Cardiovascular and respiratory physiology of tuna: adaptations for support of exceptionally high metabolic rates

Author:

Bushnell Peter G.,Jones David R.

Publisher

Springer Science and Business Media LLC

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference81 articles.

1. Arthur, P.G., T.G. West, R.W. Brill, P.M. Schulte & P.W. Hochachka. 1992. Recovery metabolism of tuna white muscle: rapid and parallel changes of lactate and phosphocreatine after exercise. Can. J. Zool. 70: 1230?1239.

2. Basile, C., G. Goldspink, M. Modigh & B. Tota. 1976. Morphological and biochemical characterization of the inner and outer ventricular myocardial layers of adult tuna fishThunnus thynnus L. Comp. Biochem. Physiol. 54B: 279?283.

3. Block,B.A. 1991. Endothermy in fish: thermogenesis, ecology, and evolution. pp. 269?311.In: P.W. Hochachka & T. Mommsen (ed.) Biochemistry and Molecular Biology of Fishes, Volume 1, Elsevier Science, New York.

4. Boggs, C.H. & J.F. Kitchell. 1991. Tuna metabolic rates estimated from energy losses during starvation. Physiol. Zool. 64: 502?524.

5. Boutilier, R.G., P. Aughton & G. Shelton. 1984. O2 and CO2 transport in relation to ventilation in the Atlantic mackerel,Scomber scombrus. Can. J. Zool. 62: 546?554.

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