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Updated: Mar 18, 2026

Murine Fetal Echocardiography
Published on: February 15, 2013
Identification of fetal cardiac anatomy and hemodynamics: a novel enhanced screening protocol
Ying Zhang1, Ai-Lu Cai1, Wei-Dong Ren1
1Department of Sonography, Shengjing Hospital of China Medical University, No. 36 Sanhao Street, Heping District, Shenyang, Liaoning, China.
Insights
A new fetal cardiac screening protocol significantly improves the detection of congenital heart disease (CHD) in fetuses. This enhanced method, Protocol B, offers superior accuracy compared to the conventional approach, aiding in better neonatal management.
Area of Science:
- Fetal Medicine
- Cardiology
- Medical Imaging
Background:
- Prenatal screening for fetal congenital heart disease (CHD) is crucial for neonatal management and informed parental decision-making.
- Evaluating the efficacy of novel screening protocols is essential for advancing diagnostic capabilities in prenatal care.
Purpose of the Study:
- To assess the diagnostic efficiency of a newly developed screening protocol for detecting fetal congenital heart disease (CHD).
- To compare the performance of the enhanced protocol against a conventional method in identifying various cardiac anomalies.
Main Methods:
- A prospective study involving 52 confirmed CHD fetuses and 248 normal fetuses.
- Two sonographers independently applied a conventional protocol (Protocol A) and a new protocol (Protocol B) after a 6-month training period.
- Protocol B incorporated systematic evaluation of fetal cardiac anatomy and hemodynamics, mandatory Color Doppler, and specific ultrasonic signs for anomalies.
Main Results:
- Protocol B demonstrated significantly higher detection rates for cardiac anomalies (96.2%) compared to Protocol A (61.5%).
- Protocol B excelled in identifying malpositions, abnormal venous connections, right aortic arch, and great artery transpositions.
- Color Doppler in Protocol B improved visualization of flow disturbances, enhancing detection of valvular defects and reducing false positives for septal defects.
Conclusions:
- The enhanced fetal cardiac screening protocol (Protocol B) significantly improves the detection efficiency of congenital heart disease.
- Systematic evaluation of fetal cardiac anatomy and hemodynamics, coupled with Color Doppler, is key to the protocol's success.
- Short-term training enables sonographers to effectively implement the new protocol, confirming its value in obstetric screening.
Background:
Prenatal cardiac screening is of great importance as it contributes to appropriate neonatal management and helps parents to make a decision regarding their pregnancy. The aim of our study was to evaluate the efficiency of a newly proposed screening protocol in the detection of fetal congenital heart disease (CHD).
Methods:
This was a prospective study. A total of 52 cases of confirmed CHD fetuses and 248 cases of randomly selected normal fetuses were included in the study. Two sonographers with similar experience performed the cardiac screenings under two different protocols independently. The conventional protocol (Protocol A) paid greater attention to the four-chamber view and the outflow tract views. A 6-month training program was provided to sonographers performing scans under the new protocol (Protocol B), which emphasized systematically evaluating fetal cardiac anatomy and hemodynamics. Color Doppler was mandatory and some ultrasonic signs for special cardiac anomalies were also introduced into this protocol.
Results:
Protocol B detected more cardiac anomalies than did Protocol A (96.2 % vs. 61.5 %, P < 0.01). Specifically, Protocol B was superior to Protocol A in detecting cardiac malpositions, abnormal systemic and pulmonary venous connection, right aortic arch, transposition of the great arteries, and congenital corrected transposition of the great arteries. By visualizing flow disturbance and retrograde flow with color Doppler, Protocol B was better than Protocol A in screening valvular associated malformations, such as pulmonary atresia, pulmonary stenosis, tricuspid dysplasia, etc. For the normal fetuses, Protocol B was better than Protocol A in reducing the false-positive detection of septal defects.
Conclusions:
The current study introduces an enhanced protocol for fetal cardiac screening, under which the obstetric screening sonographers systematically identify fetal cardiac anatomy and hemodynamics. A short-term training program makes it possible for the screening sonographers to become familiar with the new protocol, and its value has been confirmed due to improvements made in screening efficiency.
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