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Updated: Apr 30, 2026

Murine Fetal Echocardiography
Published on: February 15, 2013
Fetal echocardiographic evaluation of the bottlenose dolphin (Tursiops truncatus)
Mark Sklansky1, Michael Renner, Patricia Clough
1Department of Pediatrics, Pediatric Cardiology, Mail Stop #34, Childrens' Hospital Los Angeles, 4650 Sunset Boulevard, Los Angeles, California 90027, USA. msklansky@chla.usc.edu
Insights
Fetal echocardiography can now safely assess dolphin cardiovascular health. This technique, adapted from human medicine, provides detailed insights into fetal dolphin anatomy and function.
Area of Science:
- Veterinary Medicine
- Marine Mammal Science
- Cardiovascular Physiology
Background:
- Fetal echocardiography is crucial for assessing human fetal well-being.
- Detailed fetal echocardiography in marine mammals, particularly cetaceans, has been limited due to logistical and anatomical challenges.
Purpose of the Study:
- To develop and describe an approach for evaluating the cardiovascular status of fetal bottlenose dolphins (Tursiops truncatus) using conventional human fetal echocardiographic techniques.
- To establish the feasibility and effectiveness of fetal echocardiography in dolphins for clinical and academic purposes.
Main Methods:
- Eight fetal bottlenose dolphins (6-11 months gestation) underwent evaluations using portable ultrasound systems without sedation.
- Two-dimensional imaging, color flow mapping, and pulsed Doppler were employed to assess cardiac structures, great arteries, and umbilical vessels.
- Image quality was optimized using various transducers, probes, and maternal positioning.
Main Results:
- Fetal echocardiography provided high-resolution cardiovascular assessments, particularly between 8 and 9 months gestation.
- Normal cardiac and great artery structures and functions were demonstrated, consistent with human fetal findings.
- Pulsed Doppler confirmed normal umbilical vessel waveforms, and color flow mapping showed no significant valvar regurgitation.
Conclusions:
- Fetal echocardiography is a safe and effective method for detailed cardiovascular assessment in bottlenose dolphins.
- The technique is most effective between 8 and 9 months of gestation.
- This methodology holds significant clinical and academic potential for marine mammal research.
Abstract:
In humans, fetal echocardiography represents the most important tool for the assessment of the cardiovascular well-being of the fetus. However, because of logistic, anatomic, and behavioral challenges, detailed fetal echocardiographic evaluation of marine mammals has not been previously described. Because the application of fetal echocardiography to cetaceans could have both clinical and academic importance, an approach to evaluating the fetal dolphin's cardiovascular status was developed with conventional, fetal echocardiographic techniques developed in humans. Eight singleton fetal bottlenose dolphins (Tursiops truncatus) were evaluated, each between 6 and 11 mo gestation; six fetuses underwent two fetal echocardiographic evaluations each, four at 3-mo intervals, and two at 0.5-mo intervals. Evaluations were performed without sedation, using conventional, portable ultrasound systems. Multiple transducers, probes, and maternal dolphin positions were used to optimize image quality. Fetal echocardiography included two-dimensional imaging and color flow mapping of the heart and great arteries, as well as pulsed Doppler evaluation of the umbilical artery and vein. Thorough evaluations of the fetal dolphins' cardiovascular status were performed, with the greatest resolution between 8 and 9 mo gestation. With the use of published human fetal echocardiographic findings for comparison, fetal echocardiography demonstrated normal structure and function of the heart and great arteries, including the pulmonary veins, inferior vena cava, right and left atria, foramen ovale, tricuspid and mitral valves, right and left ventricles, ventricular septum, pulmonary and aortic valves, main pulmonary artery and ascending aorta, and ductus arteriosus. Pulsed Doppler techniques demonstrated normal umbilical arterial and venous waveforms, and color flow mapping demonstrated absence of significant valvar regurgitation. Fetal echocardiography, particularly between 8 and 9 mo gestation, can provide a safe and detailed assessment of the cardiovascular status of the fetal bottlenose dolphin.
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