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Post published on Twitter/X on 24 Jul 2013 10:00

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Christine Ecker, Lisa Ronan, Yue Feng, Eileen Daly, Clodagh Murphy, Cedric E. Ginestet, Michael Brammer, Paul C. Fletcher, et al. (2013). Intrinsic gray-matter connectivity of the brain in adults with autism spectrum disorder. Proceedings of the National Academy of Sciences, 110(32), 13222-13227. National Academy of Sciences.

Publication date
22 Jul 2013
Identifier
10.1073/pnas.1221880110
Authors
Christine Ecker, Lisa Ronan, Yue Feng, Eileen Daly, Clodagh Murphy, Cedric E. Ginestet, Michael Brammer, Paul C. Fletcher, Edward T. Bullmore, John Suckling, Simon Baron-Cohen, Steve Williams, Eva Loth, MRC AIMS Consortium, Declan G. M. Murphy, A. J. Bailey, S. Baron-Cohen, P. F. Bolton, E. T. Bullmore, S. Carrington, B. Chakrabarti, E. M. Daly, S. C. Deoni, C. Ecker, F. Happe, J. Henty, P. Jezzard, P. Johnston, D. K. Jones, M. C. Lai, M. V. Lombardo, A. Madden, D. Mullins, C. M. Murphy, D. G. Murphy, G. Pasco, S. Sadek, D. Spain, R. Steward, J. Suckling, S. Wheelwright, S. C. Williams
Source
Proceedings of the National Academy of Sciences
Details
110(32), 13222-13227
Reference type
article
Publisher
National Academy of Sciences
Metadata source
crossref

Abstract

Autism spectrum disorders (ASD) are a group of neurodevelopmental conditions that are accompanied by atypical brain connectivity. So far, in vivo evidence for atypical structural brain connectivity in ASD has mainly been based on neuroimaging studies of cortical white matter. However, genetic studies suggest that abnormal connectivity in ASD may also affect neural connections within the cortical gray matter. Such intrinsic gray-matter connections are inherently more difficult to describe in vivo but may be inferred from a variety of surface-based geometric features that can be measured using magnetic resonance imaging. Here, we present a neuroimaging study that examines the intrinsic cortico-cortical connectivity of the brain in ASD using measures of “cortical separation distances” to assess the global and local intrinsic “wiring costs” of the cortex (i.e., estimated length of horizontal connections required to wire the cortex within the cortical sheet). In a sample of 68 adults with ASD and matched controls, we observed significantly reduced intrinsic wiring costs of cortex in ASD, both globally and locally. Differences in global and local wiring cost were predominantly observed in fronto-temporal regions and also significantly predicted the severity of social and repetitive symptoms (respectively). Our study confirms that atypical cortico-cortical “connectivity” in ASD is not restricted to the development of white-matter connections but may also affect the intrinsic gray-matter architecture (and connectivity) within the cortical sheet. Thus, the atypical connectivity of the brain in ASD is complex, affecting both gray and white matter, and forms part of the core neural substrates underlying autistic symptoms.

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