Transient structural MRI patterns correlate with the motor functions in preterm infants |
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Authors: | Ana Katušić Iris Žunić Išasegi Milan Radoš Marina Raguž Ruža Grizelj Fabrizio Ferrari Ivica Kostović |
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Affiliation: | 1. Scientific Centre of Excellence for Basic, Clinical and Translational Neuroscience, Croatian Institute for Brain Research, University of Zagreb, School of Medicine, Croatia;2. University Hospital Dubrava, Department of Neurosurgery, University of Zagreb, School of Medicine, Croatia;3. Clinical Hospital Centre Zagreb, Department of Pediatrics, University of Zagreb, School of Medicine, Croatia;4. Neonatal Intensive Care Unit, Department of Medical and Surgical Sciences of the Mother, Children and Adults, University of Modena and Reggio Emilia, Modena, Italy |
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Abstract: | AimTo explore the relationships between transient structural brain patterns on MRI at preterm and at term-equivalent age (TEA) as a predictor of general movements (GMs) and motor development at 1-year corrected age (CA) in very preterm infants.MethodsIn this prospective study, 30 very preterm infants (median = 28wks; 16 males) had structural magnetic resonance imaging (MRI) at preterm (median = 31wks + 6d) and at TEA (median = 40wks) and neuromotor assessments. The quality of GMs was assessed by Prechtl’s general movements assessment and a detailed analysis of the motor repertoire was performed by calculating a motor optimality score (MOS), both at term age and at 3 months post-term. Motor development at 1-year CA was evaluated with the Infant Motor Profile (IMP). Associations between qualitative MRI findings and neuromotor scores were investigated.ResultsAbnormal GMs and low motor performance at 1-year CA were associated with the poor visibility of transient structural pattern, that is with sagittal strata.InterpretationTransient structural MRI pattern, sagittal strata, at preterm age is related to the quality of GMs and later motor development in preterm infants. This transient fetal brain compartment may be considered as a component of neurobiological basis for early neuromotor behavior, as expressed by GMs. |
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Keywords: | General movements Motor functions Preterm infants Sagittal strata Periventricular crossroads Neonatal MRI |
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