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Published on: May 15, 2019
Early childhood development of visual texture segregation in full-term and preterm children
Mélissa Sue Sayeur1, Phetsamone Vannasing2, Mélanie Lefrançois1
1Research Centre in Neuropsychology and Cognition, University of Montreal, Quebec, Canada; Department of Psychology, University of Montreal, Quebec, Canada; Research Centre, Sainte-Justine Hospital, Montreal, Quebec, Canada.
Insights
Visual texture segregation matures normally in full-term infants. Preterm infants show a developmental delay in visual processing, but catch up by 24 months corrected age.
Area of Science:
- Developmental neuroscience
- Visual perception
- Pediatric neurology
Background:
- Normal visual development trajectory is not well understood.
- Impact of preterm birth on visual development is largely unknown.
Purpose of the Study:
- Characterize visual texture segregation development in full-term and preterm infants.
- Investigate the effects of preterm birth on visual processing maturation.
Main Methods:
- Utilized texture segregation visual evoked potentials (tsVEPs) in 45 full-term and 43 preterm children aged 12, 24, and 36 months.
- Measured visual evoked potentials (VEPs) using orientation (oriVEP) and texture (texVEP) stimuli.
- Analyzed N2 latency and amplitude for maturation and group differences.
Main Results:
- Full-term infants showed significant N2 latency reduction and amplitude decrease, indicating visual texture segregation maturation.
- Preterm infants exhibited lower N2 amplitude at 12 months for both oriVEP and texVEP compared to full-term infants.
- Differences between groups diminished by 24 months, suggesting catch-up development in preterm infants.
Conclusions:
- Visual texture segregation demonstrates clear maturation in full-term children.
- Preterm birth is associated with a maturational delay in both lower-level and higher-level visual processing in early childhood.
- Preterm infants appear to catch up to full-term peers in visual processing between 12 and 24 months corrected age.
Abstract:
To date, very little is known about the normal development trajectory of visual texture segregation, or how it is affected by preterm birth. The goal of this study was to characterize the development of visual texture segregation using texture segregation visual evoked potentials (tsVEPs) in children born full-term and children born preterm without major neurological impairment. Forty-five full-term and 43 preterm children were tested at either 12, 24 or 36 months of age (corrected age for prematurity at 12 and 24 months old). VEPs were obtained using two lower-level stimuli defined by orientation (oriVEP) and two higher-level stimuli defined by texture (texVEP). TsVEP was obtained by dividing by two the subtraction of oriVEP from texVEP. Results show a clear maturation of the processes underlying visual texture segregation in the full-term group, with a significant N2 latency reduction between 12 and 36 months of age for all conditions. Significant N2 amplitude reduction was observed for oriVEP between 12 and 24 months, as well as for texVEP between 12 and 24 months, and 12 and 36 months. Comparison between full-term and preterm children indicated significantly lower N2 amplitude for the preterm group at 12 months for oriVEP and texVEP. These differences were no longer apparent at 24 months of age, suggesting that children born preterm catch up with their full-term counterparts somewhere between 12 and 24 months of age. Our results appear to reflect a maturational delay in preterm children in both lower-level and higher-level visual processing during, at least, early childhood.
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