Literature DB >> 22875857

Functional significance of atypical cortical organization in spina bifida myelomeningocele: relations of cortical thickness and gyrification with IQ and fine motor dexterity.

Amery Treble1, Jenifer Juranek, Karla K Stuebing, Maureen Dennis, Jack M Fletcher.   

Abstract

The cortex in spina bifida myelomeningocele (SBM) is atypically organized, but it is not known how specific features of atypical cortical organization promote or disrupt cognitive and motor function. Relations of deviant cortical thickness and gyrification with IQ and fine motor dexterity were investigated in 64 individuals with SBM and 26 typically developing (TD) individuals, aged 8-28 years. Cortical thickness and 3D local gyrification index (LGI) were quantified from 33 cortical regions per hemisphere using FreeSurfer. Results replicated previous findings, showing regions of higher and lower cortical thickness and LGI in SBM relative to the TD comparison individuals. Cortical thickness and LGI were negatively associated in most cortical regions, though less consistently in the TD group. Whereas cortical thickness and LGI tended to be negatively associated with IQ and fine motor outcomes in regions that were thicker or more gyrified in SBM, associations tended to be positive in regions that were thinner or less gyrified in SBM. The more deviant the levels of cortical thickness and LGI-whether higher or lower relative to the TD group-the more impaired the IQ and fine motor outcomes, suggesting that these cortical atypicalities in SBM are functionally maladaptive, rather than adaptive.

Keywords:  atypical cortical organization; cortical thickness; gyrification; neurobehavioral function; spina bifida

Mesh:

Year:  2012        PMID: 22875857      PMCID: PMC3767957          DOI: 10.1093/cercor/bhs226

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  79 in total

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4.  Brain mechanisms for reading and language processing in spina bifida meningomyelocele: a combined magnetic source- and structural magnetic resonance imaging study.

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  18 in total

1.  Cognitive slowing and its underlying neurobiology in temporal lobe epilepsy.

Authors:  Gyujoon Hwang; Kevin Dabbs; Lisa Conant; Veena A Nair; Jed Mathis; Dace N Almane; Andrew Nencka; Rasmus Birn; Colin Humphries; Manoj Raghavan; Edgar A DeYoe; Aaron F Struck; Rama Maganti; Jeffrey R Binder; Elizabeth Meyerand; Vivek Prabhakaran; Bruce Hermann
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2.  Gray matter integrity within regions of the dorsolateral prefrontal cortical-subcortical network predicts executive function and fine motor dexterity in spina bifida.

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Review 4.  Are Shunt Revisions Associated with IQ in Congenital Hydrocephalus? A Meta -Analysis.

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5.  Cortical Thickness and Local Gyrification in Children with Developmental Dyslexia.

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6.  Path Signature Neural Network of Cortical Features for Prediction of Infant Cognitive Scores.

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7.  Plasticity of Interhemispheric Temporal Lobe White Matter Pathways Due to Early Disruption of Corpus Callosum Development in Spina Bifida.

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Review 8.  Functional plasticity in childhood brain disorders: when, what, how, and whom to assess.

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Review 10.  Spina bifida.

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