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Salmonellas In Poultry Feeds—A Worldwide Review

Published online by Cambridge University Press:  02 April 2007

J. E. Williams
Affiliation:
Southeast Poultry Research Laboratory, United States Department of AgricultureScience and Education Administration, Agricultural Research934 College Station Road, Athens, Georgia30605.
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Copyright © Cambridge University Press 1981

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References

Allred, J. N. (1964). Salmonella in animal feeds. Sourhwestern Vet. 18: 31.Google Scholar
Allred, J. N., Walker, J. W.Beal, V. C. Jr. and Germaine, F. W. (1967). A survey to determine the salmonella contamination rale in livestock and poultry feeds. J. Am. Vet. Med. Ass. 151: 1857.Google Scholar
Almlof, J. (1977). National approach to salmonella control. In Proc. Internat. Symp. on Salmonella and Prospecis Joor Conrr.Univ. Guelph.Guelph, Ont. Canada, 239.Google Scholar
Anon, (1959). Salmonella organisms in animal feeding stuffs and fertllizers. Report of a working party of the Public Health Laboratory Service. Mon. Bull. Minisr. Heallh Public Healrh Lab. Serv. 18: 26. Colindale London.Google Scholar
Anon, (1961). Salmonella organisms in animal feeding stuffs. Report of a working party of the Public Health Laboratory Service. Mon. Bull. Health Public Health Lab. Serv. 20: 73. Colindale, London.Google Scholar
Anon, (1967). Minist. Third Report, WHO, Technical Reports Series // 378, Joint TAOIWHO Expert Committee on Zoonoses, Palair de Nations, Geneva, 41.Google Scholar
Anon, (1969). An Evaluation o f the Salmonella Problem. Nat. Acad. Sci. Publ. 1683, Nat. Rec. Council, Washington. DC.Google Scholar
Anon, (1974). Salmonella in Raw Meat and Poulrry: An Assewnenr of rhe Problem. Report ro the Congress. General Accountmg Office, Comptroller General of the United States, Washing, DC.Google Scholar
Anon, (1977). Guidelines for Salmonella Cunrrol in the Poulrry Industry. Australian Bureau o f Animal Health, Australian Govt. Publ. Serv., Canberra, Australia, 8.Google Scholar
Anon, (1978a). Salmunellas and Poulrry. Reporr of a Joint Ministry of Agriculture Fisheries and Food and British Veterinary Asboclation Poultry Group. MAFF. Hook Rise Tolworth, Surrey, England.Google Scholar
Anon, (1978b). Recommendorions for Reduction and Conrrol OJ Salmunellosis. Reporr oJ the U S. Advisory Commiriee on Salmonella. Food Safety and Qual. Serv., U.S. Dept. Agric., Washlngton, DC.Google Scholar
Bains, B. S. and Mackenzle, M. A. (1974). Transmission of salmonella through an integrated poultry organization. Poulrry Sci. 53: 1114.CrossRefGoogle Scholar
Berg, R. W. and Anderson, A. W. (1972). Salmonellae and Edwardsrella tarda in gull faeces: A source of contamination in fish processing plants. Appl. Microbial. 24: 501.CrossRefGoogle ScholarPubMed
Bergsma, C. (1959). Veterinaire Prohlemen Bij de Epidemiologie der Salmonellosen. Tijdschr. Drergeneesk. 84: 872.Google Scholar
Bischoff, H. (1955). Ein Beitrae zur Klarune der Fraee nach der Herkunft seltener Salmonella-Typen. Berlin. Muench. Treraersll. Wochschr. 68: 306.Google Scholar
Bischoff, J. and Rohde, R. (1956). Salmonellen in Fisch- und Fleischmehlen ausländischer Herkunft. Berlm. Muench. Treroerztl. Wochrchr. 69: 50.Google Scholar
Bixler, W. B. (1973). Status of the voluntary cooperative industry-state-federal salmonella control programme. In Proc. 77th Ann. Meer. U.S. Anrm. Healrh Ass., 291.Google Scholar
Bixler, W. B. (1975). Positron Paperfor Salmonella Operation Research Study. Bureau of Vet. Med., U.S. Food and Drug Admin., Rockville, MD.Google Scholar
Bixler, W. B. (1978). FDA salmonella control activities for animal feeds and feed ingredients. In Proc. Naf. Sol. Sem.U.S. Deptof Agric.Washington, DC.Google Scholar
