Literature DB >> 14974647

Effects of very low birthweight on brain structure in adulthood.

Matthew Allin1, Max Henderson, John Suckling, Chiara Nosarti, Teresa Rushe, Paul Fearon, Ann L Stewart, E T Bullmore, Larry Rifkin, Robin Murray.   

Abstract

Very-low-birthweight (VLBW) individuals are at high risk of brain injury in the perinatal period. We wished to determine how such early brain lesions affect brain structure in adulthood. Thirty-two VLBW adults (20 female, 12 male) and 18 term, normal birthweight sibling control individuals (nine female, nine male) underwent structural MRI at a mean age of 23 years 4 months (range 17 to 33 years; SD 3.4). Images were analyzed using an automated tissue segmentation algorithm in order to estimate whole brain tissue class volumes in native space. Images were then warped to a template image in standard space. There was no significant between-group difference in whole brain, grey matter, white matter, or total cerebral spinal fluid (CSF) volumes. However, lateral ventricular volume was significantly increased by 41% in those with VLBW. The ratio of grey to white matter was also significantly increased (by 10%) in those with VLBW. Group comparison maps showed widespread changes in the distribution of grey and white matter, and relative excess of ventricular CSF, in the brains of VLBW individuals. Increased ventricular volume predicted decreased grey matter in subcortical nuclei and limbic cortical structures, and decreased periventricular white matter. We conclude that these diffuse abnormalities of grey and white matter are a consequence of the interaction of perinatal brain injury and ongoing neurodevelopmental processes.

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Year:  2004        PMID: 14974647     DOI: 10.1017/s0012162204000088

Source DB:  PubMed          Journal:  Dev Med Child Neurol        ISSN: 0012-1622            Impact factor:   5.449


  37 in total

1.  Thalamic alterations in preterm neonates and their relation to ventral striatum disturbances revealed by a combined shape and pose analysis.

Authors:  Yi Lao; Yalin Wang; Jie Shi; Rafael Ceschin; Marvin D Nelson; Ashok Panigrahy; Natasha Leporé
Journal:  Brain Struct Funct       Date:  2014-11-01       Impact factor: 3.270

2.  Structural covariance in the cortex of very preterm adolescents: a voxel-based morphometry study.

Authors:  Chiara Nosarti; Andrea Mechelli; Aimee Herrera; Muriel Walshe; Sukhi S Shergill; Robin M Murray; Larry Rifkin; Matthew P G Allin
Journal:  Hum Brain Mapp       Date:  2010-09-17       Impact factor: 5.038

3.  Functional connectivity to a right hemisphere language center in prematurely born adolescents.

Authors:  Eliza H Myers; Michelle Hampson; Betty Vohr; Cheryl Lacadie; Stephen J Frost; Kenneth R Pugh; Karol H Katz; Karen C Schneider; Robert W Makuch; R Todd Constable; Laura R Ment
Journal:  Neuroimage       Date:  2010-03-25       Impact factor: 6.556

4.  Long-term neurobiological consequences of early postnatal hCMV-infection in former preterms: a functional MRI study.

Authors:  Maik Dorn; Karen Lidzba; Andrea Bevot; Rangmar Goelz; Till-Karsten Hauser; Marko Wilke
Journal:  Hum Brain Mapp       Date:  2013-09-11       Impact factor: 5.038

5.  Early risk, attention, and brain activation in adolescents born preterm.

Authors:  Dennis P Carmody; Margaret Bendersky; Stanley M Dunn; J Kevin DeMarco; Thomas Hegyi; Mark Hiatt; Michael Lewis
Journal:  Child Dev       Date:  2006 Mar-Apr

Review 6.  Brain injury in premature infants: a complex amalgam of destructive and developmental disturbances.

Authors:  Joseph J Volpe
Journal:  Lancet Neurol       Date:  2009-01       Impact factor: 44.182

7.  Selectively reduced posterior corpus callosum size in a population-based sample of young adults born with low birth weight.

Authors:  S M Aukland; R Westerhausen; K J Plessen; M D Odberg; I B Elgen; B S Peterson; L Ersland; G E Eide; K Rosendahl
Journal:  AJNR Am J Neuroradiol       Date:  2011-04-14       Impact factor: 3.825

8.  Longitudinal brain volume changes in preterm and term control subjects during late childhood and adolescence.

Authors:  Laura R Ment; Shelli Kesler; Betty Vohr; Karol H Katz; Heidi Baumgartner; Karen C Schneider; Susan Delancy; John Silbereis; Charles C Duncan; R Todd Constable; Robert W Makuch; Allan L Reiss
Journal:  Pediatrics       Date:  2009-02       Impact factor: 7.124

9.  Fgfr1 is required for cortical regeneration and repair after perinatal hypoxia.

Authors:  Devon M Fagel; Yosif Ganat; Elise Cheng; John Silbereis; Yasushi Ohkubo; Laura R Ment; Flora M Vaccarino
Journal:  J Neurosci       Date:  2009-01-28       Impact factor: 6.167

Review 10.  Systemic prenatal insults disrupt telencephalon development: implications for potential interventions.

Authors:  Shenandoah Robinson
Journal:  Epilepsy Behav       Date:  2005-08-02       Impact factor: 2.937

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