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Factors Affecting Composition of Chicken Meat. A Literature Review1

Published online by Cambridge University Press:  18 September 2007

J. H. Demby
Affiliation:
Department of Animal Sciences and IndustryKansas State UniversityManhattan, KS 66506
F. E. Cunningham
Affiliation:
Department of Animal Sciences and IndustryKansas State UniversityManhattan, KS 66506
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Research Article
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Copyright © Cambridge University Press 1980

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References

Adams, C. F. and Richardson, M. (1971). Nutritive value of foods. U. S. Dept. of Agri. Home and Garden Bulletin. No 72.Google Scholar
Adams, C. F. (1975). Nutritive Value of American Foods In common Units. U. S. Dept. of Agri. Handbook. No 456.Google Scholar
Anon. (1977). Do not thaw frozen foods. Review Pratique du foid et du Doncitionnement de l'Air 30: 711.Google Scholar
Anon. (1978). Total food expenditures: A new series, U. S. Dept. of Agri. Economic, Statistics and Cooperative Service. Nation food Review NFR-2.Google Scholar
Baker, R. C., Darfler, J. M., Mulnix, E. J. and Nath, K. R.. (1976). Palatability and other characteristics of repeatedly refrozen chicken broilers. J. of food Sci. 41: 443.CrossRefGoogle Scholar
Barratt, B. (1973). Nutrition: 2 Effects of Processing. Food In Canada. 33: 28.Google Scholar
Berry, J. G and Cunningham, F. E.. (1970a). The effect of freezing on the amino acid content of fried chicken. Poultry Sci. 49: 1136.CrossRefGoogle Scholar
Berry, J. G. and Cunningham, F. E.. (1970b). Factors affecting the flavour of frozen fried chicken. Poultry Sci. 49: 1236.CrossRefGoogle Scholar
Beuk, J. F., Fried, J. F. and Rice, E. E.. (1950). Nutritive values of sausage and other table-ready meats as affected by processing. Food Res. 15: 302.CrossRefGoogle ScholarPubMed
Bowers, J. A. and Fryer, B. A.. (1972). Thiamin and riboflavin in cooked and frozen reheated turkey. J. Amer. Dietetic Assoc. 60: 399.CrossRefGoogle ScholarPubMed
Burger, I. H. and Walters, C. L.. (1973). The effect of processing on the nutritive value of flesh foods. Symposium on The Effect of Processing on the Nutritive Value of Food. Proceedings of the Nutrition Soc. 32: 18.Google Scholar
Catellani, G. (1970). Organoleptic and dietary characteristics of poultry meats. Industrie Alimentari 9: 97.Google Scholar
Chang, I. C. L. and Watts, B. M.. (1952). The fatty acid content of meat and poultry before and after cooking. J. Amer. Oil Chem. Soc. 29: 334.CrossRefGoogle Scholar
Charley, H. (1970). Food Science. The Ronald Press company, New York.Google Scholar
Cook, D. J. (1974). The nutritional value of frozen foods. II. The composition of frozen foods. British Nutrition foundation No 12: 42.CrossRefGoogle Scholar
Cooper, L. F., Barber, E.M., Mitchell, H. S., Rynbergen, H. J. and Greene, J. C.. (1963). Nutrition in Health and Disease, 1963, J. B. Lippincott Company, Philadelphia. PA.Google Scholar
Crigler, J. C. and Dawson, L. E.. (1968). Cell disruption in broiler breast muscle related to freezing time. J. Food Sci. 33: 248.CrossRefGoogle Scholar
Cunningham, F. E. and Lee, H. W.. (1975). Influence of thawing and cooking procedures on selected characteristics of broilers. Poultry Sci. 54: 903.CrossRefGoogle Scholar
Cunningham, F. E., Suderman, D. R. and Wu, M. H.. (1978). Composition of drainage from thawed poultry carcasses. (Submitted for publication).Google Scholar