Boring, J. R. (1958). Domestic fish meal as a source of various salmonella types. Ver. Med.—Small Anrm. Clin. 53: 311.Google Scholar
Borland, E. D. (1975). Salmonella infection in poultry. Vet. Rec. 97: 406.CrossRefGoogle ScholarPubMed
Boyer, C. I. Jr., Bruner, D. W. and Brown, J. A. (1958). Salmonella organisms isolated from poultry feed. Avian Dis. 2: 396.CrossRefGoogle Scholar
Boyer, C. I. Jr., Narotsky, S.Bruner, D. W. and Brown, J. A. (1962). Salmonellosis in turkeys and chickens associated with contaminated feed. Avian Dis. 6: 43.CrossRefGoogle Scholar
Bryan, F. L., Ayres, J. C. and Kraft, A. A. (1968). Contributory sources of salmonellae on turkey products. Am. J. Epidemiol. 87: 578.CrossRefGoogle ScholarPubMed
Burr, W. E. and Helmboldt, C. F. (1962). Salmonella species contaminants in three animal by-products. Avian Dis. 6: 441.CrossRefGoogle Scholar
Catsaras, M. and Lemlnor, L. (1969). Note sur I'isolement de Salmonella lille en France el dans le monde. Ann. Insr. Pasteur Lille 20: 155.Google Scholar
Clark, G. M., Kaufmann, A. F.Gangarosa, E. J. and Thompson, M. A. (1973). Epidemiology of an international outbreak of S. agono. Lancer 11(7825): 490.CrossRefGoogle Scholar
Clise, J. D. and Swecker, E. E. (1965). Salmonellae from animal by-products. Public Health Rep. 80: 899.CrossRefGoogle Scholar
Crane, F. M., Hansen, M. and Schugel, L. (1967). Salmonella in feedstuffs. Feedsruffs 39(27): 44.Google Scholar
Dawkins, H. C. and Robertson, L. (1967). Salmonellas in animal feeding stuffs. Mon. Bull. Minisr. of Healrh Public Healfh Lab. Serv. 26: 215. Colindale, London.Google ScholarPubMed
Dixon, J. M. S. and Pooley, F. E. (1961). Salmonellae in poultry processing plant. Mon. Bull. Minrsr. Healrh Public Heolrh Lob. Serv. 20: 30. Colindale, London.Google ScholarPubMed
Dougherty, T. J. (1976). A studv of salmonella contamination in broiler flocks. Poullrv Sci. 55: 1811.CrossRefGoogle Scholar
Duncan, M. S. and Adams, A. W. (1971). Incidence of salmonella in samples of pouftry feed and drinking water collected at site of ingestion. Poultrv Sci. 50: 653.CrossRefGoogle ScholarPubMed
Edwards, P. R. (1958). Salmonellosis: Observations on incidence and control. Ann. N. Y. Acad. Sci. 70 598CrossRefGoogle ScholarPubMed
Edwards, P. R. and Galton, M. M. (1967). Salmonellosis. In Advances in Veterinary Science, eds. Brandly, C. A. and Cornelius, C.Academic Press, New York, NY, 1.Google Scholar
Edwards, P. R., Bruner, D. W. and Moran, A. B. (1948). The genus salmonella: Its occurrence and distribution in the United States. Ky. Agric. Exp. Sin. Bull. 525: 30.Google Scholar
Egger, L. (1978). Die Bedeutung von Salmonellen in Futtermitteln Tierischer Herkunft fur die Verseuchung von Schlachtgeflugel und die Ansteckung von Menschen. Inaug. Dissert. Veterinar-Medizinische Fakultat, Zurich, Switzerland.Google Scholar
Ellis, E. M. (968). Salmonella reservoirs in animals and feeds. J. Am. Oil Chem. Soc. 46: 227.CrossRefGoogle Scholar
Erwin, L. E. (1955). Examination of prepared poultry feeds for the presence of salmonella and other enteric organisms. Poulrry Sci. 34: 215.CrossRefGoogle Scholar
Faddoul, G. P. and Fellows, G. W. (1966). A five-year survey of the incidence of salmonella m avian species. Avian Dis. 10: 296.CrossRefGoogle Scholar
Flowers, A. I. (1964). Interspecies transmission of salmonella. In Proc. Salmonella Sem., ARS 91–50, ARS, USDA, Hyattsville, MD, 23.Google Scholar
Galbraith, N. S. (1961). Salmonellosis in man and animals. 2. Studies on human salmonellosis in relation t o infection in animals. Vet. Rec. 73: 1296.Google Scholar
Galton, M. M., Steele, J. H. and Brachman, P. S. (1968). A Perspective of Solmonellosis. U.S. Dept. HEW, Public Health Serv., Nat. Centr. for Dis. Contr., Atlanta. GA.Google Scholar
