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Published on: August 19, 2020
Measurement of tissue oxygenation index during the first three days in premature born infants
Gunnar Naulaers1, Geert Morren, Sabine Van Huffel
1Department of Paediatrics, University Hospital Leuven, Belgium.
Insights
Tissue oxygenation index (TOI) in preterm infants significantly increases in the first three days of life. This rise in cerebral oxygen saturation is likely due to increased cerebral blood flow, not altered blood pressure or oxygen levels.
Area of Science:
- Neonatology
- Neuroscience
- Biomedical Engineering
Background:
- Normal values for brain tissue oxygenation index (TOI) in premature infants are not established.
- Cerebral oxygenation is critical for neurodevelopment in preterm neonates.
Purpose of the Study:
- To establish normal values for brain TOI in preterm infants during the first three days of life.
- To investigate the changes and influencing factors of cerebral oxygenation in early neonatal period.
Main Methods:
- Spatially resolved spectroscopy (NIRO 300) was used to measure TOI in 15 preterm infants (median postmenstrual age 28 weeks).
- Measurements were taken within the first 6 hours, and at 24 and 48 hours post-birth.
- Infants with pre-existing intra-ventricular hemorrhage or periventricular leucomalacia were excluded.
Main Results:
- A significant increase in median TOI was observed at 24 hours (p < 0.05) and 48 hours (p < 0.001).
- Median TOI values were 57% (Day 1), 66.1% (Day 2), and 76.1% (Day 3).
- No significant correlation was found between TOI and peripheral oxygen saturation, blood pressure, PaO2, PaCO2, or hemoglobin.
Conclusions:
- Brain TOI significantly increases in preterm infants during the first three days of life.
- This increase is independent of changes in systemic oxygenation or mean arterial blood pressure.
- The findings suggest a rise in cerebral blood flow contributes to improved brain oxygenation in early neonatal life.
Abstract:
No normal values of tissue oxygenation index (TOI) of the brain are known regarding premature born infants. We measured TOI, a measure for the cerebral hemoglobin oxygen saturation, on the head of 15 preterm infants with a median postmenstrual age of 28 weeks (interquartile range (IQR) between 26-29 weeks) with spatially resolved spectroscopy (NIRO 300, Hamamatsu) during the first three days of life. Infants with intra-ventricular hemorrhage or periventricular leucomalacia before the first measurement, as shown by ultrasound, were excluded. The first measurement was done within the first 6 hours of life, the second and third measurement at, respectively, 24 and 48 hours after this first measurement. The mean TOI was calculated if saturation did not change by more than 5% for at least 30 minutes. Other parameters measured were PaO2, PCO2, pH, mean arterial blood pressure, heart rate, hemoglobin, glycemia and peripheral oxygen saturation. There was a significant increase of TOI after 24 (p < 0.05) and 48 (p < 0.001) hours. The median TOI on the first day was 57% (95% CI: 54-65.7), 66.1% on the second day (95%CI: 61.9-82.3%) and 76.1% on the third day (95%CI 67.8-80.1%). No correlation was found between TOI and peripheral oxygen saturation, blood pressure, PaO2, PaCO2 and hemoglobin concentration after multiple regression analysis. TOI increases in the first three days in premature born babies. The increase of TOI is not due to an increase of oxygenation or mean arterial blood pressure. In our opinion, it reflects the increase in cerebral blood flow during the first three days.
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