Davidek, J. and Khan, A. W.. (1968). Degradation of inosinic acid in poultry meat during frozen storage. Food Tech. (Champaign) 22: 1317.Google Scholar
Davidkova, E. and Khan, A. W.. (1967). Changes in lipid composition of chicken muscle during frozen storage. J. Food Sci. 32; 35.CrossRefGoogle Scholar
Dawson, L. E. (1969). Stability of frozen poultry meat and eggs. Quanlity and Stability of Frozen Foods-Time-Temp. Wiley-Interscience, New York, NY. pp 143.Google Scholar
Dawson, L. E. and Siscon, E. C.. (1973). Stability and acceptability of phosphate-treated and precooked chicken pieces reheated with microwave energy. J. Food Sci. 38: 161.CrossRefGoogle Scholar
deGroot, A. P. (1963). The influence of dehydration of foods on the digestibility and the biological value of the protein. Food Tech. 17 339343.Google Scholar
Dondero Cortes, V. (1952). Estimation of nicotinic acid in animal tissues. An. Fac. Farm, Biogium, Lima. 3: 71.Google Scholar
Donovan, W. P. and Appledorf, H.. (1973). Protein, fat and mineral analyses of franchise chicken dinners. J. Food Sci. 38: 79.CrossRefGoogle Scholar
Dworschak, E. (1970). Investigations about the biological value of proteins in raw and roasted meat. Zeitschrift fur Leberns Mitteluntersuchung Und-Forschung. 143: 167.Google Scholar
Edwards, H. M. Jr. and Denman, F.. (1975). Carcass composition studies. II. Influences of breed, sex and diet on gross composition of the carcass and fatty acid composition of the adipose tissue. Poultry Sci. 54: 1230.CrossRefGoogle Scholar
El-Warraki Abdel Aziz, M. A.Goma, M. A. and El-Zifzak, S. Y.. (1975). Changes in the lipid content of frozen chickens. Elelmiszervizsgalati Kozlemenylk. 21: 318.Google Scholar
Empey, W. A. and Howard, A.. (1954). Drip formation in meat and fish. Food Preservation. 14: 33.Google Scholar
Engler, P. P. and Bowers, J. A.. (1975a). Eating quality and thiamin retention of turkey breast muscle roasted and slow-cooked from frozen and thawed states. Home Economics Res. J. 4: 27.CrossRefGoogle Scholar
Engler, P. P. and Bowers, J. A.. (1975b). Vitamin B6 in reheated held and freshly cooked turkey breast. J. Amer. Dietetic Assoc. 67: 42.CrossRefGoogle ScholarPubMed
Engler, P. P. and Bowers, J. A.. (1975c). B-Vitamin retention in meat during storage and preparation. J. Amer. Dietetic Assoc. 69: 253.CrossRefGoogle Scholar
Engler, P. P. and Bowers, J. A.. (1975d). Vitamin B6 content of turkey cooked from frozen, partially frozen and thawed states. J. Food Sci. 40: 615.CrossRefGoogle Scholar
Essary, E. O. (1960). Effect of different cooking methods on the cooking yield, boned yield, percent moisture, fat and protein of broilers. Poultry Sci. 39: 1248. Abstr.Google Scholar
Essary, E. O. and Young, R. W.. (1977). Amino acid content of broiler, quail and duck skins. Poultry Sci. 56: 1605.CrossRefGoogle Scholar
Farr, A. J. and May, K. N.. (1970). The effect of pholyphosphates and sodium chloride on cooking, yields and oxidative stability of chicken. Poultry Sci. 49: 268.CrossRefGoogle Scholar
Feeley, R. M., Criner, P. E. and Watt, B. K.. (1972). Cholesterol content of foods. J. Amer. Dietetic Assoc. 61: 134.CrossRefGoogle ScholarPubMed
Fox, E. A., Bleiler, R. E. and Ohlson, M. A.. (1960). Magnesium in beef, eggs, chicken and beef gravy. J. Amer. Dietetic Assoc. 36: 445.CrossRefGoogle ScholarPubMed
Fristiom, G. A. and Weihrauch, . (1976). Comprehensive evolution of fatty acids in foods. J. Amer. Dietetic Assoc. 69: 517.CrossRefGoogle Scholar
Froning, G. W., Swanson, M. H. and Benson, H. N.. (1960). Moisture levels in frozen poultry as related to thawing losses, cooking losses and palatability. Poultry Sci. 39: 373.CrossRefGoogle Scholar
