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Updated: May 9, 2026

Non-invasive Optical Measurement of Cerebral Metabolism and Hemodynamics in Infants
Published on: March 14, 2013
Effects of preterm birth on intrinsic fluctuations in neonatal cerebral activity examined using optical imaging
Yutaka Fuchino1, Nozomi Naoi, Minoru Shibata
1Japan Science Technology Agency, Exploratory Research for Advanced Technology (ERATO), Okanoya Emotional Information Project, Honcho, Kawaguchi, Saitama, Japan.
Insights
Preterm infants show different brain connectivity patterns compared to full-term neonates. These differences in resting-state functional connectivity (RSFC) suggest distinct developmental paths from birth.
Area of Science:
- Neuroscience
- Developmental Biology
- Neonatology
Background:
- Medical advancements have increased survival rates for high-risk preterm infants.
- Preterm infants face higher risks of behavioral, educational, and emotional problems later in life.
- Early indicators of these developmental issues in preterm infants are not well understood.
Purpose of the Study:
- To compare resting-state functional connectivity (RSFC) of the cerebral cortex in preterm infants and full-term neonates.
- To identify early differences in brain activity patterns between these two groups.
- To investigate the developmental trajectories of RSFC in relation to postmenstrual age.
Main Methods:
- Utilized an optical topography system, an advanced near-infrared spectroscopy technique.
- Measured and compared RSFC in preterm infants (at term-equivalent age) and full-term neonates during natural sleep.
- Analyzed differences in cortical connectivity between specific brain regions (temporal and parietal lobes).
Main Results:
- Confirmed the presence of RSFC in both preterm infants and full-term neonates.
- Observed enhanced RSFC in bilateral temporal and parietal regions in preterm infants compared to full-term neonates.
- Found enhanced RSFC between left temporal and left parietal regions in full-term neonates compared to preterm infants.
- Identified differing developmental changes in RSFC related to postmenstrual age between the groups.
Conclusions:
- Preterm infants and full-term neonates exhibit distinct patterns of brain functional connectivity.
- These differences suggest divergent developmental trajectories during the perinatal period.
- Variations in perinatal experiences and development likely contribute to observed connectivity disparities.
Abstract:
Medical advancements in neonatology have significantly increased the number of high-risk preterm survivors. However, recent long-term follow-up studies have suggested that preterm infants are at risk for behavioral, educational, and emotional problems. Although clear relationships have been demonstrated between preterm infants and developmental problems during childhood and adolescence, less is known about the early indications of these problems. Recently, numerous studies on resting-state functional connectivity (RSFC) have demonstrated temporal correlations of activity between spatially remote cortical regions not only in healthy adults but also in neuropathological disorders and early childhood development. In order to compare RSFC of the cerebral cortex between preterm infants at term-equivalent ages and full-term neonates without any anatomical abnormality risk during natural sleep, we used an optical topography system, which is a recently developed extension of near-infrared spectroscopy. We clarified the presence of RSFC in both preterm infants and full-term neonates and showed differences between these groups. The principal differences were that on comparison of RSFC between the bilateral temporal regions, and bilateral parietal regions, RSFC was enhanced in preterm infants compared with full-term neonates; whereas on comparison of RSFC between the left temporal and left parietal regions, RSFC was enhanced in full-term neonates compared with preterm infants. We also demonstrated a difference between the groups in developmental changes of RSFC related to postmenstrual age. Most importantly, these findings suggested that preterm infants and full-term neonates follow different developmental trajectories during the perinatal period because of differences in perinatal experiences and physiological and structural development.

