Literature DB >> 24523026

Longitudinal growth and morphology of the hippocampus through childhood: Impact of prematurity and implications for memory and learning.

Deanne K Thompson1, Cristina Omizzolo, Christopher Adamson, Katherine J Lee, Robyn Stargatt, Gary F Egan, Lex W Doyle, Terrie E Inder, Peter J Anderson.   

Abstract

The effects of prematurity on hippocampal development through early childhood are largely unknown. The aims of this study were to (1) compare the shape of the very preterm (VPT) hippocampus to that of full-term (FT) children at 7 years of age, and determine if hippocampal shape is associated with memory and learning impairment in VPT children, (2) compare change in shape and volume of the hippocampi from term-equivalent to 7 years of age between VPT and FT children, and determine if development of the hippocampi over time predicts memory and learning impairment in VPT children. T1 and T2 magnetic resonance images were acquired at both term equivalent and 7 years of age in 125 VPT and 25 FT children. Hippocampi were manually segmented and shape was characterized by boundary point distribution models at both time-points. Memory and learning outcomes were measured at 7 years of age. The VPT group demonstrated less hippocampal infolding than the FT group at 7 years. Hippocampal growth between infancy and 7 years was less in the VPT compared with the FT group, but the change in shape was similar between groups. There was little evidence that the measures of hippocampal development were related to memory and learning impairments in the VPT group. This study suggests that the developmental trajectory of the human hippocampus is altered in VPT children, but this does not predict memory and learning impairment. Further research is required to elucidate the mechanisms for memory and learning difficulties in VPT children.
Copyright © 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  development; hippocampal size and shape; magnetic resonance imaging; neurodevelopmental outcome; very preterm children

Mesh:

Year:  2014        PMID: 24523026      PMCID: PMC5516043          DOI: 10.1002/hbm.22464

Source DB:  PubMed          Journal:  Hum Brain Mapp        ISSN: 1065-9471            Impact factor:   5.038


  46 in total

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Review 3.  The fractionation of working memory.

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4.  New MR imaging assessment tool to define brain abnormalities in very preterm infants at term.

Authors:  H Kidokoro; J J Neil; T E Inder
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Review 5.  Neural bases of learning and memory: functional neuroimaging evidence.

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8.  MR-determined hippocampal asymmetry in full-term and preterm neonates.

Authors:  Deanne K Thompson; Stephen J Wood; Lex W Doyle; Simon K Warfield; Gary F Egan; Terrie E Inder
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