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.