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Nurture versus nature:long-term impact of forced right-handedness on structure of pericentral cortex and basal ganglia

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Author(s)
Klöppel, Stefan
Mangin, Jean-Francois
Vongerichten, Anna
Frackowiak, Richard S J
Siebner, Hartwig R
Keywords
Adaptation, Physiological
Adult
Basal Ganglia
Brain Mapping
Dominance, Cerebral
Female
Functional Laterality
Humans
Hypertrophy
Learning
Magnetic Resonance Imaging
Male
Middle Aged
Motor Cortex
Motor Skills
Movement
Neuronal Plasticity
Neuropsychological Tests
Putamen
Writing
Young Adult
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URI
http://hdl.handle.net/20.500.12424/436165
Online Access
https://curis.ku.dk/portal/da/publications/nurture-versus-nature(92fa0335-c358-4215-8898-97008560bf61).html
https://doi.org/10.1523/JNEUROSCI.4394-09.2010
Abstract
Does a conflict between inborn motor preferences and educational standards during childhood impact the structure of the adult human brain? To examine this issue, we acquired high-resolution T1-weighted magnetic resonance scans of the whole brain in adult "converted" left-handers who had been forced as children to become dextral writers. Analysis of sulcal surfaces revealed that consistent right- and left-handers showed an interhemispheric asymmetry in the surface area of the central sulcus with a greater surface contralateral to the dominant hand. This pattern was reversed in the converted group who showed a larger surface of the central sulcus in their left, nondominant hemisphere, indicating plasticity of the primary sensorimotor cortex caused by forced use of the nondominant hand. Voxel-based morphometry showed a reduction of gray matter volume in the middle part of the left putamen in converted left-handers relative to both consistently handed groups. A similar trend was found in the right putamen. Converted subjects with at least one left-handed first-degree relative showed a correlation between the acquired right-hand advantage for writing and the structural changes in putamen and pericentral cortex. Our results show that a specific environmental challenge during childhood can shape the macroscopic structure of the human basal ganglia. The smaller than normal putaminal volume differs markedly from previously reported enlargement of cortical gray matter associated with skill acquisition. This indicates a differential response of the basal ganglia to early environmental challenges, possibly related to processes of pruning during motor development.
Date
2010-03-03
Type
Article
Identifier
oai:pure.atira.dk:publications/92fa0335-c358-4215-8898-97008560bf61
https://curis.ku.dk/portal/da/publications/nurture-versus-nature(92fa0335-c358-4215-8898-97008560bf61).html
https://doi.org/10.1523/JNEUROSCI.4394-09.2010
Copyright/License
info:eu-repo/semantics/restrictedAccess
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Ethics in Higher Education

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