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QTc interval prolongation and severe apneas associated with a change in infant positioning
Marc A Ellsworth1, Timothy J Ulrich, William A Carey
1Department of Pediatric and Adolescent Medicine, 200 1st St SW, Rochester, MN 55905. ellsworth.marc@mayo.edu.
Insights
Repositioning infants from supine to prone may prolong the corrected QT interval (QTc), indicating autonomic instability. Continuous QTc monitoring in the NICU can detect these risks in real-time.
Area of Science:
- Neonatal Medicine
- Cardiology
- Autonomic Nervous System Research
Background:
- Prolonged QT interval has been linked to sudden infant death syndrome (SIDS).
- The QT interval may serve as a marker for autonomic instability in infants.
- Identifying infants at risk for SIDS and other morbidities is a critical clinical challenge.
Observation:
- A case study involving an infant in the Neonatal Intensive Care Unit (NICU).
- Continuous QTc monitoring detected a significant QTc increase after repositioning from supine to prone.
- The QTc prolongation was associated with clinically significant apnea.
Findings:
- Infant's QTc increased from a baseline of 413 ± 6 ms to 500 ms, sustained for 2 hours.
- Repositioning the infant back to supine immediately decreased the QTc to baseline.
- Apneic events resolved upon returning to the supine position.
Implications:
- Continuous QTc monitoring can identify real-time factors that accentuate QTc in neonates.
- This technology may help detect situations causing autonomic nervous system perturbations.
- Early detection of QTc-accentuating factors could aid in managing infants at risk for adverse events.
Abstract:
For more than a decade there has been considerable interest in the role of QT interval prolongation in the pathogenesis of sudden infant death syndrome. It has been proposed that the QT interval is a surrogate marker for autonomic instability and can be used to identify infants at risk for significant morbidity and mortality, including sudden infant death syndrome. We present the case of an infant that experienced a significant increase in his QTc, as detected by continuous QTc monitoring in the NICU after repositioning from a supine to prone position. This increase from a 413 ± 6 millisecond baseline average to 500 milliseconds was sustained for 2 hours and associated with clinically relevant apnea that ultimately required repositioning of the infant back to the supine position. Repositioning resulted in an immediate decrease of the QTc back to the previous baseline and termination of the apneic events. This case demonstrates an example of how the use of continuous QTc monitoring in the NICU setting may be used to detect QTc-accentuating factors in real time and identify situations that cause perturbations in an infant's autonomic nervous system.
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