Fry, J. L. and Stadelman, W. J. (1960). Effects of cooking and carcass part on the methionine and systine content of chicken meat. Food Research 25: 442.CrossRefGoogle Scholar
Fulton, L. and Davis, C. (1974). Cooking chicken and turkey from the frozen and thawed state. J. Amer. Dietetic Assoc. 64: 505.CrossRefGoogle Scholar
Gilpin, G. L., Dawson, E. H., Toepfer, E. W. and Warren, H. W. (1952). Palatability and nutritive values of home-canned chicken. U. S. Dept. of Agri. Tech. Bulletin. No. 1054.Google Scholar
Goddard, M. S. and Heath, J. L.. (1978). Quality evaluation of four methods of producing frozen poultry parts. J. Food Sci.CrossRefGoogle Scholar
Goodwin, T. L. and Simpson, M. D. (1973). Chemical composition of broilers. Poultry Sci. 52: 2032.Google Scholar
Hale, K. K. Jr. and Goodwin, T. L.. (1968). Breaded fried chicken: effects of precooking, batter composition and temperature of parts before breading. Poultry Sci. 47: 739.CrossRefGoogle Scholar
Hale, K. K. Jr. and Stadelman, W. J.. (1973). Effects of electrolyte treatment and dry-chilling on yields and tenderness of broilers. Poultry Sci. 52: 244.CrossRefGoogle Scholar
Hale, K. K. Jr., Stadelman, W. J. and Bramblett, V. D. (1973). Effect of dry-chilling on the flavour of fried chicken. Poultry Sci. 52: 253.CrossRefGoogle Scholar
Hale, K. K. and Mayfield, T. L.. (1976). The effects of chilling and non-chilling on further processed fowl. Poultry Sci. 55: 1798.CrossRefGoogle Scholar
Hamence, J. H. and Kunwardia, G. H. (1974). Polyphosphate and moisture in meat products. J. Assoc. of Public Analysis. 12: 85.Google Scholar
Hankin, J. H., Margen, S. and Goldsmith, N. F. (1970). Contribution of hard water to calcium and magnesium intakes of adults. J. Amer. Dietetic Assoc. 56: 212.CrossRefGoogle ScholarPubMed
Harjes, C. F. and Smith, R. J. (1970). Nutritive analysis of frozen fully cooked institutional foods. Food Tech. 24: 989.Google Scholar
Harris, R. S. and Karmas, E. (1975). Nutritional evaluation of food processing. The AVI Publishing Company, Inc., Westport, CT.Google Scholar
Harris, R. S. and Von Loesecke, H. (1960). Nutritional evaluation of food processing. AVI Publishing Company, Inc., Westport, CT.Google Scholar
Harshaw, H. M. (1942). Physical and chemical composition of chickens and turkeys. U.S.D.A., Animal Nutr. Div. 7.Google Scholar
Hawley, H. B. (1971). Meat flavour and aroma. Food Manufacture 46: 137.Google Scholar
Hay, J. D., Currie, R. W. and Wolfe, F. H. (1973). Effect of postmorterm aging on chicken muscle lipids. J. Food Sci. 38: 696.CrossRefGoogle Scholar
Hendricks, D. G., Mahoney, A. W. and Gillett, T. A. (1977). Influence of remaining connective tissue, cooking and nitrite curing on protein quality of beef shank muscle. J. Food Sci. 42: 186.CrossRefGoogle Scholar
Hewston, E. M., Dawson, E. H., Alexander, L. M. and Orent-Keiles, E. (1948). Vitamin and mineral content of certain foods as affected by home preparation. U.S.D.A. Misc. Publ. No. 628.Google Scholar
Hodson, A. Z. (1941). Effect of cooking on riboflavin content of chicken meat. Food Research. 6: 175.CrossRefGoogle Scholar
Huber, C. S. (1969). The effect of freezing rate on the soluble proteins of frozen and freeze-dried muscle tissue. (1969). Diserations Abstracts International Sec B. 19: 4219.Google Scholar
Hurley, W. C., Kahlenberg, O. J., Funk, E. M., Maharg, L. G. and Webb, N. L.. (1958). Factors affecting poultry flavour. 1. Inorganic constituents. Poultry Sci. Vol. 37: 1436.CrossRefGoogle Scholar
