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Updated: Sep 16, 2025

Murine Fetal Echocardiography
Published on: February 15, 2013
Prevalence of Cardiovascular Functional Anomalies in Large-for-Gestational-Age (LGA) Fetuses by Fetal
Łucja Hanna Biały1, Oskar Sylwestrzak2,3, Julia Murlewska2
1Students' Prenatal Cardiology Scientific Group, Medical University of Łódź, 92-213 Łódź, Poland.
Insights
Large-for-gestational-age (LGA) fetuses with normal heart anatomy can have functional cardiovascular anomalies like ductal constriction and myocardial hypertrophy. Targeted fetal echocardiography screening in macrosomic fetuses is clinically valuable for early detection.
Area of Science:
- Cardiology
- Fetal Medicine
- Neonatology
Background:
- Large-for-gestational-age (LGA) fetuses are at increased risk for adverse outcomes.
- Macrosomia, defined as birth weight >4000 g, is a common characteristic of LGA fetuses.
- The prevalence of functional cardiovascular anomalies in LGA fetuses with normal heart anatomy is not well-established.
Purpose of the Study:
- To determine the prevalence of functional cardiovascular anomalies in third-trimester LGA fetuses.
- To investigate the association between LGA status and specific anomalies like ductal constriction, myocardial hypertrophy, and cardiomegaly.
- To evaluate the clinical utility of targeted fetal echocardiography in macrosomic fetuses.
Main Methods:
- Retrospective study of 1002 fetuses examined during the third trimester.
- Classification of fetuses into normal heart anatomy (NHA) groups: NHA-LGA (>4000 g) and NHA-AGA (2500-4000 g).
- Statistical analysis to compare the prevalence of functional cardiovascular anomalies between groups (p<0.05 considered significant).
Main Results:
- The NHA-LGA group (n=167) showed significantly higher rates of ductal constriction (14.4% vs 1.3%), myocardial hypertrophy (18.0% vs 8.6%), and cardiomegaly (11.4% vs 4.4%) compared to the NHA-AGA group (n=835).
- Functional cardiovascular anomalies were identified in up to 51% of LGA fetuses with normal heart anatomy in this cohort.
- Statistical significance (p<0.00001 to p<0.0004) was observed for all compared anomalies.
Conclusions:
- LGA fetuses with normal heart anatomy can exhibit functional cardiovascular anomalies.
- These anomalies, including ductal constriction, myocardial hypertrophy, and cardiomegaly, are more prevalent in LGA fetuses.
- Targeted fetal echocardiography screening in macrosomic fetuses is recommended for early identification of these functional cardiac alterations, potentially improving perinatal management.
Abstract:
Background/Objectives: The aim of this study was to determine the prevalence of functional cardiovascular anomalies detected on fetal echocardiography in third-trimester large-for-gestational-age (LGA) fetuses, who were subsequently born as macrosomic newborns with a birth weight exceeding 4000 g. Methods: A retrospective study was conducted on 1002 fetuses examined during the third trimester at our fetal cardiology center between 2018 and 2024. All fetuses were classified as having "normal heart anatomy" (NHA). Statistical analysis was performed using Microsoft Excel 2024, Statistica 13.1, and EasyMedStat (version 3.37.1). A p-value of <0.05 was considered statistically significant. Results: The 1002 fetuses were divided into two groups. The study group (NHA-LGA) consisted of 167 fetuses born with a weight of >4000 g and the control group (NHA-AGA) was made up of 835 fetuses with a birth weight between 2500 and 4000 g. In the NHA-LGA group, 24 fetuses (14.4%) experienced ductal constriction (DC), while in the NHA-AGA group, it was 11 (1.3%) fetuses (p < 0.00001). Myocardial hypertrophy was observed in 30 fetuses (18.0%) in the NHA-LGA group versus 72 (8.6%) in the NHA-AGA group (p < 0.0003). Additionally, cardiomegaly was noted in 95 fetuses (11.4%) in the NHA-LGA group, compared to 37 (4.4%) in the NHA-AGA group (p < 0.0004). Conclusions: LGA fetuses with normal heart anatomy may present with functional cardiovascular anomalies, including ductal constriction, myocardial hypertrophy, and cardiomegaly. In our cohort, such anomalies were identified in up to 51% of cases. These findings suggest that targeted fetal echocardiographic screening in macrosomic fetuses could be clinically valuable, even in the absence of structural heart defects, and may aid in the early identification of functional cardiac alterations that could impact perinatal management.
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