disrupted brain functional network topology and potential network reorganization in early-stage Parkinson's disease with probable REM sleep behavior disorder.

Read the original publication

Where did the research take place?

The study site has not been established. Author addresses may differ from where the research occurred.

CN · Author affiliation · country only

Department of Radiology, The Second Xiangya Hospital, Central South University, Changsha, China.
Location evidence

Explore research worldwide

A plain-language reading has not been prepared for this paper yet.

Original abstract

PURPOSE: Parkinson's disease with rapid eye movement sleep behavior disorder(RBD) often represents a more aggressive subtype, presenting more serious clinical manifestations even in early-stage disease. However, this subtype's specific whole-brain functional network alterations in the early stages of the disease remain unclear. Research was designed to explore the unique functional network alterations patterns in early PD with RBD and underlying abnormal neural network development mechanisms. METHOD: We gathered resting-state fMRI data of35 healthy controls (HC), 33 early PD with probable RBD (PD + pRBD), and 32 early PD without RBD (PD-RBD). We utilized graph theory along with network-based methods to analyze the data. Research was conducted on correlations between network indicators and clinical scores. RESULT: PD + pRBD exhibited significantly decreased local efficiency than PD-RBD (p = 0.031). Compared to HC, PD + pRBD demonstrated more severe network disruptions than PD-RBD, after FDR correction, including significantly reduced small-world properties (p = 0.003), more widespread nodal alterations (p < 0.05), and extensive functional connectivity disruptions (p < 0.05). Modular analysis revealed functional network connectivity abnormalities within and between multiple networks, characterized by concurrent reductions and abnormal enhancements in functional connectivity. CONCLUSION: Early PD + pRBD exhibit specific and more severe neurofunctional network impairment pattern. Characterized by more significantly disrupted neurofunctional network topology and widespread functional connectivity abnormalities across multiple brain networks, with potential functional network reorganization. These functioning abnormalities may serve as imaging biomarkers for this clinically malignant subtype and provide potential neurobiological mechanism for understanding its poorer clinical phenotype.

Explore another example or bring your own paper

Pasted text and PDF extraction stay on this computer. The local guide explains terms and surfaces passages; rewriting requires a configured local model. Scanned PDFs need OCR first.

RECORD & PROVENANCE