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Volatile fatty acids and lactic acid in the rumen of dairy cows receiving a variety of diets

Published online by Cambridge University Press:  09 March 2007

D. A. Balch
Affiliation:
National Institute for Research in Dairying, University of Reading
S. J. Rowland
Affiliation:
National Institute for Research in Dairying, University of Reading
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Abstract

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Type
Research Article
Copyright
Copyright © The Nutrition Society 1957

References

Balch, C. C. (1952). Unpublished.Google Scholar
Balch, C. C., Balch, D. A., Bartlett, S., Bartrum, M. P., Johnson, V. W., Rowland, S. J. & Turner, J. (1955). J. Dairy Res. 22, 270.CrossRefGoogle Scholar
Barker, S. B. & Summerson, W. H. (1941). J. biol. Chem. 138, 535.CrossRefGoogle Scholar
Carroll, E. J. & Hungate, R. E. (1955). Appl. Microbiol. 2, 205.CrossRefGoogle Scholar
Elsden, S. R. (1945). J. exp. Biol. 22, 51.CrossRefGoogle Scholar
Elsden, S. R. (1946). Biochem. J. 40, 252.CrossRefGoogle Scholar
Elsden, S. R., Hitchcock, M. W. S., Marshall, R. A. & Phillipson, A. T. (1946). J. exp. Biol. 22, 191.CrossRefGoogle Scholar
Elsden, S. R. & Lewis, D. (1953). Biochem. J. 55, 183.CrossRefGoogle Scholar
El-Shazly, K. (1952). Biochem. J. 51, 640.CrossRefGoogle Scholar
Friedemann, T. E. (1938). J. biol. Chem. 123, 161.CrossRefGoogle Scholar
Gray, F. V. & Pilgrim, A. F. (1951). J. exp. Biol. 28, 83.CrossRefGoogle Scholar
Gray, F. V. & Pilgrim, A. F. (1952). Nature, Lond., 170, 375.CrossRefGoogle Scholar
Gray, F. V., Pilgrim, A. F., Rodda, H. J. & Weller, R. A. (1952). J. exp. Biol. 29, 57.CrossRefGoogle Scholar
Gray, F. V., Pilgrim, A. F. & Weller, R. A. (1951). J. exp. Biol. 28, 74.CrossRefGoogle Scholar
Hungate, R. E., Dougherty, R. W., Bryant, M. P. & Cello, R. M. (1952). Cornell Vet. 42, 423.Google Scholar
Kiddle, P., Marshall, R. A. & Phillipson, A. T. (1951). J. Physiol. 113, 207.CrossRefGoogle Scholar
Lardinois, C. C., Mills, R. C., Elvehjem, C. A. & Hart, E. B. (1944). J. Dairy Sci. 27, 579.CrossRefGoogle Scholar
McClymont, G. L. (1951). Aust. J. agric. Res. 2, 92.CrossRefGoogle Scholar
McNaught, M. L. (1951). Biochem. J. 49, 325.CrossRefGoogle Scholar
Masson, M. J. (1951). Research, 4, 73.Google Scholar
Monroe, C. F. & Perkins, A. E. (1939). J. Dairy Sci. 22, 983.CrossRefGoogle Scholar
Moyle, V., Baldwin, E. & Scarisbrick, R. (1948). Biochem. J. 43, 308.CrossRefGoogle Scholar
Olson, T. M. (1941). J. Dairy Sci. 24, 413.CrossRefGoogle Scholar
Phillipson, A. T. (1942). J. exp. Biol. 19, 186.CrossRefGoogle Scholar
Phillipson, A. T. (1952). Brit. J. Nutr. 6, 190.CrossRefGoogle Scholar
Phillipson, A. T. & McAnally, R. A. (1942). J. exp. Biol. 19, 199.CrossRefGoogle Scholar
Popják, G., French, T. H. & Folley, S. J. (1951). Biochem. J. 48, 411.CrossRefGoogle Scholar
Schambye, P. & Phillipson, A. T. (1949). Nature, Lond., 164, 1094.CrossRefGoogle Scholar
Troy, H. C. & Sharp, P. F. (1935). Mem. Cornell agric. Exp. Sta. no. 179.Google Scholar