Galton, M. M., Steele, J. H. and Newell, K. W. (1964). Epidemiology ofsalmonellosis in the United States. In The WorldProblem of Salmunellosis, ed. Van Oye, E.Junk Publishers, The Hague, Netherlands, 421.Google Scholar
Gangarosa, E. J., Barker, W. H., Baine, W. B. Jr., Morris, G. K. and Rice, P. A. (1973). Man v. animal feeds as the source ofhuman salmonellosis. Lancet 1(7808): 878.CrossRefGoogle Scholar
Garrett, E. S. and Hamilton, R. (1971). Sonitorion Guidelinesfor the Control of Sulmonella in the Production of Fish Meal. NOAA Technical Report NMFS Circ-354, Nat. Marine Fish Serv., U.S. Dept. of Commerce, Washington, DC.Google Scholar
Gordon, K. F. (1959). Broiler diseases. Vet. Rec. 71: 994.Google Scholar
Gordon, R. F. (1971). Avian salmonellosis. In The Veterinary Annual, ed. Grunsell, C. S. G.John Wrrghf & Sons Lid., Brrsrol, England, 95.Google Scholar
Gordon, R. F. and Tucker, J. F. (1965). The epizootiology of Salmonella menston infection of fowls and the effect of feeding poultry food artifically infected with salmonella. Br. Poulfry Sci. 6: 251.CrossRefGoogle Scholar
Grumbles, L. C. and Flowers, A. J. (1961). Epidemiology of paratyphoid infections in turkeys—Species encountered and possible sources of infection. J. Am. Vet. Med. Ass. 138: 261.Google ScholarPubMed
Grumbles, L. C. and Flowers, A. J. (1963). Significance of salmonella organisms in feed and feed ingredients. Poultry Sci. 42: 1273.Google Scholar
Hacking, W. C. (1977). Salmonellae in feed and environment. In Proc. oflnlernat. Symp. on Salmonella and Prospects for Conrr.Univ. Guelph, Guelph, Ont.Canada, 58.Google Scholar
Hacking, W. C., Mitchell, W. R. and Carlson, H. C. (1978). Salmonella investigation in an Ontario feed mill. Can. J. Comp. Med. 42: 400.Google Scholar
Hansen, R., Jacobs, N. N.Wilder, O. H. M. and Niven, C. F. Jr. (1962). Studies on the control of salmonella contamination in rendered animal by-products. Am. Mear Insf. Found. Bull. 53: 12.Google Scholar
Hauge, S. and BØvre, K. (1958). Forekomst av salmonellabakterier I importer1 vegetabilsk proteinkraftfor og kraftforblandinger. Nord. Vererinarmed. 10: 255.Google Scholar
Hirsch, W. and Sapiro-Hirsch, R. (1958). The role of certain animal feeding stuffs especially bone meal in the epidemiology of salmonellosis. J. Med. Ass. Israel. 54: 57.Google ScholarPubMed
Hobbs, B. C. (1971). Food poisoning from poultry. In Poultry Diseases and World Economy, eds. Gordon, R. F. and Freeman, B. M.Brir. Poulrry Sci. Ltd., Edinburgh, Scotland.65.Google Scholar
Hobbs, B. C. and Hugh-Jones, M. E. (1969). Epidemiological studies on Salmonella senftenberg. 1. Relations between animal foodstuff, animal and human isolations. J. Hyg., Comb. 67: 81.CrossRefGoogle ScholarPubMed
Hugh-Jones, M. E., Harvey, R. W. S. and McCoy, J. H. (1975). A Salmonella california contamination of aturkey feed concentrate. Br. Ver. J. 131: 673.CrossRefGoogle Scholar
Isa, J. M., Boycott, B. R. and Broughton, E. M. (1963). A survey of salmonella contamination in animal feed and feed constituents. Can. Vet. J. 11: 41.Google Scholar
Jacobs, J., Buinee, P. A. M.Kampelmacher, E. H. and Van Keulen, A. (1963). Studies on the incidence of salmonella in imported fish meal. Zenrralbl. Ver. Med. Reihe B 10: 542.CrossRefGoogle Scholar
Karlsson, K. A., Rutquist, L. and Thal, E. (1963). Salmonella isolation from animals and animal feeds in Sweden during 1958–1962. Nord. Veferinaermed. 15: 833.Google Scholar
Kaufmann, A. F. and Feeley, J. C. (1968). Culture survey of salmonella at broiler-raising plant. Public Health Rep. 83: 417.CrossRefGoogle ScholarPubMed
Kovacs, N. (1959). Salmonellae in desiccated coconut, egg pulp, fertilizer, meat-meal and mesenteric glands: Preliminary report. Med. J. Austral. 1: 557.CrossRefGoogle Scholar
