Default-mode network activity distinguishes Alzheimer's disease from healthy aging: Evidence from functional MRI
Активность сети режима покоя отличает болезнь Альцгеймера от нормального старения: данные функциональной МРТ
2004-03-15
SCID: 54.1/h5u6j9ug
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Alzheimer's diseasedefault-mode networkhippocampusposterior cingulate cortexresting-state fMRI
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Abstract (AI)
Recent functional imaging studies have revealed coactivation in a distributed network of cortical regions that characterizes the resting state, or default mode, of the human brain. Among the brain regions implicated in this network, several, including the posterior cingulate cortex and inferior parietal lobes, have also shown decreased metabolism early in the course of Alzheimer's disease (AD). We reasoned that default-mode network activity might therefore be abnormal in AD. To test this hypothesis, we used independent component analysis to isolate the network in a group of 13 subjects with mild AD and in a group of 13 age-matched elderly controls as they performed a simple sensory-motor processing task. Three important findings are reported. Prominent coactivation of the hippocampus, detected in all groups, suggests that the default-mode network is closely involved with episodic memory processing. The AD group showed decreased resting-state activity in the posterior cingulate and hippocampus, suggesting that disrupted connectivity between these two regions accounts for the posterior cingulate hypometabolism commonly detected in positron emission tomography studies of early AD. Finally, a goodness-of-fit analysis applied at the individual subject level suggests that activity in the default-mode network may ultimately prove a sensitive and specific biomarker for incipient AD.
Key Findings
1
Default-mode network (DMN) shows prominent hippocampal coactivation across all subjects, implicating DMN in episodic memory processing.
2
Disrupted connectivity between the posterior cingulate and hippocampus may underlie posterior cingulate hypometabolism observed in early AD.
3
Individual-subject goodness-of-fit analysis indicates DMN activity may serve as a sensitive and specific biomarker for incipient Alzheimer's disease.
4
Subjects with mild Alzheimer's disease exhibit decreased resting-state DMN activity in the hippocampus.
5
Subjects with mild Alzheimer's disease exhibit decreased resting-state DMN activity in the posterior cingulate cortex.
Research Object
Default-mode network (resting-state distributed cortical network) in human brains of mild Alzheimer's disease patients and age-matched healthy elderly controls
Research Subject
Differences in resting-state activity/connectivity of the default-mode network—notably posterior cingulate and hippocampal coactivation—and its potential as a sensitive and specific biomarker distinguishing mild Alzheimer's disease from healthy aging
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2004-03-15
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