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Fetal heart diseases and neonatal mortality: Risk factors and management
Mucize Eric Ozdemir1, Oya Demirci2, Pinar Kumru2
1Perinatology Department, Health Science University, Zeynep Kamil Women and Children's Diseases Training and Research Hospital, Istanbul, Turkey. ozdemir.mucize@gmail.com.
Insights
Fetal heart disease severity, low birth weight, and extracardiac anomalies significantly increase neonatal mortality risk. Careful consideration of labor induction methods is crucial for managing these high-risk pregnancies.
Area of Science:
- Cardiology
- Neonatal Medicine
- Obstetrics
Background:
- Fetal heart diseases are a major cause of neonatal mortality.
- Prenatal diagnostics are improving, necessitating personalized risk assessment and management strategies.
- Classifying fetal heart diseases by severity aids in counseling and delivery planning.
Purpose of the Study:
- To classify fetal heart diseases by severity.
- To examine maternal, fetal, and delivery factors impacting neonatal mortality.
- To identify key determinants for individualized risk assessment and management.
Main Methods:
- Prospective study of 382 pregnant women with fetal heart disease (2019-2023).
- Categorization into three risk groups based on hemodynamic instability potential.
- Antenatal follow-up with fetal echocardiography and analysis of associated factors.
Main Results:
- Neonatal mortality associated with birth weight < 2500g (p=0.002).
- Genitourinary anomalies (p=0.001) and high-risk heart disease (p<0.001) significantly increased mortality.
- Induction of labor showed a significant association with neonatal mortality (p=0.01).
Conclusions:
- Fetal heart disease severity, low birth weight, and extracardiac anomalies are key predictors of neonatal mortality.
- Labor induction with prostaglandin requires further validation but may increase mortality risk.
- Selective use of prostaglandin for labor induction in high-risk cases is suggested.
Purpose:
Fetal heart diseases significantly contribute to neonatal mortality. Improved prenatal diagnostics enable defect detection before delivery, emphasizing the need for a personalized approach to address anomalies and predict outcomes. Categorizing diseases into risk classes aids obstetricians in counseling and delivery decisions. This study classifies fetal heart diseases by severity, examining factors related to maternal, fetal, and delivery that affect neonatal mortality. The aim is to identify key determinants of neonatal mortality and create an individual approach to assess and manage risks in the first days of a newborn's life.
Methods:
A prospective study from 2019 to 2023 at a tertiary care institute involved pregnant women diagnosed with fetal heart disease. 382 women were categorized into three groups based on potential risk for hemodynamic instability at birth: Group-1 (no or low risk, n = 114), Group-2 (moderate risk, n = 201), and Group-3 (high risk, n = 67). Antenatal follow-up used fetal echocardiography. The study explored the association between maternal-fetal-delivery-related factors and neonatal mortality, with statistical significance set at p < 0.05.
Results:
Significant associations with neonatal mortality were found in cases with birth weight < 2500 g (p = 0.002), presence of genitourinary system anomaly (p = 0.001), group-2 and 3 heart disease (p < 0.001), and induction of labor (p = 0.01).
Conclusion:
Factors influencing neonatal mortality in fetal heart disease cases include heart disease severity (group-3 heart disease), low birth weight, and extracardiac anomalies. While labor induction with prostaglandin ± oxytocin appears to elevate neonatal mortality, this observation requires further validation with larger sample sizes. Obstetricians should consider selective use of prostaglandin for labor induction.
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