Kumar, M. C., York, M. D.McDowell, J. R. and Pomeroy, B. S. (1971). Dynamics of salmonella infections in fryer roaster turkeys. Avian Dis. 15: 221.CrossRefGoogle ScholarPubMed
Lee, J. A. (1974). Recent trends in human salmonellosis in England and Wales: The epidemiology of prevalent serotypes other than Salmonella ryphimurium. J. Hyn., Comb. 72: 185.CrossRefGoogle Scholar
Loken, K. I., Culbert, K. H.Solee, R. E. and Pomeroy, B. S. (1968). Microbiological quality of protein feed supplements produced by rendering plants. Appl. Microbiol. 16: 1002.CrossRefGoogle ScholarPubMed
MacKenzie, M. A. and Bains, B. S. (1976). Dissemination of salmonella serotypes from raw feed ingredients to chicken carcasses. Poultry Sci. 55: 957.CrossRefGoogle Scholar
Magwood, S. E., Fung, J. and Byrne, J. L. (1965). Studies on salmonella contamination of environment and product of rendering plants. Avian Dis. 9: 302.CrossRefGoogle Scholar
Marx, M. B. (1969). Prevalence of salmonellae in Virginia poultry flocks and in feed. J. Am. Vet. Med. Ass. 154: 1055.Google ScholarPubMed
Moran, A. B. (1960). Salmonella and arizona cultures of animal origin: 1958. Avian Dis. 4: 73.CrossRefGoogle Scholar
Moran, A. B. (1961). Salmonella and arizona cultures from agricultural sources: 1959. Avian Dis. 5: 147.CrossRefGoogle Scholar
Morehouse, L. G. and Wedman, E. E. (1961). Salmonella and other disease-producing organisms in animal by-products—A survey. J. Am. Vel. Med. Ass. 139: 989.Google ScholarPubMed
Morris, G. K., McMurray, B. L.Galton, M. M. and Wells, J. G. (1969). A study of the dissemination of salmonellosis in a commercial broiler chicken operation. Am. J. Vet. Res. 30: 1413.Google Scholar
Morris, G. K., Martin, W. T.Shelton, W. H.Wells, J. G. and Brachman, P. S. (1970). Salmonellae in fish meal plants: Relative amounts of contamination at various stages of processing and a method of control. Appl. Microbiol. 19: 401.CrossRefGoogle Scholar
MÜller, J. (1952). Bacteriologic examination of imported meat and bone meal and the like. Nard. Veterinaermed. 4: 290.Google Scholar
MÜller, I. (1957). Le probleme des salmonelloses an Danemark. Bull. Off. Int. Epizoor. 48: 323.Google Scholar
Nape, W. F. (1968). Recovery of salmonella from material in a feed mill. Proc. 72nd Ann. Meet. U.S. Liveslock Sanir. Ass.144.Google Scholar
Niven, C. F. Jr. (1961). Industry's role in reducing the incidence of salmonella in animal feeds. In Proc. 65th Ann. Meet. U.S. Livestock Sanir. Ass.453.Google Scholar
Orthoefer, J. G., Schrieber, M.Nichols, J. B. and Schneider, N. (1968). Salmonella contamination in a rendering plant. Avian Dis. 12: 303.CrossRefGoogle Scholar
Patterson, J. T. (1969). Salmonellae in meat and poultry, poultry plant cooling water? and effluents, and animal feedingstuffs. J. Appl. Bacreriol. 32: 329.CrossRefGoogle ScholarPubMed
Patterson, J. T. (1972). Salmonellae in animal feedingstuffs. Rec. of Agric. Res., Beyast 20: 27.Google Scholar
Pennington, J. H., Brooksbank, N. H.Poole, P. M. and Seymour, F. (1968). Salnionella virchow in a chicken-packing station and associated rearing. Br. Med. J. 4: 804.CrossRefGoogle Scholar
Pivnic, H. (1978). Canadian perspective on calmonella control in poultry. Proc. 82nd Ann. Meet. U.S. Anm. Health Ars., 438.Google Scholar
Podesta, A., Zanella, A. and Nani, S. (1966). Ulteriori indagini sull'alimentarione del pollame con mangimi artificialmenre contaminati con salmonelle. Atri Soc. Ital. Sci. Vet. 20: 841.Google Scholar
Pomeroy, B. S. (1958). The control of paratyphoid infections and typhimurium testing programmes. In Rep. Not. Plans Conf., USDA, ARS, AHR Div.Beltsville, MD15.Google Scholar
Pomeroy, B. S. and Grady, M. (1960). The isolation of salmonella organisms from feedstuffs. In Proc. 3rd Nut. Symp. on Nitrojurans in Agric.158.Google Scholar
