Network-based statistical mapping of structural covariance alterations in pathologically confirmed argyrophilic grain disease and Alzheimer's disease: An exploratory pilot study

Background Although neuroimaging differences from Alzheimer's disease (AD) in argyrophilic grain disease (AGD), a limbic-predominant 4-repeat tauopathy, have been evaluated, edge-wise alterations in structural similarity remain unexamined. Objective As an exploratory pilot study, to apply network-based statistics (NBS) to individualized structural covariance (ISC) matrices to identify morphological-similarity alterations in AGD and AD. Methods We analyzed 3D T1-weighted MRI from 13 pathologically confirmed AGD, 17 AD, and 18 healthy controls (HC). Gray-matter volumes from a 170-region atlas were used to compute ISC matrices. Between-group differences were assessed using NBS (threshold t = 3.5; 5000 permutations). Component strength was the sum of ISC edge weights within the significant component. Stability was assessed via leave-one-out analyses and bootstrap confidence intervals. Significant edges were mapped to Yeo 7 resting-state networks. Results All three comparisons yielded a single significant component (HC versus AD: 340 edges; HC versus AGD: 80 edges; AGD versus AD: 39 edges). Component strength was higher in the group with less widespread morphological disruption (HC > AD; HC > AGD; AGD > AD), with non-overlapping bootstrap confidence intervals. Mapping to resting-state networks revealed widespread posterior cortico-limbic involvement in AD and a limbic-predominant pattern in AGD. In the AGD versus AD comparison, AD showed greater disruption within frontoparietal, somatomotor, and ventral attention systems. Component strength correlated positively with Mini-Mental State Examination scores (r = 0.48, p = 0.01). Conclusions NBS applied to ISC matrices provides preliminary evidence of altered morphological similarity in AGD and AD, with AGD showing a limbic-predominant subnetwork and AD demonstrating broader posterior cortico-limbic involvement.

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Journal
Journal of Alzheimer s Disease
Published
2026-08-28
DOI
https://doi.org/10.1177/13872877261480673
Primary Topic
Functional Brain Connectivity Studies
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article
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article

Network-based statistical mapping of structural covariance alterations in pathologically confirmed argyrophilic grain disease and Alzheimer's disease: An exploratory pilot study

Keita Sakurai, Daita Kaneda, Satoru Morimoto, Haruto Shibata et al.
Journal of Alzheimer s Disease
Functional Brain Connectivity Studies
article

Network-based statistical mapping of structural covariance alterations in pathologically confirmed argyrophilic grain disease and Alzheimer's disease: An exploratory pilot study

Keita Sakurai, Daita Kaneda, Satoru Morimoto, Haruto Shibata, Yoshio Hashizume, Yuto Uchida
article en

Abstract

Background Although neuroimaging differences from Alzheimer's disease (AD) in argyrophilic grain disease (AGD), a limbic-predominant 4-repeat tauopathy, have been evaluated, edge-wise alterations in structural similarity remain unexamined. Objective As an exploratory pilot study, to apply network-based statistics (NBS) to individualized structural covariance (ISC) matrices to identify morphological-similarity alterations in AGD and AD. Methods We analyzed 3D T1-weighted MRI from 13 pathologically confirmed AGD, 17 AD, and 18 healthy controls (HC). Gray-matter volumes from a 170-region atlas were used to compute ISC matrices. Between-group differences were assessed using NBS (threshold t = 3.5; 5000 permutations). Component strength was the sum of ISC edge weights within the significant component. Stability was assessed via leave-one-out analyses and bootstrap confidence intervals. Significant edges were mapped to Yeo 7 resting-state networks. Results All three comparisons yielded a single significant component (HC versus AD: 340 edges; HC versus AGD: 80 edges; AGD versus AD: 39 edges). Component strength was higher in the group with less widespread morphological disruption (HC > AD; HC > AGD; AGD > AD), with non-overlapping bootstrap confidence intervals. Mapping to resting-state networks revealed widespread posterior cortico-limbic involvement in AD and a limbic-predominant pattern in AGD. In the AGD versus AD comparison, AD showed greater disruption within frontoparietal, somatomotor, and ventral attention systems. Component strength correlated positively with Mini-Mental State Examination scores (r = 0.48, p = 0.01). Conclusions NBS applied to ISC matrices provides preliminary evidence of altered morphological similarity in AGD and AD, with AGD showing a limbic-predominant subnetwork and AD demonstrating broader posterior cortico-limbic involvement.

Journal of Alzheimer s Disease
Johns Hopkins University (US), Nagoya City University (JP), Fukushimura Hospital (JP), Regenerative Medicine Institute (MX), Choju Medical Institute (JP), National Center for Geriatrics and Gerontology (JP), Higashi Nagoya National Hospital (JP)
Openalex Percentile: Top 9%
Functional Brain Connectivity Studies
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