Literature DB >> 8739405

Morphometric evaluation of the hydrocephalic brain: relationships with cognitive development.

J M Fletcher1, T P Bohan, M E Brandt, L A Kramer, B L Brookshire, K Thorstad, K C Davidson, D J Francis, S R McCauley, J E Baumgartner.   

Abstract

The effects of early hydrocephalus and related brain anomalies on cognitive skills are not well understood. In this study, magnetic resonance scans were obtained from 99 children aged from 6 to 13 years with either shunted hydrocephalus (n = 42) or arrested (unshunted) hydrocephalus (n = 19), from patient controls with no hydrocephalus (n = 23), and from normal, nonpatient controls (n = 15). Lateral ventricle volumes and area measurements of the internal capsules and centra semiovale in both hemispheres were obtained from these scans, along with area measurements of the corpus callosum. Results revealed reductions in the size of the corpus callosum in the shunted hydrocephalus group. In addition, lateral ventricle volumes were larger and internal capsule areas were smaller in both hemispheres in children with shunted and arrested hydrocephalus. The centra semiovale measurements did not differentiate the groups. Correlating these measurements with concurrent assessments of verbal and nonverbal cognitive skills, motor abilities, and executive functions revealed robust relationships only between the area of the corpus callosum and nonverbal cognitive skills and motor abilities. These results support the theory of a prominent role for the corpus callosum defects characteristic of many children with shunted hydrocephalus in the spatial cognition deficits commonly observed in these children.

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Year:  1996        PMID: 8739405     DOI: 10.1007/bf00301250

Source DB:  PubMed          Journal:  Childs Nerv Syst        ISSN: 0256-7040            Impact factor:   1.475


  13 in total

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Authors:  D Riva; N Milani; C Giorgi; C Pantaleoni; C Zorzi; M Devoti
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5.  Cerebral white matter and cognition in hydrocephalic children.

Authors:  J M Fletcher; T P Bohan; M E Brandt; B L Brookshire; S R Beaver; D J Francis; K C Davidson; N M Thompson; M E Miner
Journal:  Arch Neurol       Date:  1992-08

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  22 in total

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7.  Sustained attention in children with two etiologies of early hydrocephalus.

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8.  Partial agenesis of the corpus callosum in spina bifida meningomyelocele and potential compensatory mechanisms.

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10.  Structure, integrity, and function of the hypoplastic corpus callosum in spina bifida myelomeningocele.

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