Pomeroy, B. S. and Grady, M. K. (1961). Salmonella organisms isolated from feed ingredients. In Proc. 65th Ann. Meer. U.S. Livesrock Sanir. Ass.449.Google Scholar
Pomeroy, B. S., Slddlqui, Y. and Grady, M. K. (1964). Salmonella in animal feeds and feed ingredients. In Proc. Nut. Conf. on Sulmonellosis, U.S. Dept. HEW, Public Health Serv., Nat. Centr. for Dis. Contr.Atlanta, GA74.Google Scholar
Purchase, H. G. (1978). Where are we in controlling salmonellosis? Proc. 82nd Ann. Meet. U.S. Anim. Health. Ass.351.Google Scholar
Quesada, A., lzzl, R. and Maggio, V. (1960). Sulla presenza di germi del genere salmonella nelle farine di pexe impiegate per la confezione dei mangimi. Atti Soc. Ital. Sci. Vet. 14: 757.Google Scholar
Quist, K. D. (1962). Salmonella in poultry as related to human health. In Rep. Not. Plans Conf.USDA, ARS. AHR Div.Beltsville, MD21.Google Scholar
Riley, P. B. (1969). Salmonella infection: The position of animal food and its manufacturing process. In Bacterial Food Poisoning. ed. Taylor, J.The Ru.vol Society of Health, London, 101.Google Scholar
Rutquist, L. (1961). Vorkommen von salmonella in Futtermitteln vegetablishen Ursprunges. Zentralbl. Vet. Med. 8: 1016.Google Scholar
Seeliger, H. P. R. (1956). Salmonellosen in Deutschland (1953–1955). Arch. Hvg. 140: 499.Google ScholarPubMed
Shotts, E. B. Jr., Martin, W. T. and Galton, M. M. (1961). Further studieron salmonella in human and animal foods and in the environment of processing plants. In Proc. 65th Ann. Meet. U.S. Livestock Sanit. Ass.309.Google Scholar
Smith, H. W. (1971). The epizootiology of salmonella infection in poultry. In Poultry Diseases and World Economy, eds. Gordon, R. F. and Freeman, B. M.Brrrish Poultry Scr. Lid., Edinburgh, Scotland, 37.Google Scholar
Snoeyenbos, G. H., Carlson, V. L.McKle, B. A. and Smyser, C. F. (1967). An epidemiological study of salmonellosis of chickens. Avian Dis. 11: 653.CrossRefGoogle ScholarPubMed
Srivastava, S. K., Singh, V. B. and Slngh, N. P. (1971). Antigenic characters of Salmonella spp. and Escherichio coil isolated from poultry feed and pen water. Indran J. Microbiol. 11: 105.Google Scholar
Stott, J. A., Hodgson, J. E. and Chaney, J. C. (1975). Incidence of salmonellae in animal feed and the effect of pelleting cii content o f enterobacteriaceae. J. Appl. Bacreriol. 39: 41.CrossRefGoogle Scholar
Taylor, J. (1960). Food poisoning. (b) Salmonella and salmonellosis. Roy. Soc. Health. J. 80: 253.CrossRefGoogle Scholar
Taylor, J. and McCoy, J. H. (1969). Salmonella and arizona infections. In: Food-borne Infections and Intoxications. ed. Riemann, H.Academic Press, New York and London, 3.Google Scholar
Taylor, J., King, G. J. G.Payne, D. J. H.Sandiford, B. R. and Stevenson, J. S. (1965). Sources of salmonellae 1951–1963. Mon. Bull. Minist. Health Public Health Lab. Serv. 24: 164.Google ScholarPubMed
Timoney, J. (1968). The sources and extent of salmonella contamination in rendering plants. Vet. Rec. 83: 541.CrossRefGoogle ScholarPubMed
Timoney, J., Kelly, W. R.Hannan, J. and Reeves, D. (1970). A study of salmonella contamination in some Dublin Doultrv. processing plants. Vet. Rec. 87: 158.CrossRefGoogle ScholarPubMed
Turnbull, P. C. B. (1979). Food poisoning with special reference to salmonella-Its epidemiology, pathogenesis and control. Clinics in Gastorenteror. 8: 663.CrossRefGoogle Scholar
Vaughn, J. B., Williams, L. P. Jr., LeBlanc, D. R.Helsdon, H. L. and Taylor, C. (1974). Salmonella in a modern broiler operation: A longitudinal study. Am. J. Ver. Res. 35: 737.Google Scholar
Voeten, A. C., Brus, D. H. J. and Jaartsveld, F. H. J. (1974). De Verspreiding von Salmonella-Kiemen binnen een Gecloten Slachtkuikenintegratie. Tijdschr. Diergeneesk. 99: 1093.Google Scholar
Walker, J. H. C. (1957). Organic fertilirers as a source of salmonella Infection. Lancet 11(6989): 283CrossRefGoogle Scholar
