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Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments

Cerebellar functioning has been implied in the fine adjustments of muscle tone, in the coordination and the feed-forward control of movements and posture, as well as in the establishment and performance of motor skills. The cerebellar cortex in mammals develops late in neuro-ontogeny and an extrapol...

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Detalles Bibliográficos
Autor principal: Gramsbergen, Albert
Formato: Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2565411/
https://www.ncbi.nlm.nih.gov/pubmed/14640314
http://dx.doi.org/10.1155/NP.2003.129
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author Gramsbergen, Albert
author_facet Gramsbergen, Albert
author_sort Gramsbergen, Albert
collection PubMed
description Cerebellar functioning has been implied in the fine adjustments of muscle tone, in the coordination and the feed-forward control of movements and posture, as well as in the establishment and performance of motor skills. The cerebellar cortex in mammals develops late in neuro-ontogeny and an extrapolation from experimental results indicates that in the human the proliferation of the granule cells and the development of circuitry in the cerebellar cortex starts only in the last trimester of pregnancy and lasts until beyond the first birthday. This late development makes the cerebellar development particularly vulnerable to situations like an insufficient supply of nutrients, which may follow placental dysfunction, or to side effects of pharmacological treatments like the administration of corticosteroids in the postnatal period. We studied whether such situations might also lead to motor impairments. In rats, the effects of undernutrition during the brain growth spurt were investigated as well as those of corticosteroids administered in a period that is analogous to the 7(th) to 8(th) month of pregnancy in the human. Both these interferences affect cerebellar development and our results in rats indicate that they also lead to retardations in the, emergence of certain reflexes, as well as to longer lasting motor impairments during locomotion. Extrapolation of these results strongly suggests that a disturbed cerebellar development should be considered as an important etiological factor in clumsiness in human children.
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spelling pubmed-25654112008-10-16 Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments Gramsbergen, Albert Neural Plast Article Cerebellar functioning has been implied in the fine adjustments of muscle tone, in the coordination and the feed-forward control of movements and posture, as well as in the establishment and performance of motor skills. The cerebellar cortex in mammals develops late in neuro-ontogeny and an extrapolation from experimental results indicates that in the human the proliferation of the granule cells and the development of circuitry in the cerebellar cortex starts only in the last trimester of pregnancy and lasts until beyond the first birthday. This late development makes the cerebellar development particularly vulnerable to situations like an insufficient supply of nutrients, which may follow placental dysfunction, or to side effects of pharmacological treatments like the administration of corticosteroids in the postnatal period. We studied whether such situations might also lead to motor impairments. In rats, the effects of undernutrition during the brain growth spurt were investigated as well as those of corticosteroids administered in a period that is analogous to the 7(th) to 8(th) month of pregnancy in the human. Both these interferences affect cerebellar development and our results in rats indicate that they also lead to retardations in the, emergence of certain reflexes, as well as to longer lasting motor impairments during locomotion. Extrapolation of these results strongly suggests that a disturbed cerebellar development should be considered as an important etiological factor in clumsiness in human children. Hindawi Publishing Corporation 2003 /pmc/articles/PMC2565411/ /pubmed/14640314 http://dx.doi.org/10.1155/NP.2003.129 Text en Copyright © 2003 .
spellingShingle Article
Gramsbergen, Albert
Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title_full Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title_fullStr Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title_full_unstemmed Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title_short Clumsiness and Disturbed Cerebellar Development: Insights From Animal Experiments
title_sort clumsiness and disturbed cerebellar development: insights from animal experiments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2565411/
https://www.ncbi.nlm.nih.gov/pubmed/14640314
http://dx.doi.org/10.1155/NP.2003.129
work_keys_str_mv AT gramsbergenalbert clumsinessanddisturbedcerebellardevelopmentinsightsfromanimalexperiments