Literature DB >> 25697159

The connectomics of brain disorders.

Alex Fornito1, Andrew Zalesky2, Michael Breakspear3.   

Abstract

Pathological perturbations of the brain are rarely confined to a single locus; instead, they often spread via axonal pathways to influence other regions. Patterns of such disease propagation are constrained by the extraordinarily complex, yet highly organized, topology of the underlying neural architecture; the so-called connectome. Thus, network organization fundamentally influences brain disease, and a connectomic approach grounded in network science is integral to understanding neuropathology. Here, we consider how brain-network topology shapes neural responses to damage, highlighting key maladaptive processes (such as diaschisis, transneuronal degeneration and dedifferentiation), and the resources (including degeneracy and reserve) and processes (such as compensation) that enable adaptation. We then show how knowledge of network topology allows us not only to describe pathological processes but also to generate predictive models of the spread and functional consequences of brain disease.

Entities:  

Mesh:

Year:  2015        PMID: 25697159     DOI: 10.1038/nrn3901

Source DB:  PubMed          Journal:  Nat Rev Neurosci        ISSN: 1471-003X            Impact factor:   34.870


  429 in total

1.  Disentangling Brain Graphs: A Note on the Conflation of Network and Connectivity Analyses.

Authors:  Sean L Simpson; Paul J Laurienti
Journal:  Brain Connect       Date:  2015-10-15

2.  A transcriptional signature of hub connectivity in the mouse connectome.

Authors:  Ben D Fulcher; Alex Fornito
Journal:  Proc Natl Acad Sci U S A       Date:  2016-01-15       Impact factor: 11.205

3.  Synthetic consciousness: the distributed adaptive control perspective.

Authors:  Paul F M J Verschure
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2016-08-19       Impact factor: 6.237

4.  Brain network modularity predicts cognitive training-related gains in young adults.

Authors:  Pauline L Baniqued; Courtney L Gallen; Michael B Kranz; Arthur F Kramer; Mark D'Esposito
Journal:  Neuropsychologia       Date:  2019-05-25       Impact factor: 3.139

5.  Connected brains and minds--The UMCD repository for brain connectivity matrices.

Authors:  Jesse A Brown; John D Van Horn
Journal:  Neuroimage       Date:  2015-08-24       Impact factor: 6.556

6.  Default mode network abnormalities in posttraumatic stress disorder: A novel network-restricted topology approach.

Authors:  Teddy J Akiki; Christopher L Averill; Kristen M Wrocklage; J Cobb Scott; Lynnette A Averill; Brian Schweinsburg; Aaron Alexander-Bloch; Brenda Martini; Steven M Southwick; John H Krystal; Chadi G Abdallah
Journal:  Neuroimage       Date:  2018-05-03       Impact factor: 6.556

7.  The superficial white matter in temporal lobe epilepsy: a key link between structural and functional network disruptions.

Authors:  Min Liu; Boris C Bernhardt; Seok-Jun Hong; Benoit Caldairou; Andrea Bernasconi; Neda Bernasconi
Journal:  Brain       Date:  2016-06-29       Impact factor: 13.501

8.  Dynamic changes of functional segregation and integration in vulnerability and resilience to schizophrenia.

Authors:  Jia Duan; Mingrui Xia; Fay Y Womer; Miao Chang; Zhiyang Yin; Qian Zhou; Yue Zhu; Zhuang Liu; Xiaowei Jiang; Shengnan Wei; Francis Anthony O'Neill; Yong He; Yanqing Tang; Fei Wang
Journal:  Hum Brain Mapp       Date:  2019-01-15       Impact factor: 5.038

9.  Cerebral and cerebellar grey matter atrophy in Friedreich ataxia: the IMAGE-FRDA study.

Authors:  Louisa P Selvadurai; Ian H Harding; Louise A Corben; Monique R Stagnitti; Elsdon Storey; Gary F Egan; Martin B Delatycki; Nellie Georgiou-Karistianis
Journal:  J Neurol       Date:  2016-08-13       Impact factor: 4.849

10.  Detecting and Testing Altered Brain Connectivity Networks with K-partite Network Topology.

Authors:  Shuo Chen; F DuBois Bowman; Yishi Xing
Journal:  Comput Stat Data Anal       Date:  2019-07-09       Impact factor: 1.681

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