Hostname: page-component-586b7cd67f-g8jcs Total loading time: 0 Render date: 2024-11-30T02:43:44.956Z Has data issue: false hasContentIssue false

The effects of age, feeding pattern and sucrose on glucose tolerance, and plasma free fatty acids and insulin concentrations in the rat

Published online by Cambridge University Press:  09 March 2007

E. Florence
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen
J. Quarterman
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen
Rights & Permissions [Opens in a new window]

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
General Nutrition
Copyright
Copyright © The Nutrition Society 1972

References

Al-Nagdy, S., Miller, D. S. & Yudkin, J. (1970). Nutr. Metabol. 12, 193.CrossRefGoogle Scholar
Berdanier, C. D., Marshall, M. W. & Moser, P. (1971). Life Sci. 10, Part I, 105.Google Scholar
Bergmeyer, H. U. & Berut, E. (1963). Methods of Enzymatic Analysis p. 123. New York: Academic Press.Google Scholar
Chesters, J. K. & Quarterman, J. (1970). Br. J. Nutr. 24, 1061.Google Scholar
Cohen, A. M. & Teitelbaum, A. (1964). Am. J. Physiol. 206, 105.Google Scholar
Cohn, C. & Joseph, D. (1959). Am. J. Physiol. 196, 965.CrossRefGoogle Scholar
Cohn, C. & Joseph, D. (1960). Metabolism 9, 492.Google Scholar
Fábry, P. (1967). In Handbook of Physiology. Section 6. Alimentary Canal Vol. I, p. 31 [Code, C. F., editor]. Washington, DC: American Physiological Society.Google Scholar
Fábry, P., Fodor, J., Hejl, Z., Braun, T. & Zvolánková, K. (1964). Lancet ii, 614.Google Scholar
Florence, E. & Quarterman, J. (1969). Proc. Nutr. Soc. 28, 18A.Google Scholar
Gwinup, G., Byron, R. C., Roush, W., Kruger, I. & Hamwi, G. J. (1963). Lancet ii, 165.Google Scholar
Hales, C. N. & Randle, P. J. (1963). Biochem. J. 88, 137.Google Scholar
Heard, C. R. C. & Henry, P. A. (1969). Clin. Sci. 37, 37.Google Scholar
Klimas, J. E. (1968). J. Geront. 23, 31.Google Scholar
Laurell, S. & Tibbling, G. (1967). Clinica chim. acta 16, 57.CrossRefGoogle Scholar
Leveille, G. A. & Chakrabarty, K. (1968). J. Nutr. 96, 69.CrossRefGoogle Scholar
Loeb, H. (1966). J. Pediat. 68, 237.CrossRefGoogle Scholar
Macapinlac, M. P., Pearson, W. N. & Darby, W. J. (1966). In Zinc Metabolism p. 153 [Prasad, A. S., editor]. Springfield, Ill.: Charles C. Thomas.Google Scholar
Mills, C. F. & Murray, G. (1960). J. Sci. Fd Agric. 11, 547.Google Scholar
Quarterman, J. & Florence, E. (1972). Br. J. Nutr. 28, 75.Google Scholar
Quarterman, J., William, R. B. & Humphries, W. R. (1970). Br. J. Nutr. 24, 1049.CrossRefGoogle Scholar
Schotz, M. C. & Olivecrona, T. (1966). Biochim. biophys. Acta 125, 174.Google Scholar
Szanto, S. & Yudkin, J. (1969). Postgrad. med. J. 45, 605.CrossRefGoogle Scholar
Tepperman, J. & Tepperman, H. M. (1958). Am. J. Physiol. 193, 55.Google Scholar
Willlams, R. B. & Chesters, J. K. (1970). Br. J. Nutr. 24, 1053.Google Scholar
Williams, R. B. & Mills, C. F. (1970). Br. J. Nutr. 24, 989.Google Scholar
Winick, M. & Noble, A. (1965). Devl Biol. 12, 451.Google Scholar
Young, J. M. (1968). Diss. Abstr. 28, 4635B.Google Scholar