Hurrell, R. F., Carpenter, K. J., Sinclair, W. J., Otterfurn, M. S. and Asquith, R. S.. (1976). Mechanisms of heat damage in proteins. 7. The significance of lysine-containing isopeptides of lanthionine in heated proteins. British J. of Nutrition. 35: 383.CrossRefGoogle ScholarPubMed
Hwang, C. E., Hong, J. M. and Lee, K. H. (1975). Effects of cooking treatment on the composition of chicken meat. Korean J. Animal Sci. 17: 184.Google Scholar
Kahn, L. N. and Liverston, G. E. (1970). Effects of heating methods on thiamine retention in fresh or frozen prepared foods. J. Food Sci. 35: 3459.CrossRefGoogle Scholar
Katz, M. A., Dugan, L. R. Jr. and Dawson, L. E. (1966). Fatty acids in neutral lipids and phospholipids from chicken tissues. J. Food Sci. 31: 717.CrossRefGoogle Scholar
Khan, A. W. (1968). Biochemical changes occurring during aging of poultry, and their significance in post-mortem tenderization. Canadian Inst. Food Tech. 1: 86.CrossRefGoogle Scholar
Khan, A. W. and Lentz, C. P. (1965). Influence of prerigor, rigor and postrigor freezing on drip losses and protein changes in chicken meat. J. Food Sci. 30: 787.CrossRefGoogle Scholar
Khan, A. W. and Nakamura, R. (1971). Quality and biochemical changes during frozen storage of meat from epinephrine-treated and untreated chickens. J. Food Sci. 37: 145.CrossRefGoogle Scholar
Khan, A. W.Van Den Berg, L. and Lentz, C. P. (1963). Effects of frozen storage on chicken muscle protein. J. Food Sci. 28: 425.CrossRefGoogle Scholar
Khan, A. W. and Van Den Berg, L. (1964). Some protein changes during post-mortem tenderization in poultry meat. J. Food Sci. 29: 4597.CrossRefGoogle Scholar
Khan, A. W. and Van Den Berg, L. (1965). Changes in chicken muscle proteins during cooking and subsequent frozen storage, and their significance in quality. J. Food Sci. 30: 151.CrossRefGoogle Scholar
Khan, A. W. and Van Den Berg, L. (1967). Biochemical quality changes occurring during freezing of poultry meat. J. Food Sci. 32: 148.CrossRefGoogle Scholar
Kik, M. C. (1962). Nutritive value of chicken meat and its value in supplementing rice protein. J. Agri and Food Chem. 5: 1059.Google Scholar
Kravis, E. M. and Morley, R. K. (1960). Change with age in tissue levels of sodium and potassium in the fowl. Poultry Sci. 39: 13.CrossRefGoogle Scholar
Landers, D. R. (1972). A comparison of certain organoleptic and physical properties of CO2 snow-pack and icepack fresh broiler chicken. Poultry Sci. 51: 1765.CrossRefGoogle Scholar
Lang, K. (1970). Influence of cooking on foodstuffs. World Rev. of Nutrition and Dietetics. 12: 266.CrossRefGoogle Scholar
Larson, E. R. (1956). Vitamin losses in the drip from thawed, frozen poultry. J. Amer. Dietetic Assoc. 32: 716.CrossRefGoogle ScholarPubMed
Lee, D. M. (1971). Composition of meat and fish. Scientific and Technical Surveys, British Food Manu. Industries Res. Assoc. 69: 127.Google Scholar
Lee, W. T. and Dawson, L. E. (1973). Chicken lipid changes during cooking in fresh and reused cooking oil. J. Food Sci. 38: 1232.CrossRefGoogle Scholar
Lehrer, W. P. Jr.Wiese, A. C., Harvey, W. R and Moore, P. R. (1951). Effect of frozen storage and subsequent cooking on the thiamine, riboflavin and nicotinic acid of pork chop. Food Res. 16: 485.CrossRefGoogle Scholar
Lilyblade, A. L. and Peterson, D. W. (1962). Inositol and free sugars in chicken muscle post-mortem. J. Food Sci. 27: 245.CrossRefGoogle Scholar
Lorenz, K. (1976). Microwave heating of foods—changes in nutrient and chemical composition. Food Sci. and Nutr. 7: 339.Google Scholar
Lund, D. B. (1973). Effects of heat processing. Food Tech. 27: 16.Google Scholar
