Literature DB >> 30346490

Brain structural alterations are distributed following functional, anatomic and genetic connectivity.

Franco Cauda1,2, Andrea Nani1,2, Jordi Manuello1,2, Enrico Premi3,4, Sara Palermo5, Karina Tatu1,2, Sergio Duca1, Peter T Fox6,7, Tommaso Costa1,2.   

Abstract

The pathological brain is characterized by distributed morphological or structural alterations in the grey matter, which tend to follow identifiable network-like patterns. We analysed the patterns formed by these alterations (increased and decreased grey matter values detected with the voxel-based morphometry technique) conducting an extensive transdiagnostic search of voxel-based morphometry studies in a large variety of brain disorders. We devised an innovative method to construct the networks formed by the structurally co-altered brain areas, which can be considered as pathological structural co-alteration patterns, and to compare these patterns with three associated types of connectivity profiles (functional, anatomical, and genetic). Our study provides transdiagnostical evidence that structural co-alterations are influenced by connectivity constraints rather than being randomly distributed. Analyses show that although all the three types of connectivity taken together can account for and predict with good statistical accuracy, the shape and temporal development of the co-alteration patterns, functional connectivity offers the better account of the structural co-alteration, followed by anatomic and genetic connectivity. These results shed new light on the possible mechanisms at the root of neuropathological processes and open exciting prospects in the quest for a better understanding of brain disorders.

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Year:  2018        PMID: 30346490      PMCID: PMC6202577          DOI: 10.1093/brain/awy252

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  120 in total

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4.  Threshold-free cluster enhancement: addressing problems of smoothing, threshold dependence and localisation in cluster inference.

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Journal:  Trends Neurosci       Date:  2013-07-19       Impact factor: 13.837

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  16 in total

1.  Structural Variability in the Human Brain Reflects Fine-Grained Functional Architecture at the Population Level.

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2.  Longitudinal increases in structural connectome segregation and functional connectome integration are associated with better recovery after mild TBI.

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Review 4.  Approaches to Defining Common and Dissociable Neurobiological Deficits Associated With Psychopathology in Youth.

Authors:  Antonia N Kaczkurkin; Tyler M Moore; Aristeidis Sotiras; Cedric Huchuan Xia; Russell T Shinohara; Theodore D Satterthwaite
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5.  BACON: A tool for reverse inference in brain activation and alteration.

Authors:  Tommaso Costa; Jordi Manuello; Mario Ferraro; Donato Liloia; Andrea Nani; Peter T Fox; Jack Lancaster; Franco Cauda
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Review 6.  The road ahead in clinical network neuroscience.

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Journal:  Netw Neurosci       Date:  2019-09-01

7.  Brain pathology recapitulates physiology: A network meta-analysis.

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8.  Autonomic responses to emotional linguistic stimuli and amplitude of low-frequency fluctuations predict outcome after severe brain injury.

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9.  Finding specificity in structural brain alterations through Bayesian reverse inference.

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10.  Hubs of long-distance co-alteration characterize brain pathology.

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Journal:  Hum Brain Mapp       Date:  2020-06-20       Impact factor: 5.038

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