Walker, J. W. (1977). Salmonella in feed. In Proc. Internot. Symp. on Salmonella and Prospecrs for Conrr.Univ. Guelph, Geulph, Ont.Canada, 48.Google Scholar
Walker, J. W., Pfow, C. J. and Allred, J. N. (1972). The status of the cooperative state-federal salmonella programme. In Proc. 76th Ann. Meet. U.S. Anim. Health Ass., 372.Google Scholar
Walker, J. W., Wilson, S. T.Pfow, C. J. and Allred, J. N. (1971). Status of the cooperative state-federal salmonella programme. In Proc. 75th Ann. Meet. U.S. Anim. Health Ass., 378.Google Scholar
Watkins, J. R., Flowers, A. I. and Grumbles, L. C. (1959). Salmonella organisms in animal products used in poultry feeds. Avian Dis. 3: 290.CrossRefGoogle Scholar
Watson, W. A. and Brown, J. M. (1975). Salmonella infection and meat hygiene: Poultry meat. Vet. Rec. 96: 351.CrossRefGoogle ScholarPubMed
Wedman, E. E. (1961). Findings and recommendations of the United States Department of Agriculture task force on salmonella in animal by-products and feeds. In Proc. 65th Ann. Meer U.S. Livesrock Sanrr. Ass., 458.Google Scholar
Williams, J. E. (1978). Paratyphoid infections. In: Diseases of Poultry, eds. Hofstad, M. S.Calnek, B. W.Helmboldt, C. F.Reid, W. M. and Yoder, H. W. Jr., Iowa State University Press, Ames, IA.136.Google Scholar
Williams, L. P. and Hobbs, B. C. (1975). Enterobacteriaceae infections. In Diseases Transmitted from Animals to Man, eds. Hubbert, W. T.McCulloch, W. F. and Schnurrenherger, P. R.Charles C. Thomas Publishers, Springfield, IL, 33.Google Scholar
Williams, L. P. Jr., Vaughn, J. B., Scott, A. and Blanton, V. (1969). A ten-month study of salmonella contamination in animal protein meals. J. Am. Ver. Med. Ass. 155: 167.Google ScholarPubMed
Wilson, J. E. (1948). Avian salmonellosis. Vet. rec. 60: 615.Google ScholarPubMed
Wilson, S. T. (1978). Feed and feed components in salmonella transmission. The cooperative state-federal programme 1966–1971. In Proc. Nar. Sal. Sem.U.S. Dept. Agric.Washington, DC.Google Scholar
Wilson, S. T., Walker, J. W. and Pfow, C. J. (1970). Status of the cooperative state-federal halmonella programme. In Proc. 74th Ann. Meel. L'.S. Anim. Health Ass., 436.Google Scholar
Zecha, B. C., McCapes, R. H., Duncan, W. M., Holte, R. J., Worcester, W. W. and Williams, J. E. (1977). The Dillon Beach project-A five-year epidemiological study of naturally occurring salmonella infection in turkeys and their environment. Avian Dis. 21: 141.CrossRefGoogle ScholarPubMed
Zindel, H. C. and Bennert, M. V. (1968). Salmonella in poultry feeds. Poultry Sci. 47: 1925CrossRefGoogle ScholarPubMed
Anon, (1971). Recommended Procedure for rhe Isolation of Salmonella Organisms from Animal Feeds and Feed Ingredienfs. ARS 91–68.1, Agric. Res. Serv., U.S. Dept. Agric., Washington, DC.Google Scholar
Barkate, J. A. (1968). Screening of feed components for salmonella with polyvalent H agglutination. Appl. Microbiol. 16 1872.CrossRefGoogle ScholarPubMed
Bisciello, N. B. Jr., and Schrade, J. P. (1974). Evaluation of Hektoen enteric agar for the detection of salmonella in foods and feeds. J. Ass. Off. Anal. Chem. 57: 992.Google ScholarPubMed
Boothroyd, D. and Baird-parker, A. C. (1973). The use of enrichment serology for salmonella detection in human foods and animal feeds. J. Appl. Bacterial. 36: 165.CrossRefGoogle ScholarPubMed
Carlson, V. L. and Snoeyenbos, C. H. (1970). Effect of moisture on salmonella populations in animal feeds. Poultry Sci. 49: 717.CrossRefGoogle ScholarPubMed
Carlson, V. L., Snoeyenbos, G. H., McKle, B. C. and Smyser, C. F. (1967). A comparison of incubation time and temperature for the isolation of salmonella. Avian Dis. 11: 217.CrossRefGoogle ScholarPubMed
Ellis, E. M. and Harrington, R. Jr. (1968). A direct fluorescent antibody technique for the examination of animal by-products, foods and feeds for salmonella. A preliminary study. In Proc. 72nd Ann. Meer. U.S. Livesrock Sanrt. Ass., 553.Google Scholar
