Nucleotide concentration in codling (Gadus callarias) muscle passing through rigor mortis at 0�
Author:
Publisher
Springer Science and Business Media LLC
Subject
Behavioral Neuroscience,Animal Science and Zoology,Physiology,Ecology, Evolution, Behavior and Systematics
Link
http://link.springer.com/content/pdf/10.1007/BF00297670.pdf
Reference44 articles.
1. Bate-Smith, E. C.: The physiology and chemistry of rigor mortis, with special reference to the aging of beef. Advanc. Food Res. 1, 1 (1948).
2. Bate-Smith, E C., and J. R. Bendall: Changes in muscle after death. Brit. med. Bull. 12, 230 (1956).
3. Bendall, J. R., and C. R. Davey: Ammonia liberation during rigor mortis and its relation to changes in the adenine and inosine nueleotides of rabbit muscle. Biochim. biophys. Acta 26, 93 (1957).
4. Bock, R. M., N.-S. Ling, S. A. Morrell and S. H. Lipton: Ultraviolet absorption spectra of adenosine 5?-triphosphate and related 5?-ribonucleotides. Arch. Biochem. 62, 253 (1956).
5. Ciotti, M. M., and N. O. Kaplan: Procedures for determination of pyridine nucleotides. In: Methods in enzymology, vol 3, p. 890, edit, by S. P. Colowick and N. O. Kaplan. New York: Academic Press 1957.
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