Aug 2026· Frontiers in Aging Neuroscience· Vol 18· 0 citations· 79 references
Medicine
TL;DR
It is suggested that MCI and AD are associated with distinct patterns of directional information flow within prefrontal networks, characterized by reduced convergence toward FPC-R and increased directional influence toward DLPFC-L.
Abstract
Background Alzheimer’s disease (AD) is increasingly recognized as involving network-level dysfunction rather than isolated regional impairment. Although functional and effective connectivity have been studied in dementia, the reorganization of directional information flow within prefrontal networks remains incompletely characterized, particularly with functional near-infrared spectroscopy (fNIRS). Objective This study investigated whether target-level convergence of directional effective connectivity within the prefrontal cortex differs across clinically defined cognitive groups, with emphasis on the mild cognitive impairment (MCI) vs. AD contrast. Methods fNIRS signals were recorded from 60 participants (healthy controls (HC), MCI, and AD) during resting state and cognitive paradigms, including working memory (2-back), semantic verbal fluency (SVFT), and Stroop tasks. Signals from 48 prefrontal channels were aggregated into eight anatomically defined regions. Directional interactions were quantified using transfer entropy (TE) with adaptive hyperparameter tuning. Group differences were assessed using linear mixed-effects models with covariate adjustment and target-wise false discovery rate correction. Robustness was evaluated through parameter sensitivity, covariate, and surrogate-normalization analyses. Results The analysis revealed structured target-level convergence patterns of directional connectivity across clinically defined cognitive groups, with the most prominent alterations observed in the MCI vs. AD comparison. Compared with MCI, AD showed reduced directed information flow to the right frontopolar cortex (FPC-R) during the 2-back and SVFT tasks (β = −0.71 to −1.18, q < 0.05), indicating diminished convergence of inputs from distributed prefrontal regions. Conversely, convergence toward the left dorsolateral prefrontal cortex (DLPFC-L) increased across multiple paradigms (β = 0.56–0.85, q < 0.05). Additional task-specific alterations were observed during the Stroop paradigm, although some effects demonstrated reduced stability in sensitivity analyses. Exploratory ROC analysis suggested contrast-specific discriminative utility of selected convergence features, with moderate performance in MCI vs. AD (AUC ≈ 0.77). Conclusion These findings suggest that MCI and AD are associated with distinct patterns of directional information flow within prefrontal networks, characterized by reduced convergence toward FPC-R and increased directional influence toward DLPFC-L. Collectively, the results indicate that TE applied to task-based fNIRS can capture directional alterations in network connectivity, highlighting the potential of directional connectivity metrics for studying network-level changes associated with cognitive decline.
Alzheimer's disease (AD) is a progressive neurodegenerative disorder characterized by large-scale network disruption. While static functional connectivity (sFC) has been extensively studied, dynamic functional connectivity (dFC) and its discriminative value across the AD spectrum remain insufficiently understood. In th...
Rong Guo, Deyu Li, Xingxing Zhang et al.· Experimental Gerontology· 0 citations
Alzheimer’s disease (AD) is marked by progressive network disconnection that begins decades before symptoms emerge, yet detecting early functional disruptions remains a key challenge. Transcranial magnetic stimulation combined with electroencephalography (TMS–EEG) provides a direct, non-invasive probe of cortical...
G. Bertazzoli, E. Canu, C. Bagattini et al.· Alzheimer's Research & T...· 0 citations
Early identification of mild cognitive impairment in Parkinson’s disease (PD-MCI) is crucial for delaying dementia progression, yet the mechanisms underlying cortical excitability and time-varying network dysconnectivity remain elusive. This study utilized transcranial magnetic stimulation combined with electroencephal...
Qi Zhu, Guangying Pei, Meng-Xuan Hu et al.· Journal of Physics, Conferen...· 0 citations
The neurobiological basis of cognitive impairment in Binswanger disease remains unclear. We compared 21 Binswanger disease patients with mild cognitive impairment (BD-MCI) and 21 without cognitive impairment (BD-C) using resting-state fMRI. No healthy control group was included. All participants completed cognitive ass...
Hai-Yi Zhang, Juan Lu, Jia-Jun Yue et al.· Psychiatry research. Neuroim...· 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.
The overall prevalence of alpha effects may indicate its potential to provide insight into nuanced changes associated with AD-related networks, with the caveat that most studies were during the resting state where alpha is the dominant frequency.
E. Paitel, C. Otteman, Mary C. Polking et al.· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.