Marion, J. E. and Woodroff, J. G. (1965). Lipid fractions of chicken broiler tissue and their fatty acid composition. J. food Sci. 30: 38.CrossRefGoogle Scholar
Mastert, G. C. and Stadelman, W. J. (1964). Effect of method of cookery on shrinkage, moisture and ether extractable content of broiler legs and thighs. Poultry Sci. 43: 896.CrossRefGoogle Scholar
Matthews, R. H. and Garrison, Y. J. (1975). Food Yields, U. S. Dept. of Agri., Research Service, Agri. Handbook No. 102.Google Scholar
McCance, R. A. and Shipp, H. L. (1933). The chemistry of flesh food and their losses on cooking. British Medical Res. Council Special Report Series, No. 187.Google Scholar
McCance, R. A. and Widdowson, E. M. (1960). The composition of food. Medical Research Council Special Report Series. No 297.Google Scholar
Mcintire, J. M., Schweigert, B. S., Henderson, L. M. and Elvehjem, C. A. (1943). The retention of vitamins in meat during cooking. J. of Nutrition. 25: 143.CrossRefGoogle Scholar
Mickelberry, W. C. and Stadelman, W. J. (1962). Effect of cooking method on shear press values and weight changes of frozen chicken meat. Food Tech. 16: 94.Google Scholar
Millares, R. and Fellers, C. R. (1948). Amino acid content of chicken. J. Amer. Dietetics Assoc. 24: 1057.CrossRefGoogle ScholarPubMed
Millares, R. and Fellers, C. R. (1949). Vitamin and amino acid content of processed chicken meat products. Food Res. 14: 131.CrossRefGoogle ScholarPubMed
Miller, J. H., Dawson, L. E. and Bauer, D. H. (1965). Free amino acid content of chicken muscle from broilers and hens. J. Food Sci. 30: 406.CrossRefGoogle Scholar
Monk, J. A., Mountney, G. J. and Prudent, I. (1964). Effect of phosphate treatment and cooking method on moisture losses of poultry meat. Food Tech. 18: 104.Google Scholar
Morgan, A. F., Kidder, L. E., Hunner, M., Sharokh, B. K., and Chesbro, R. M. (1949). Thiamine, riboflavin and niacin content of chicken tissues, as affected by cooking and frozen storage. Food Res. 14: 439.CrossRefGoogle ScholarPubMed
Mostert, G. C. and Stadelman, W. J. (1964). Effect of method of cookery on shrinkage, moisture and ether extractable content of broiler legs and thighs. Poultry Sci. 43: 896.CrossRefGoogle Scholar
Mountney, G. J. (1976). Poultry products technology. AVI Publ. Co., Inc., Westport, CT.Google Scholar
Mountney, G. J. and Arganosa, F. C. (1963). The effect of phosphates on moisture absorption, retention and cooking losses of broiler carcasses. Poultry Sci. 42: 384.CrossRefGoogle Scholar
Orr, M. L. and Watt, B. K. (1957). U. S. Agri. Home Econ. Res. Retp. 4.Google Scholar
Orr, M. L. (1969). Panthothemic acid, vitamin B6 and vitamin B12 in foods. U. S. Dept. of Agri. Home Economics Res. Report No. 36.Google Scholar
Pearson, A. M. and Miller, J. I. (1950). The influence on rate of freezing and length of freezer storage upon the quality of beef of known origin. J. Animal Sci. 9: 13.CrossRefGoogle Scholar
Pearson, A. M., Burnside, J. E., Edwards, H. M., Glasscock, R. S., Cunha, T. J. and Novak, A. F. (1951). Vitamin losses in drip obtained upon defrosting frozen meat. Food Res. 16: 85.CrossRefGoogle ScholarPubMed
Pippen, E. L. and Klose, A. A. (1955). Effects of ice water chilling on flavour of chicken. Poultry Sci. 34: 1139.CrossRefGoogle Scholar
Polansky, M. M. and Toepfer, E. W. (1969). Vitamin B6 components in some meats, fish, dairy products and commercial infant formulas. J. Agri. and Food Chem. 17: 1394.CrossRefGoogle Scholar
Posati, L. (1978). Personal correspondence.Google Scholar