Ellis, E. M. and Harrincton, R. Jr. (1969). A direct fluorescent antibody test for salmonella. Arch. Environ. Health. 19: 876.CrossRefGoogle ScholarPubMed
Fantasia, L. D. (1969). Accelerated immunofluorescence procedure for the detection of salmonella in foods and animal by-products. Appl. Microbiol. 18: 708.CrossRefGoogle ScholarPubMed
Fantasia, L. D., Sperber, W. H. and Deibel, R. H. (1969). Comparison of two procedures for detection of salmonello in food, feed and pharmaceutical products. Appl. Microbiol. 17: 540.CrossRefGoogle Scholar
Gabis, D. A. and Silliker, J. H. (1974). ICMSF methods studies. VI. The influence of selective enrichment media and incubation temperature on the detection of salmonella in dried foods and feeds. Can. J. Microbiol. 20: 1509.CrossRefGoogle ScholarPubMed
Galton, M. M. (1961). Laboratory procedures for the isolation of salmonellas from human and animal food products. In Proc. 651h Ann. Meer. U.S. Livesrock Sanir. Assoc., 434.Google Scholar
Galton, M. M., Morris, G. K. and Martin, W. T. (1968). Salmonellae in Foods and Feeds. Review of Isolalion Methods and Recommended Procedures. U. S. Dept. HEW, Public Health Serv., Nat. Centr. for Dis. Contr., Atlanta, GA.Google Scholar
Gerichter, C. B. and Sechter, I. (1966). Comparison of methods for the isolation of salmonella from bone meal. Appl. Microbiol. 14: 711.CrossRefGoogle ScholarPubMed
Gibbs, P. A. and Hamilton, W. J. (1971). Evaluation of the fluorescent antibody technique for the detection of salmonella in animal feedingstuffs. Rec. Agric. Res. Belfast 19: 1.Google Scholar
Harrington, R. Jr., Blackburn, B. O. and Murphy, C. D. (1972). The efficiency o f dry compositing for detecting salmonellae in animal by-products. In Proc. 76th Ann. Met. U.S. Anim. Health Ass., 565.Google Scholar
Harrington, R. Jr., Ellis, E. M., Mallinson, E. T., Ranck, M. and Sollee, R. E. (1970). An evaluation of a fluorescent antibody technique for the detection of salmonellae in animal by-products, feeds, and tissues. J. Am. Ver. Med. Ass. 157: 1898.Google ScholarPubMed
Harvey, R. W. S. and Price, T. H. (1967). The isolation of salmonellae from animal feedingstuffs. J. Hyg., Comb. 65: 237.CrossRefGoogle ScholarPubMed
Harvey, R. W. S. and Price, T. H. (1974). Isolation of Salmonellas. Her Majesty's Stationery Office, London, England.Google Scholar
Hilker, J. S. (1975). Enrichment serology and fluorescent antibody procedures to detect salmonellae in foods. J. Milk Food Technol. 38: 227.CrossRefGoogle Scholar
Huhtanen, C. N. and Naghski, J. (1972). Effect oS type of enrichment and duration of incubation on salmonella recovery from meat-and-bone meal. Appl. Microbiol. 23: 578.CrossRefGoogle Scholar
Huhtanen, C. N., Naghski, J. and Dellamonica, N. S. (1972). Efficiency of salmonella isolation from meat-and-bone meal of one 300-g sample versus ten 30-g samples. Appl. Microbiol. 23: 688.CrossRefGoogle ScholarPubMed
Insalata, N. F., Mahnke, C. W. and Dunlap, W. G. (1972). Rapid, direct fluorescent-antibody method for the detection of salmonellas in food and feeds. Appl. Microbiol. 24: 645.CrossRefGoogle ScholarPubMed
Jacobs, J., Buinee, P. A. M., Kampelmacher, E. H. and Van Keulen, A. (1963). Studies on the incidence of salmonella in imported fish meal. Zentralbl. Vet. Med. Reihe B 10: 542.CrossRefGoogle Scholar
Kafel, S. and Kossakowska, A. (1973). Comparative invectigations on various methods of salmonella isolation from fodder meals. Bull. Ver. Inst. Pulawy 17: 38.Google Scholar
Laramore, C. R. and Moritz, C. W. (1969). Fluorescent-antibody technique in detection of salmonellae in animal feed and feed ingredients. Appl. Microbiol. 17: 352.CrossRefGoogle ScholarPubMed
