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The Nutrition of the Young Ayrshire Calf

12. Factors Affecting the Tocopherol Reserves, Muscle Composition and Muscle Histology of 4-day-old Calves

Published online by Cambridge University Press:  09 March 2007

K. L. Blaxter
Affiliation:
Hannah Dairy Research Institute, Kirkhill, Ayr
F. Brown
Affiliation:
Hannah Dairy Research Institute, Kirkhill, Ayr
A. M MacDonald
Affiliation:
Glasgow University and Royal Hospital for Sick Children, Glasgow
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Abstract

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Type
Research Article
Copyright
Copyright © The Nutrition Society 1953

References

Abderhalden, R. (1945 a). Z. Vitaminforsch. 16, 319.Google Scholar
Abderhalden, R. (1945 b). Schweiz. med. Wschr. 75, 281.Google Scholar
Blaxter, K. L., Watts, P. S. & Wood, W. A. (1951). Brit. J. Nutr. 5, ii.Google Scholar
Blaxter, K. L., Watts, P. S. & Wood, W. A. (1952). Brit. J. Nutr. 6, 125.CrossRefGoogle Scholar
Blaxter, K. L. & Wood, W. A. (1951). Brit. J. Nutr. 5, 29.CrossRefGoogle Scholar
Blaxter, K. L. & Wood, W. A. (1952). Brit. J. Nutr. 6, 144.CrossRefGoogle Scholar
Blaxter, K. L., Wood, W. A. & MacDonald, A. M. (1953). Brit. J. Nutr. 7, 34.CrossRefGoogle Scholar
Cabell, C. A. & Ellis, N. R. (1942). J. Nutr. 23, 633.CrossRefGoogle Scholar
Davies, W. L. (1936). J. Dairy Res. 7, 14.CrossRefGoogle Scholar
Emmerie, A. & Engel, C. (1938). Rec. Trav. chim. Pays-bas, 57, 1351.CrossRefGoogle Scholar
Emmerie, A. & Engel, C. (1939). Rec. Trav. chim. Pays-bas, 58, 283.CrossRefGoogle Scholar
Florence, A. (1922). Amer. J. Dis. Child. 23, 132.Google Scholar
Folin, O. (1914). J. biol. Chem. 17, 469.CrossRefGoogle Scholar
Glavind, J., Kjølhede, K. T. & Prange, I. (1942). Kem. Mannedsblad. 23, 43.Google Scholar
Hammond, J. (1927). The Physiology of Reproduction in the Cow. Cambridge: University PressGoogle Scholar
Harris, P. L., Swanson, W. J. & Hickman, K. C. D. (1947). J. Nutr. 33, 411.CrossRefGoogle Scholar
Hjärre, A. & Lilleengen, K. (1936). Virchows Arch. 297, 565.CrossRefGoogle Scholar
Kachmar, J. F., Boyer, P. D., Gullickson, T. W., Liebe, E. & Porter, R. M. (1950). J. Nutr. 42, 391.CrossRefGoogle Scholar
Loosli, J. K. (1949). Ann. N. Y. Acad. Sci. 52, 243.CrossRefGoogle Scholar
MacDonald, A. M., Blaxter, K. L., Watts, P. S. & Wood, W. A. (1952). Brit. J. Nutr. 6, 164.CrossRefGoogle Scholar
Mason, K. E. & Bryan, W. L. (1938). Biochem. J. 32, 1785.CrossRefGoogle Scholar
Mason, K. E. & Bryan, W. L. (1940). J. Nutr. 20, 501.CrossRefGoogle Scholar
Myers, V. C. & Fine, M. S. (1913). J. biol. Chem. 14, 9.CrossRefGoogle Scholar
Naftalin, J. M. (1951). J. Path. Bact. 63, 649.CrossRefGoogle Scholar
Parrish, D. B. (1949). Ann. N.Y. Acad. Sci. 5a, 251.CrossRefGoogle Scholar
Parrish, D. B., Wise, G. H. & Hughes, J. S. (1947). J. Dairy Sci. 30, 849.CrossRefGoogle Scholar
Parrish, D. B., Wise, G. H., Latschar, C. E. & Hughes, J. S. (1950). J. Nutr. 40, 193.CrossRefGoogle Scholar
Quaife, M. L. & Dju, M. Y. (1949). J. biol. Chem. 180, 263.CrossRefGoogle Scholar
Quaife, M. L. & Harris, P. L. (1944). J. biol. Chem. 156, 499.CrossRefGoogle Scholar
Quaife, M. L. & Harris, P. L. (1948). Analyt. Chem. 20, 1221.CrossRefGoogle Scholar
Scherer, J. (1946). Über die Bedeutung des Vitamin E in der Tiermedizin. Thesis, University of Zurich.Google Scholar
Slagsvold, L. & Lund-Larsen, H. (1934). Norsk. VetTidsskr. 46, 529.Google Scholar
Straumfjord, J. V. & Quaife, M. L. (1946). Proc. Soc. exp. Biol., N. Y., 61, 369.CrossRefGoogle Scholar
Tošić, J. & Moore, T. (1945). Biochem. J. 39, 498.CrossRefGoogle Scholar
van der Kaay, F. C., Teunissen, G. H. B., Emmerie, A. & van Eekelen, M. (1949). Int. Z. Vitaminforsch. 21, 140.Google Scholar
Whiting, F. & Loosli, J. K. (1948). J. Nutr. 36, 721.CrossRefGoogle Scholar
Whiting, F., Willman, J. D. & Loosli, J. K. (1949). J. Anim. Sci. 8, 234.CrossRefGoogle Scholar