Privett, O. S., Pusch, F. J. and Lundberg, W. O. (1955). Fatty acid composition and oxidative deterioration during storage of fats in cuts of beef, lamb, pork and turkey. Food Tech. 9: 347.Google Scholar
Prudent, I. (1959). Nutritive value and consumer acceptance of frozen poultry. Ohio Agri-Experiment Station Res. Bull. No. 835.Google Scholar
Pudelkewicz, C., Gordon, H., Whitworth, L., Caldwell, H. M. and Kahlenberg, O. T. (1963). Effects of processing and cooking on certain nutrients in fowl. Agri. Exp. Station Res. Bull. No. 819. University of Missouri, Columbia, MO.Google Scholar
Ragnewd, G. (1972). Contents of some nutrients in raw and prepared broiler chickens. 1. thiamine, calcium and iron. Tidsskrift for Hermetikindustri. 58: 125.Google Scholar
Rassadkiva, R. A., Novikova, M. and Lubyanetskii, S. A. (1970). Physio-chemical changes in poultry meat during processing on a universal line. Izvestiya Vysshikh Uchebnykh Zavedenii, Pischevaya Tekhnologiya pp. 4547.Google Scholar
Rice, E. E., Beuk, J. F. and Fried, J. F. (1947). Effect of commercial using smoking, storage and cooking operations upon vitamin content of pork hams. Food Research. 12: 239.CrossRefGoogle ScholarPubMed
Rice, E. E., Squires, E. M. and Fried, J. F. (1948). Effect of storage and microbial action on vitamin content of pork. II. Food Research. 13: 195.CrossRefGoogle Scholar
Robertson, J., Vipond, M. S., Tapsfield, D. and Greaves, J. P. (1966). Studies on the composition of food. 1. Some differences in the composition of broiler and free range chickens. British J. of Nutr. 20: 675.CrossRefGoogle ScholarPubMed
Rosen, C. G. (1972). Effects of microwaves in food and related material. Food Tech. 26: 36.Google Scholar
Rowe, D. M., Mountney, G. J. and Prudent, I. (1963). Effects of freeze-drying on the thiamine, riboflavin and niacin content of chicken muscle. Food Tech. 17: 1449.Google Scholar
Savian, E. G. and Servina, M. N. (1971). Changes in amino acid content of chicken muscle during storage. Trudy Vsesoyuznyi Nauchno-issled-ovatel'skii Inst. ptitsepererabatyvayushchei Promyshlennosti. 16: 68.Google Scholar
Schlosser, G., Seaquist, R., Rae, E. and Dawson, E. H. (1957). Food yield and losses in pressure cooking. J. Amer. Dietetic Assoc. 33: 1154.CrossRefGoogle ScholarPubMed
Scholtyssek, S., Heimbach, P. and Berner, H. (1970). Investigation into new methods of chilling poultry. IV. Investigation of carcass quality. Fleishwirtschaft. 50: 77.Google Scholar
Schroeder, Henry A. (1971). Losses of vitamins and trace minerals resulting from processing and preservation of foods. Amer. J. Clin. Nutr. 24: 562.CrossRefGoogle ScholarPubMed
Scott, M. L. (1956). Composition of turkey meat. J. Amer. Dietetic Assoc. 32: 941.CrossRefGoogle ScholarPubMed
Seiler, H., Schlettwein-Gsell, D., Brubacher, G. and Ritzel, G. (1977). Mineral contents of meat in relation to method of preparation. Mitteilungen aus dem Gebiete der Lebensmitteluntersuchung und Hygiene. 68: 523.Google Scholar
Shantz, R. C., Fuller, G. W. and Orr, A. L. (1969). An evaluation of the dry pack and ice pack for storing fresh broilers. Poultry Sci. 48: 266.CrossRefGoogle ScholarPubMed
Shults, G. W. and Wierbicki, E. (1973). Effects of sodium chloride and condensed phosphates on the WHC, pH and swelling of chicken muscle. J. Food Sci. 38: 991.CrossRefGoogle Scholar
Singh, S. P. and Essary, E. O. (1971a). Influence of thawing methods on the composition of drip from broiler carcasses. Poultry Sci. 50: 364.CrossRefGoogle Scholar
Singh, S. P. and Essary, E. O. (1971b). Vitamin content of broiler meat as affected by age, sex, thawing and cooking. Poultry Sci. 50: 1150.CrossRefGoogle Scholar
