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The effect of calcium depletion on the chemical composition of bone minerals in laying hens

Published online by Cambridge University Press:  09 March 2007

T. G. Taylor
Affiliation:
Department of Agricultural Chemistry, University of Reading
J. H. Moore
Affiliation:
Department of Agricultural Chemistry, University of Reading
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Abstract

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Type
Research Article
Copyright
Copyright © The Nutrition Society 1956

References

Alwall, N. (1945). Acta med. scand. 122, 448. Quoted in Nutr. Abstr. Rev. (1945–6), 15, 727.CrossRefGoogle Scholar
Arnold, P. W. (1950). Trans. Faraday Soc. 336, 1061.CrossRefGoogle Scholar
Burns, C. M. & Henderson, N. (1935). Biochem. J. 29, 2385.CrossRefGoogle Scholar
Common, R. H. (1932). J. agric. Sci. 22, 576.CrossRefGoogle Scholar
Common, R. H. (1938). J. agric. Sci. 28, 347.CrossRefGoogle Scholar
Common, R. H. (1941). J. agric. Sci. 31, 281.CrossRefGoogle Scholar
Conrad, R. M. & Scott, H. M. (1938). Physiol. Rev. 18, 481.CrossRefGoogle Scholar
Deobald, H. J., Christiansen, J. B., Hart, E. B. & Halpin, J. G. (1938). Poult. Sci. 17, 114.CrossRefGoogle Scholar
Deobald, H. J., Lease, E. J., Hart, E. B. & Halpin, J. G. (1936). Poult. Sci. 15, 179.CrossRefGoogle Scholar
Feinberg, J. G., Hughes, J. S. & Scott, H. M. (1937). Poult. Sci. 16, 132.CrossRefGoogle Scholar
Freeman, S. & Chang, T. S. (1950). Amer. J. Physiol. 160, 341.CrossRefGoogle Scholar
Gerritz, H. W. (1935). Industr. Engng Chem. (Anal.), 7, 167.CrossRefGoogle Scholar
Hendricks, S. B. (1952). Trans. Macy Conference on Metabolic Interrelations, 4, 185.Google Scholar
Hendricks, S. B. & Hill, W. L. (1950). Proc. nat. Acad. Sci., Wash., 36, 731.CrossRefGoogle Scholar
Hunter, J. G. (1950). Analyst, 75, 91.CrossRefGoogle Scholar
Kitson, R. E. & Mellon, M. G. (1944). Industr. Engng Chem. (Anal.), 16, 379.CrossRefGoogle Scholar
Knowles, H. R., Hart, E. B. & Halpin, J. G. (1935). Poult. Sci. 14, 83.CrossRefGoogle Scholar
Koenig, R. A. & Johnson, C. R. (1942). Industr. Engng Chem. (Anal.), 14, 155.CrossRefGoogle Scholar
Landauer, W. & Zondek, B. (1944). Amer. J. Path. 20, 179.Google Scholar
McLean, F. C. & Bloom, W. (1941). Arch. Path. (Lab. Med.), 32, 315.Google Scholar
Morgulis, S. (1931). J. biol. Chem. 93, 455.CrossRefGoogle Scholar
Neuman, W. F. & Neuman, M. W. (1953). Chem. Rev. 53, 1.CrossRefGoogle Scholar
Sobel, A. E., Rockenmacher, M. & Kramer, B. (1945). J. biol. Chem. 159, 159.CrossRefGoogle Scholar
Taylor, T. G. (1953). Biochem. J. 54, 48.CrossRefGoogle Scholar
Taylor, T. G. (1955). The chemical nature of bone minerals. Ph.D. Thesis, University of Reading.Google Scholar
Taylor, T. G. & Moore, J. H. (1953). Nature, Lond., 172, 504.CrossRefGoogle Scholar
Taylor, T. G. & Moore, J. H. (1954). Brit. J. Nutr. 8, 112.CrossRefGoogle Scholar
Tinsley, J., Taylor, T. G. & Moore, J. H. (1951). Analyst, 76, 300.CrossRefGoogle Scholar
Tyler, C. (1954). J. Sci. Fd Agric. 5, 335.CrossRefGoogle Scholar
Tyler, C. & Willcox, J. S. (1942). J. agric. Sci. 32, 43.CrossRefGoogle Scholar