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ASAF: altered spontaneous activity fingerprinting in Alzheimer’s disease based on multisite fMRI 被引量:3

ASAF: altered spontaneous activity fingerprinting in Alzheimer’s disease based on multisite fMRI
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摘要 Several monocentric studies have noted alterations in spontaneous brain activity in Alzheimer's disease (AD), although there is no consensus on the altered amplitude of low-frequency fluctuations in AD patients. The main aim of the present study was to identify a reliable and reproducible abnormal brain activity pattern in AD. The amplitude of local brain activity (AM), which can provide fast mapping of spontaneous brain activity across the whole brain, was evaluated based on multisite rs-fMRI data for 688 subjects (215 normal controls (NCs), 221 amnestic mild cognitive impairment (aMCI) 252 AD). Two-sample t-tests were used to detect group differences between AD patients and NCs from the same site. Differences in the AM maps were statistically analyzed via the Stouffer's meta-analysis. Consistent regions of lower spontaneous brain activity in the default mode network and increased activity in the bilateral hippocampus/parahippocampus, thalamus, caudate nucleus, orbital part of the middle frontal gyrus and left fusiform were observed in the AD patients compared with those in NCs. Significant correlations (P?<?0.05, Bonferroni corrected) between the normalized amplitude index and Mini-Mental State Examination scores were found in the identified brain regions, which indicates that the altered brain activity was associated with cognitive decline in the patients. Multivariate analysis and leave-one-site-out cross-validation led to a 78.49% prediction accuracy for single-patient classification. The altered activity patterns of the identified brain regions were largely correlated with the FDG-PET results from another independent study. These results emphasized the impaired brain activity to provide a robust and reproducible imaging signature of AD. Several monocentric studies have noted alterations in spontaneous brain activity in Alzheimer’s disease(AD), although there is no consensus on the altered amplitude of low-frequency fluctuations in AD patients. The main aim of the present study was to identify a reliable and reproducible abnormal brain activity pattern in AD. The amplitude of local brain activity(AM), which can provide fast mapping of spontaneous brain activity across the whole brain, was evaluated based on multisite rs-fMRI data for688 subjects(215 normal controls(NCs), 221 amnestic mild cognitive impairment(aMCI) 252 AD).Two-sample t-tests were used to detect group differences between AD patients and NCs from the same site. Differences in the AM maps were statistically analyzed via the Stouffer’s meta-analysis. Consistent regions of lower spontaneous brain activity in the default mode network and increased activity in the bilateral hippocampus/parahippocampus, thalamus, caudate nucleus, orbital part of the middle frontal gyrus and left fusiform were observed in the AD patients compared with those in NCs. Significant correlations(P < 0.05, Bonferroni corrected) between the normalized amplitude index and Mini-Mental State Examination scores were found in the identified brain regions, which indicates that the altered brain activity was associated with cognitive decline in the patients. Multivariate analysis and leave-one-siteout cross-validation led to a 78.49% prediction accuracy for single-patient classification. The altered activity patterns of the identified brain regions were largely correlated with the FDG-PET results from another independent study. These results emphasized the impaired brain activity to provide a robust and reproducible imaging signature of AD.
出处 《Science Bulletin》 SCIE EI CAS CSCD 2019年第14期998-1010,共13页 科学通报(英文版)
基金 supported by the National Key Research and Development Program of China (2016YFC1305904, 2016YFC1306300) the National Natural Science Foundation of China (81871438, 61633018, 81571062, 81471120, 61431012, 81430037) the Strategic Priority Research Program (B) of Chinese Academy of Sciences (XDB32020200) the Beijing Municipal Commission of Health and Family Planning (PXM2019_026283_000002)
关键词 Brain SPONTANEOUS activity Multisite Biomarkers Leave-one-site-out cross-validation Alzheimer's disease Brain spontaneous activity Multisite Biomarkers Leave-one-site-out cross-validation Alzheimer’s disease
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