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Predictors of early motor trajectories from birth to 5 years in neonatal at-risk and control children

  • Nicole Baumann
  • , James Tresilian
  • , Kati Heinonen
  • , Katri Räikkönen
  • , Dieter Wolke

Research output: Contribution to journalArticleResearchpeer-review

Abstract

Aim: To describe motor development in preschool children, to identify perinatal, neonatal and social environmental risk factors of poor motor development, and to replicate results in a second cohort. Methods: Two prospective samples in Germany (Bavarian Longitudinal Study, BLS) and Finland (Arvo Ylppö Longitudinal Study, AYLS) assessed 4741 and 1423 children from birth to 56 months, respectively. Motor functioning was evaluated at birth, and 5, 20 and 56 months. Perinatal, neonatal and social environmental information was collected at birth and 5 months. Results: Two distinct motor trajectories were identified: low (BLS: n = 4486 (94.6%), AYLS: n = 1391 (97.8%)) and high (BLS: n = 255 (5.4%), AYLS: n = 32 (2.2%)) degree of motor difficulties. High degree of motor difficulties was predicted by neonatal complications, abnormal neonatal neurological status, duration of hospitalisation and poor parent-infant relationships. Although neonatal complications and poor parent-infant relationships did not significantly predict high degree of motor difficulties in the AYLS, the trends identified were similar to those obtained from the BLS. Conclusion: Early identification of children at-risk of motor difficulties across infancy and toddlerhood may help referring those children to interventions earlier. Modifiable risk factors, such as parent-infant relationships, may be addressed by intervention strategies to prevent children from developing motor difficulties.

Original languageEnglish
Pages (from-to)728-737
Number of pages10
JournalActa Paediatrica
Volume109
Issue number4
DOIs
Publication statusPublished - Apr 2020
Externally publishedYes

Keywords

  • cohort studies
  • motor development
  • population at-risk
  • risk factors
  • trajectories of motor functioning

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