Leistner, L., Deibel, R. H., Johnantages, J. and Niven, C. P. Jr. (1963). Contribution ro rhe Merhodology of Salmonella Derection. Am. Meat Inst. Found. Bull. 56.Google Scholar
Malhotra, F. C., Henderson, W. and Tiffany, L. W. (1968). Quantitative determination of salmonella organims from poultry feedstuffs. Avian Dis. 12: 29.CrossRefGoogle Scholar
Manrique, G., Morales, H. and Jiménez, J. M. (1970). Estudio de la contarninacion con enterobacteriaceas en concentrados para animales. I. Aislamiento de salmonella y otros pathogenos. Rev. Fac. Med. Ver. y Zootecnia, Bogotá 32: 21.Google Scholar
Murphy, C. D. (1969). Detection o f Low Level Salmonella Contamination of Feed and Potential Infectivity for Poultry. M.S. Thesis, Texas A & M University. College Station, TX.Google Scholar
Radan, M., Fuchs, V., Bejerano, S. and Finsterbusch, S. (1970). The comparative efficacy of selenite and tetrathionate media in the isolation of salmonella from some foods and feeda of animal origin. Refuah Vet. 27: 14.Google Scholar
Schrade, J. P., Bisciello, N. B., Munson, T. and Fantasia, L. D. (1974). Evaluation of Hektoen enteric agar and an automated fluorescent antibody procedure for detection of salmonella in foods and feeds. In Abste. Ann. Meet. Sue. Microbiol., 12.Google Scholar
Silliker, J. H. and Gabis, D. A. (1973). ICMSF methods studies. 1. Comparison of analytical schemes for detection of salmonella in dried foods. Can. J. Microbiol. 19: 475.CrossRefGoogle Scholar
Smyser, C. F. and Snoeyenbos, G. H. (1969). Evaluation of several methods of isolating salmonellas from poultry litter and animal feedstuffs. Avian Dis. 13: 134.CrossRefGoogle ScholarPubMed
Smyser, C. F. and Snoeyenbos, G. H. (1971). Enrichment serology compared with a direct-culture procedure for isolating salmonellas from rendered animal by-products. Avian Dis. 15: 581.CrossRefGoogle ScholarPubMed
Smyser, C. F. and Snoeyenbos, G. H. (1973). Fluorescent-antibody methods for detecting salmonellas in animal by-products. Avian Dis. 17: 99.CrossRefGoogle ScholarPubMed
Smyser, C. F., Bacharz, C. F. J. and Van Roekel, H. (1963). Detection of Salmonella ryphimurium from artificially contaminated poultry feed and animal by-products. Avian Dis. 7: 423.CrossRefGoogle Scholar
Smyser, C. F., Snoeyenbos, G. H. and McKle, B. (1970). Isolation of salmonellas from rendered by-products and poultry litter cultured in enrichment media incubated at elevated temperatures. Avian Dis. 14: 248.CrossRefGoogle ScholarPubMed
Sperber, W. H. and Deibel, R. H. (1969). Accelerated procedure for salmonella detection in dried foods and feeds involving only broth cultures and serological reactions. Appl. Microbiol. 17: 533.CrossRefGoogle Scholar
Thomason, B. M. (1971). Rapid detection of salmonella microcolonies by fluorescent antibody. Appl. Microbiol. 22: 1064.CrossRefGoogle ScholarPubMed
Thomason, B. M. and Hebert, G. A. (1974). Evaluation of commercial conjugates for fluorescent antibody detection of salmonellas. Appl. Microbiol. 27: 862.CrossRefGoogle Scholar
Thomason, B. M., Hebert, G. A. and Cherry, W. B. (1975). Evaluation of a semiautomated svstem for direct fluorexent antibody detection of salmonellas. Appl. Microbiol. 30: 557.CrossRefGoogle Scholar
Tomplin, R. B. and Kueper, T. V. (1973). Factors influencmg detection of salmonellas in rendered animal by-products. Appl. Microbiol. 25: 485.CrossRefGoogle Scholar
Truszczynski, M. and Sluzewska, M. (1973). Badania nad wyborem optymalenj methodyki wykrywania drobnoustrojów z rodzaju salmonella w przemyslowych mieszankach paszowych. Med. Weter. 29: 266.Google Scholar
Van Schothorst, M., Mossel, D. A. A., Kampelmacher, E. H. and Drion, E. F. (1966). The estimation of the hygienic quality of feed components using an enterobacteriaceae enrichment test. Zenrralbl. Ver. Med. Reihe B 13: 273.Google ScholarPubMed