Literature DB >> 27305688

Directed Functional Networks in Alzheimer's Disease: Disruption of Global and Local Connectivity Measures.

Saeedeh Afshari, Mahdi Jalili.   

Abstract

Techniques available in graph theory can be applied to signals recorded from human brain. In network analysis of EEG signals, the individual nodes are EEG sensor locations and the edges correspond to functional relations between them that are extracted from EEG time series. In this paper, we study EEG-based directed functional networks in Alzheimer's disease (AD). To this end, directed connectivity matrices of 25 AD patients and 26 healthy subjects are processed and a number of meaningful graph theory metrics are studied. Our data show that functional networks of AD brains have significantly reduced global connectivity in alpha and beta bands (P < 0.05). The AD brains have significantly higher local connectivity than healthy controls in alpha and beta bands. This decreased profile in global connectivity can be linked to compensatory increased local connectivity as a result of wide-spread decline in the long-range connections. We also study resiliency of brain networks against targeted attack to hub nodes and find that AD networks are less resilient than healthy brains in alpha and beta bands.

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Year:  2016        PMID: 27305688     DOI: 10.1109/JBHI.2016.2578954

Source DB:  PubMed          Journal:  IEEE J Biomed Health Inform        ISSN: 2168-2194            Impact factor:   5.772


  15 in total

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5.  Functional Brain Networks: Does the Choice of Dependency Estimator and Binarization Method Matter?

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Review 8.  Brain network disintegration as a final common pathway for delirium: a systematic review and qualitative meta-analysis.

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10.  Relationship between Autistic Spectrum Trait and Regional Cerebral Blood Flow in Healthy Male Subjects.

Authors:  Miho Ota; Junko Matsuo; Noriko Sato; Toshiya Teraishi; Hiroaki Hori; Kotaro Hattori; Yoko Kamio; Norihide Maikusa; Hiroshi Matsuda; Hiroshi Kunugi
Journal:  Psychiatry Investig       Date:  2018-09-13       Impact factor: 2.505

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