Some anatomical aspects of the cardiovascular system of antarctic seals and their possible functional significance in diving

Abstract The hearts and ascending aortae of 11 Weddell seals, Leptonychotes weddelli , three adult Crabeater seals, Lobodon carcinophagus , two adult Ross seals, Ommatophoca rossi , and one adult Leopard seal, Hydrurga leptonyx , were examined for comparison with terrestrial forms. The Weddell seal...

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Bibliographic Details
Published in:Journal of Morphology
Main Author: Drabek, Charles M.
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 1975
Subjects:
Online Access:http://dx.doi.org/10.1002/jmor.1051450106
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fjmor.1051450106
https://onlinelibrary.wiley.com/doi/pdf/10.1002/jmor.1051450106
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Summary:Abstract The hearts and ascending aortae of 11 Weddell seals, Leptonychotes weddelli , three adult Crabeater seals, Lobodon carcinophagus , two adult Ross seals, Ommatophoca rossi , and one adult Leopard seal, Hydrurga leptonyx , were examined for comparison with terrestrial forms. The Weddell seal specimens were from animals ranging in age from midterm in fetal development to mature adults. All specimens were collected in 1971, 1972, and 1973, from McMurdo Sound and the Ross Sea, Antarctica. The phocid hearts were characteristically broader and flatter than those of other carnivore families and they tended toward bifid apices. The heart form indices (height/circumference) averaged 31.5 compared to 39.0 for felids. The right ventricular chambers of the Antarctic seals were found to average longer in Weddells and narrower in all, than those reported for four other carnivore families. An elastic enlargement was present in the ascending aortae of all seals. The largest diameter of the aortic bulb averaged 25.5 mm more than the base of the aorta in the adult Weddell seals which represented an increase of 72.5% over the base. It is suggested that the general heart form, and especially the ascending aortae, are anatomical adaptations to diving. The compressed heart makes possible unimpaired function when the chest is compressed during deep dives. The aortic bulb maintains mean arterial blood pressure and perfusion of the brain and cardiac tissue during diving bradycardia.