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Potassium and caesium-137 distributions in Angus steer carcasses

Published online by Cambridge University Press:  27 March 2009

J. C. Duggleby
Affiliation:
Commonwealth X-ray and Radium Laboratory, 30 Lonsdale Street, Melbourne, Victoria, Australia
R. M. Seebeck
Affiliation:
School of Agriculture, University of Melbourne, Melbourne, Victoria, Australia

Extract

Seven Angus steers were reared under controlled conditions, slaughtered and their carcasses dissected. Muscles, fat, bones, connective tissues and samples of the steers' diet were measured by gamma spectrometry and the concentrations of potassium and caesium-137 determined. Significant variations in the concentration of each element were found both within and between tissues. Average potassium concentration was about four times greater in the muscle tissue than in the remainder of the carcass. Caesium/potassium ratios were similar in both Caesium/potassium ratios were similar in both bone.

The main conclusions reached were as follows:

(1) The variations of potassium concentrations in muscle may impose limitations on the potassium-40 technique for estimating muscle content of the living animal for scientific purposes, though not necessarily for estimating commercial value.

(2) Differences between animals in caesium-137 content of muscle were fairly consistent over the different muscle groups, and bore some relationship to caesium intake. This indicates that it may be possible to utilize caesium content of a representative muscle to monitor caesium-137 fallout in remote regions of Australia, where milk is not produced.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1967

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References

Bonnyman, J., Duggleby, J. C., Molina-Ramos, J. & Sewell, D. K. B. (1966). Concentration of caesium-137 in Australian milk during 1965. Aust. J. Sci. 28, 411–12.Google Scholar
Butterfield, R. M. (1963). Estimation of carcass composition: the anatomical approach. In Symposium on Carcass Composition and Appraisal of Meat Animals, ed. Tribe, D. E. (C.S.I.R.O., Victoria), section 4, pp. 113.Google Scholar
Garner, R. J. (1963). Environmental contamination and grazing animals. Hlth Physics 9, 597605.CrossRefGoogle ScholarPubMed
Gillet, T. A., Pearson, A. M. & Kirton, A. H. (1965). Variation in potassium and sodium in muscles of the pig. J. anim. Sci. 24, 177–81.CrossRefGoogle Scholar
Kirton, A. H., Gnaedinger, R. H. & Pearson, A. M. (1963). Relationship of potassium and sodium content to tho composition of pigs. J. Anim. Sci. 22, 904–10.CrossRefGoogle Scholar
Kirton, A. H. & Pearson, A. M. (1963 a). Relationships between potassium content and body composition. Ann. N.Y. Acad. Sci. 110, 221–8.CrossRefGoogle ScholarPubMed
Kirton, A. H. & Pearson, A. M. (1963 b). Comparison of methods of measuring potassium in pork and lamb and prediction of their composition from sodium and potassium. J. Anim. Sci. 22, 125–31.CrossRefGoogle Scholar
Kirton, A. H., Pearson, A. M. & Anderson, E. C. (1963). Caesium-137 content of lambs. Nature, Land. 199, 294.CrossRefGoogle ScholarPubMed
Kirton, A. H., Pearson, A. M., Nelson, R. H., Anderson, E. C. & Schuch, R. L. (1961). Use of naturally occurring potassium-40 to determine the carcass composition of live sheep. J. Anim. Sci. 20, 635–9.CrossRefGoogle Scholar
Kirton, A. H., Pearson, A. M., Porter, R. W. & Nelson, R. H. (1961). The use of natural gamma activity to measure the composition of pork and lamb samples. Fd Res. 26, 475–8.CrossRefGoogle Scholar
Kulwich, R., Feinstein, L., Golumbic, C., Hiner, R. L., Seymour, W. R. & Kauffman, W. R. (1961). Relationship of gamma-ray measurements to the lean content of hams. J. Anim. Sci. 20, 497502.CrossRefGoogle Scholar
National Research Council (1963). Damage to livestock from radioactive fallout in the event of nuclear war. Nat. Acad. Sci. U.S.A. Nat. Res. Council Publ. no. 1078.Google Scholar
Sansom, B. F.(1966). The metabolism of caesium-137 in dairy cows. J. agric. Sci., Camb. 66, 389–97.CrossRefGoogle Scholar
Seebeck, R. M. (1966). Growth and development in farm animals. Ph.D. thesis, Melbourne University.Google Scholar
Ward, G. M. & Johnson, J. E. (1965). The caesium-137 content of beef from dairy and feed-lot cattle. Hlth Physics 11, 95100.CrossRefGoogle ScholarPubMed