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Articles, Behavioral/Systems/Cognitive

Altered Functional Brain Connectivity in a Non-Clinical Sample of Young Adults with Attention-Deficit/Hyperactivity Disorder

Luca Cocchi, Ivanei E. Bramati, Andrew Zalesky, Emi Furukawa, Leonardo F. Fontenelle, Jorge Moll, Gail Tripp and Paulo Mattos
Journal of Neuroscience 5 December 2012, 32 (49) 17753-17761; DOI: https://doi.org/10.1523/JNEUROSCI.3272-12.2012
Luca Cocchi
1Queensland Brain Institute, The University of Queensland, St Lucia, Queensland 4072, Australia,
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Ivanei E. Bramati
2D'Or Institute for Research and Education (IDOR), Rio de Janeiro, Brazil CEP 22281-100,
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Andrew Zalesky
3Melbourne Neuropsychiatry Centre, The University of Melbourne, Carlton South, Victoria 3053, Australia,
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Emi Furukawa
4Okinawa Institute of Science and Technology Graduate University (OIST), Okinawa, Japan 904-0495, and
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Leonardo F. Fontenelle
2D'Or Institute for Research and Education (IDOR), Rio de Janeiro, Brazil CEP 22281-100,
5Anxiety and Depression Research Program, Institute of Psychiatry of the Federal University of Rio de Janeiro, Rio de Janeiro, Brazil CEP 22290-140
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Jorge Moll
2D'Or Institute for Research and Education (IDOR), Rio de Janeiro, Brazil CEP 22281-100,
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Gail Tripp
4Okinawa Institute of Science and Technology Graduate University (OIST), Okinawa, Japan 904-0495, and
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Paulo Mattos
2D'Or Institute for Research and Education (IDOR), Rio de Janeiro, Brazil CEP 22281-100,
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Abstract

Attention-deficit/hyperactivity disorder (ADHD) is characterized by symptoms of inattention and hyperactivity/impulsivity that often persist in adulthood. There is a growing consensus that ADHD is associated with abnormal function of diffuse brain networks, but such alterations remain poorly characterized. Using resting-state functional magnetic resonance imaging, we characterized multivariate (complex network measures), bivariate (network-based statistic), and univariate (regional homogeneity) properties of brain networks in a non-clinical, drug-naive sample of high-functioning young men and women with ADHD (nine males, seven females) and a group of matched healthy controls. Data from our sample allowed the isolation of intrinsic functional connectivity alterations specific to ADHD diagnosis and symptoms that are not related to developmental delays, general cognitive dysfunction, or history of medication use. Multivariate results suggested that frontal, temporal, and occipital cortices were abnormally connected locally as well as with the rest of the brain in individuals with ADHD. Results from the network-based statistic support and extend multivariate results by isolating two brain networks comprising regions between which inter-regional connectivity was significantly altered in the ADHD group; namely, a frontal amygdala-occipital network and a frontal temporal-occipital network. Brain behavior correlations further highlighted the key role of altered orbitofrontal-temporal and frontal-amygdala connectivity for symptoms of inattention and hyperactivity/impulsivity. All univariate properties were similar between groups. Taken together, results from this study show that the diagnosis and the two main symptom dimensions of ADHD are related to altered intrinsic connectivity in orbitofrontal-temporal-occipital and fronto-amygdala-occipital networks. Accordingly, our findings highlight the importance of extending the conceptualization of ADHD beyond segregated fronto-striatal alterations.

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The Journal of Neuroscience: 32 (49)
Journal of Neuroscience
Vol. 32, Issue 49
5 Dec 2012
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Altered Functional Brain Connectivity in a Non-Clinical Sample of Young Adults with Attention-Deficit/Hyperactivity Disorder
Luca Cocchi, Ivanei E. Bramati, Andrew Zalesky, Emi Furukawa, Leonardo F. Fontenelle, Jorge Moll, Gail Tripp, Paulo Mattos
Journal of Neuroscience 5 December 2012, 32 (49) 17753-17761; DOI: 10.1523/JNEUROSCI.3272-12.2012

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Altered Functional Brain Connectivity in a Non-Clinical Sample of Young Adults with Attention-Deficit/Hyperactivity Disorder
Luca Cocchi, Ivanei E. Bramati, Andrew Zalesky, Emi Furukawa, Leonardo F. Fontenelle, Jorge Moll, Gail Tripp, Paulo Mattos
Journal of Neuroscience 5 December 2012, 32 (49) 17753-17761; DOI: 10.1523/JNEUROSCI.3272-12.2012
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