Local brain network alterations in prodromal and De Novo Parkinson's disease: basal ganglia functional connectivity mediates the association between regional homogeneity and motor manifestations.
Jul 2026· Behavioral and Brain Functions· 0 citations
Medicine
TL;DR
Along with the transition from the prodromal to the manifested period and the development of motor signs, network alterations of BG loop may play an important mediating role between local alterations in occipital-related brain regions and tremor performance.
Abstract
Background
AND
Objective
Recently, three motor phases of Parkinson's disease (PD) have been proposed (a silent period when nigrostriatal loss begins, a prodromal motor period with subtle focal manifestations, and clinical PD) accompanying the early loss of nigrostriatal dopaminergic pathways and the dysfunction of the basal ganglia (BG) loop, which produce vital network alterations that impact motor coordination. However, the relationships among local brain abnormalities, BG-based functional connectivity (FC) and motor performance in early PD remain unclear. Thus, our study aims to characterize local brain activity dysfunction and large-scale network disorganization, and further explore the potential neural pathway from local dysrhythmia to network-level dysfunction ultimately to clinical motor deficits.
Methods
We enrolled 32 healthy controls (HC), 20 prodromal PD (pPD) patients without mild motor signs (pPD-NMMS), 42 pPD patients with MMS (pPD-MMS), and 58 de novo PD (dPD) patients. We calculated the regional homogeneity (ReHo) and FC values of BG subregions and differences among groups. Furthermore, correlation analyses between ReHo, FC values, and motor sub-scores were analyzed. Additionally, a mediation analysis was conducted to investigate the mediating function of FC-distinct brain regions between ReHo values and motor performance.
Results
Compared with the other groups, pPD-NMMS patients had increased ReHo values in the right lingual gyrus (LING). However, the pPD-MMS group had increased FC values in the left globus pallidus (GP), the bilateral ventromedial putamen (vmPu) to sensorimotor regions, and the left vmPu, the left dorsal caudate (dCa) to visual cortex regions. Both ReHo values in the right LING and FC values of the left GP and the left vmPu were correlated with tremor scores. Eventually, mediation analyses revealed that FC values between the left GP and the right postcentral gyrus (PoCG), and between the left vmPu and the right inferior occipital gyrus (IOG) mediated the relationship between ReHo values in the right LING and tremor scores.
Conclusion
Along with the transition from the prodromal to the manifested period and the development of motor signs, network alterations of BG loop may play an important mediating role between local alterations in occipital-related brain regions and tremor performance.
Dopaminergic depletion is associated with a targeted SMN reorganization, potentially maintaining network information flow despite progressive hub loss, and whether this reorganization represents compensation or a consequence of progressive pathology requires further longitudinal assessment.
Adrian L. Asendorf, Verena Dzialas, T. van Eimeren et al.· Movement Disorders· 0 citations
Schizophrenia is a severe psychiatric disorder marked by widespread brain abnormalities. Recent studies suggest that pathological changes may originate from focal 'epicenter' regions and subsequently spread to other brain areas strongly connected to them. Investigating drug-naïve first-episode schizophrenia (dn-FES) pa...
Ziyu Wang, Kangkang Xue, Yan Zhang et al.· Progress in Neuro-psychophar...· 0 citations
Intraregional topological reorganization within the frontal lobe, most prominently in RMF.L, was associated with motor impairment in PD and may reflect maladaptive network remodeling, and high-resolution network analysis may provide a sensitive framework for characterizing intraregional structural reorganization.
It is suggested that hyposmia-free iRBD patients exhibit compensatory reorganization of brain functional networks centered on the left superior frontal gyrus, supporting the early cortical compensation hypothesis in the "body-first" α-synucleinopathy subtype.
BACKGROUND
Non-motor symptoms may precede motor diagnosis in Parkinson's disease (PD), but whether distinct prodromal phenotypes exhibit differential limbic structural alterations remains unclear.
PURPOSE
To investigate limbic structural alterations across prodromal PD phenotypes defined by rapid eye movement sleep b...
Yuan-Yuan Zhao, Luo-Yu Wang, Yi-Han Suo et al.· Journal of Magnetic Resonanc...· 1 citation
The pattern of microstructural results suggests that increased cellularity may support reduced cognitive decline in individuals with PD and greater motor skill fitness.
B. Newman, R. Foreman, E. Donahue et al.· Frontiers in Neurology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.