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Perinatal Cardiovascular Physiology and Recognition of Critical Congenital Heart Defects
Yogen Singh1, Satyan Lakshminrusimha2
1Department of Pediatrics - Division of Neonatology, Loma Linda University Children's Hospital and Loma Linda University School of Medicine, 11175 Coleman Pavillion, Loma Linda, CA 92374, USA.
Insights
Timely diagnosis of critical congenital heart defects (CHDs) is vital for newborns. Early detection and management, even in asymptomatic infants, improve outcomes and can be lifesaving.
Area of Science:
- Neonatal Medicine
- Pediatric Cardiology
- Cardiovascular Physiology
Background:
- Congenital heart defects (CHDs) affect 7-9 per 1000 live births, with 25% being critical.
- Critical CHDs often present with nonspecific symptoms, evading early detection by routine newborn exams.
- While pulse oximetry aids cyanotic CHDs, noncyanotic defects like coarctation of the aorta may be missed.
Purpose of the Study:
- To review the diagnosis and management of CHDs in neonates.
- To emphasize the importance of early detection in asymptomatic infants.
- To highlight the critical role of timely intervention in neonatal cardiac emergencies.
Main Methods:
- Review of perinatal cardiovascular physiology relevant to CHDs.
- Analysis of diagnostic challenges in the neonatal period.
- Discussion of management strategies in delivery room and NICU settings.
Main Results:
- Many critical CHDs are missed by routine physical exams and pulse oximetry.
- Delay in diagnosis is linked to poorer outcomes for infants with CHDs.
- High suspicion is crucial for infants with shock or hypoxia.
Conclusions:
- Early recognition and prompt prostaglandin E1 infusion are crucial for neonatal cardiac emergencies.
- Urgent consultation with a pediatric cardiologist is recommended for suspected CHDs.
- Improved diagnostic and management strategies are essential for better infant outcomes.
Abstract:
Understanding the perinatal cardiovascular physiology is essential for timely diagnosis and management of congenital heart defects (CHDs) in neonatal period. The incidence of CHDs is reported in 7 to 9 out of 1000 live births, with around 25% of them being critical congenital heart disease, defined as a congenital heart condition needing surgery/intervention or leading to death within 1 month after birth. Around 50% to 60% of the critical CHDs are detected on fetal anomaly screening. The signs and symptoms of critical congenital heart defects are often nonspecific during early neonatal period. The routine newborn physical examination often fails to detect many of these critical CHDs during the transitional circulation because of lack of signs soon after birth. While routine pulse oximetry screening typically performed at 24 to 48 hours after birth may help in detecting cyanotic heart conditions, noncyanotic CHDs such as coarctation of aorta may go undetected on pulse oximetry screening in asymptomatic infants. Some infants may deteriorate early while waiting for pulse oximetry screening, and this risk is much higher if the pulse oximetry screening is not performed to detect congenital heart conditions. There should be high degree of suspicion of critical CHDs in infants presenting with shock or hypoxia. Delay in diagnosis of CHDs has been reported to be associated with poor outcomes, and hence, it is extremely important to detect them in asymptomatic well-infants. Timely recognition and therapy with prostaglandin E1 infusion can be lifesaving in neonatal cardiac emergencies, and they should be urgently discussed with a pediatric cardiologist. This article reviews diagnosis and management of CHD in the delivery room and before surgery in the NICU.
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