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Bakken, G. S (1976). A heat transfer analysis of animals: unifying concepts and the application of metabolism chamber data to field ecology. J. Theor. Biol 60, 337-.[Medline]

Bartholomew, G. A., Vleck, D. and Vleck, C. M (1981). Instantaneous measurements of oxygen consumption during pre-flight warm-up and post-flight cooling in sphingid and saturniid moths. J. Exp. Biol 90, 17-.[Abstract/Free Full Text]

Brown, J. H. and Lee, A. K (1969). Bergmann's rule and climatic adaptations in wood rats ( Neotoma ). Evolution 23, 329-.

Burton, A. C (1934). The application of the theory of heat flow to the study of energy metabolism. J. Nutrition 7, 497-.

Hill, R. W (1972). Determination of oxygen consumption by use of the paramagnetic oxygen analyzer. J. Appl. Physiol 33, 261-.[Free Full Text]

Hudson, J. W (1964). Temperature regulation in the round-tailed ground squirrel, Citellus tereticaudus. Ann. Acad. Sci. Fenn., Ser. A 15, 219-.

Lasiewski, R. C., Acosta, A. L. and Bernstein, M. H (1966). Evaporative water loss in birds. I. Characteristics of the open flowmethod of determination and their relation to estimates ofthermoregulatory ability. Comp. Biochem. Physiol 19, 445-.

Lustic, S (1969). Bird energetics: effects of artificial radiation. Science 163, 387-.[Abstract/Free Full Text]

Lyman, C. P (1948). The oxygen consumption and temperature regulation of hibernating hamsters. J. Exp. Zool 109, 55-.[Medline]

McNab, B. K (1966). The metabolism of fossorial rodents: A study of convergence. Ecology 47, 712-.

Neal, C. M (1976). Energy budget of the eastern chipmunk ( Tamias striatus ): convective heat loss. Comp. Biochem. Physiol 54, 157-.

Neumann, R. L. and Cade, T. J (1965). Torpidity in the Mexican ground squirrel, Citellus mexicanus parvidens. J. Mammal 43, 133-.

Pohl, H. and Hart, J. S (1965). Thermoregulation and cold acclimation in a hibernator, Citellus tridecemlineatus. J. Appl. Physiol 20, 398-.[Abstract/Free Full Text]

Walsberg, G. E., Campbell, G. S. and King, J. R (1978). Animal coat color and radiative heat gain: a re-evaluation. J. Comp. Physiol 126, 211-.

Walsberg, G. E. and Wolf, B. O (1995). Variation in the respiratory quotient of birds and implications for indirect calorimetry using measurements of carbon dioxide production. J. Exp. Biol 198, 213-.[Abstract]

Walsberg, G. E. and Wolf, B. O (1995). Effects of solar radiation and wind speed on metabolic power consumption by two mammals with contrasting coat colors. J. Exp. Biol 198, 1499-.[Abstract]

Walsberg, G. E. and Wolf, B. O (1995). Solar heat gain in a desert rodent: unexpected increases with wind speed and implications for estimating the heat balance of free-living animals. J. Comp. Physiol 165, 306-.

Wolf, B. O. and Walsberg, G. E (1996). Thermal effects of radiation and wind speed on a small bird and implications for microsite selection. Ecology 77, 2228-.




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This Article
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Right arrow Articles by Wooden, K. M.
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PubMed
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Right arrow Articles by Wooden, K. M.
Right arrow Articles by Walsberg, G. E.