Smirnov, V. (1970). Quality of animal fats from nutritional aspects. Vyziva a Zdravie. 15: 14.Google Scholar
Smith, A. A. and Vail, G. E. (1963). Yield and composition of broiler-fryers fried by three methods. J. Amer. Dietetic Assoc. 32: 11.Google Scholar
Spencer, M. (1973). Chemical changes during cooking, processing and storage of food. Nutrition and Food Sci. 32. 1114.Google Scholar
Stadelman, W. J. (1978). Some factors influencing tenderness, flavour, and nutritive value of chickens. Food Tech. 32: 80.Google Scholar
Svettov, V. and Guslyannikov, V. (1970). Physical and chemical indices of chicken muscle tissue and blood under gas stunning. Myasnaya Industriya SSSR. 41: 30.Google Scholar
Swanson, M. H. and Sloan, H. J. (1953). Some protein changes in frozen poultry. Poultry Sci. 32: 643.CrossRefGoogle Scholar
Terjung, F. (1974). Study of defrosting of deep frozen and frozen poultry using a microwave oven. Archiv fur Lebensmittelhygiene. 25: 62.Google Scholar
Twining, P. V., Thomas, O. P. and Bossard, E. H. (1978). Effect of diet and type of bird on the carcass composition of broilers at 28, 49, and 59 days of age. Poultry Sci. 57: 492.CrossRefGoogle Scholar
Uherova, R., Hozova, B. and Bohusova, M. (1975). Pantothenic acid in heat-treated poultry meat. Prumysl Patravin 26: 475.Google Scholar
Watt, B. K. and Merrill, A. L. (1963). Composition of foods, U. S. Dept. of Agri. Handbook. No. 8.Google Scholar
Watt, B. K. and Murphy, E. W. (1970). Bridging the nutrient knowledge gap requires your concern and aid in updating tables of food composition: Scope and needed research. Food Tech. 24: 674.Google Scholar
Webb, J. E. and Goodwin, T. L. (1970). Precooked chicken: Effect of cooking methods and batter formula on yields and of storage conditions on 2-thio-barbituric acid values. Br. Poultry Sci. 11 171.CrossRefGoogle Scholar
West, L. C., Titus, M. C. and Van Duyne, F. O. (1959). Effects of freezer storage and variations in preparation on bacterial count, palatability and thiamine content of ham loaf, Italian rice, and chicken. Food Tech. 13: 323.Google Scholar
Williams, H. H., Curtin, L. V., Abraham, J., Loosli, J. K. and Maynard, L. A. (1954). Estimation of growth requirements for amino acids by assay of the carcass. J. Biol. Chem. 208: 277.CrossRefGoogle ScholarPubMed
Wing, R. W. and Alexander, J. C. (1972). Effect of microwave heating on vitamin B retention in chicken. J. Amer. Dietetic Assn. 61: 661.CrossRefGoogle ScholarPubMed
Wladyka, E. J. and Dawson, L. E. (1968a). Essential amino acid composition of chicken meat and drip after 30 and 90 days of frozen storage. J. Food Sci. 33: 453.CrossRefGoogle Scholar
Wladyka, E. J. and Dawson, L. E. (1968b). Proximate composition of thawed chicken meat and drip after storage. Poultry Sci. 47: 1111.CrossRefGoogle ScholarPubMed
Wyche, R. C. and Goodwin, T. L. (1974). Hot-cutting of broilers and its influence on tenderness and yield. Poultry Sci. 53: 1668.CrossRefGoogle Scholar
Wyche, R. C., Love, B. E. and Goodwin, T. L. (1972). Effect of skin removal, storage time and freezing methods on tenderness and rancidity of broilers. Poultry Sci. 51: 655.CrossRefGoogle Scholar
Yingst, L. D., Wyche, R. C. and Goodwin, T. L. (1972). Effect of skin removal, storage time and freezing methods on tenderness and rancidity of broilers. Poultry Sci. 51: 655.Google Scholar
Zenoble, O. C., Bowers, J. A. and Cunningham, F. E. (1977). Eating quality and composition of spent hens processed with or without immersion chilling. Poultry Sci. 56: 843.CrossRefGoogle Scholar