Главная | Обратная связь | Поможем написать вашу работу!
МегаЛекции

Список литературы




BARROW P. A. (1992). ELISAs and the serological analysis of salmonella infections in poultry: a review. Epidemiol. Infect., 109, 361-369.

BARROW P. A. (1994). Serological diagnosis of Salmonella serotype Enteritidis infections in poultry by ELISA and other tests. Int. J. Food Microbiol., 21, 55-68.

BARROW P. A. & NETO O. F. (2011). Pullorum disease and fowl typhoid - new thoughts on old diseases: a review. Avian Pathol., 40 (1), 1-13.

BARROW P. A. & METHNER U., EDS (2013). Salmonella in domestic animals. CAB International, Wallingford, Oxon, UK.

CANNON R. M. & NICHOLLS T. J. (2002). Relationship between sample weight, homogeneity, and sensitivity of fecal culture for Salmonella enterica. Vet. Diagn. Invest., 14, 60-62.

CARRIQUE-MAS J. J., BARNES S., MCLAREN I. & DAVIES R. (2009). Comparison of three plating media for the isolation of Salmonella from poultry environmental samples in Great Britain using ISO 6579: 2002 (Annex D). J. Appl. Microbiol., 107, 1976-1983.

CARRIQUE-MAS J. J. & DAVIES R. H. (2008). Sampling and bacteriological detection of Salmonella in poultry and poultry premises: A review. Rev. sci. tech. Off. int. Epiz., 27 (3), 665-677.

CENTERS FOR DISEASE CONTROL AND PREVENTION (CDC) (2013). An Atlas of Salmonella in the United States, 19682011: Laboratory-based Enteric Disease Surveillance. Atlanta, Georgia: US Department of Health and Human Services, CDC, Atlanta, Georgia, USA.

DESIN T. S., KOSTER W. & POTTER A. A. (2013). Salmonella vaccines in poultry: past, present and future. Exp. Rev. Vaccines, 12, 87-96.

EUROPEAN FOOD SAFETY AUTHORITY (EFSA) (2013). EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards). Scientific Opinion on the evaluation of molecular typing methods for major food-borne microbiological hazards and their use for attribution modelling,

outbreak investigation and scanning surveillance: Part 1 (evaluation of methods and applications). EFSA Journal, 11 (12), 3502 [84 pp. ]. doi: 10. 2903/j. efsa. 2013. 350.

ELLIS E. M., WILLIAMS J. E., MALLINSON E. T., SNOEYENBOS G. H. & MARTIN W. J. (1976). Culture Methods for the Detection of Animal Salmonellosis and Arizonosis. Iowa State University Press, Ames, USA.

ERIKSSON E. & ASPAN A. (2007). Comparison of culture, ELISA and PCR techniques for salmonella detection in faecal samples for cattle, pig and poultry. BMC Vet. Res., 3, 21-40.

EWING W. H. (1986). Edwards and Ewing’s Identification of Enterobacteriaceae, Fourth Edition. Elsevier, New York, USA, London, UK, and Amsterdam, The Netherlands.

FIGUEIREDO R., HENRIQUES A., SERENO R., MENDOQA N. & DA SILVA G. J. (2015). Antimicrobial resistance and extended-spectrum p-lactamases of Salmonella enterica serotypes isolated from livestock and processed food in Portugal: an update. Foodborne Pathog. Dis., 12 (2), 110-117.

FRAVALO P., HASCOET Y., LEFELLIC M., QUEGUINER S., PETTON J. & SALVAT G. (2003). Convenient method for rapid and quantitative assessment of Salmonella enterica contamination: The mini-MSRV MPN technique. J. Rapid Method Automat. Microbiol., 11 (2), 81-88.

FRICKER C. R. (1987). The isolation of salmonellas and campylobacters. J. Appl. Bacteriol., 63, 99-116.

GERHARDT P. (1981). Manual of Methods for General Microbiology. American Society for Microbiology, Washington DC, USA, 332-334.

GREENE S. K., STUART A. M., MEDALLA F. M., WHICHARD J. M., HOEKSTRA R. M. & CHILLER T. M. (2008). Distribution of multidrug-resistant human isolates of MDR-ACSSuT Salmonella Typhimurium and MDR-AmpC Salmonella Newport in the United States, 2003-2005. Foodborne Pathog. Dis., 5 (5), 669-680.

GRIMONT P. A. D. & WEILL F. -X. (2007). Antigenic Formulae of the Salmonella Serovars, Ninth Edition, World Health Organization Collaborating Centre for Reference and Research on Salmonella. Institut Pasteur, Paris, France.

HARVEY R. W. S. & PRICE T. H. (1974). Isolation of Salmonellas. Public Health Laboratory Service. Monograph Series 8. Her Majesty’s Stationery Office, London, UK.

HASSAN J. O. & CURTISS R. III (1997). Efficacy of a live avirulent Salmonella typhimurium vaccine in preventing colonization and invasion of laying hens by Salmonella typhimurium and Salmonella enteritidis. Avian Dis., 41, 783-791.

INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (2002). ISO 6579: 2002. Microbiology of food and animal feeding stuffs - Horizontal method for the detection of Salmonella spp., International Organization for Standardization, Geneva, Switzerland.

INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (2007). ISO 6579: 2002/Amd 1: 2007 (Annex D). Detection of Salmonella spp. in animal faeces and in samples of the primary production stage - Horizontal method for the detection of Salmonella spp., International Organization for Standardization, Geneva, Switzerland.

INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (2012). ISO/TS 6579-2: 2012. Microbiology of food and animal feed - Horizontal method for the detection, enumeration and serotyping of Salmonella - Part 2: Enumeration by a miniaturized most probable number technique, International Organization for Standardization, Geneva, Switzerland.

INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (2014). ISO/TR 6579-3: 2014. Microbiology of the food chain -Horizontal method for the detection, enumeration and serotyping of Salmonella - Part 3: Guidelines for serotyping of Salmonella spp., International Organization for Standardization, Geneva, Switzerland.

ISSENHUTH-JEANJEAN S., ROGGENTIN P., MIKOLEIT M., GUIBOURDENCHE M., DE PINNA E., NAIR S., FIELDS P. L. & WEILL, F. X. (2014). Supplement 2008-2010 (no. 48) to the White-Kauffmann-Le Minor scheme. Res. Microbiol., 165 (7), 526-530.

JENSEN A. N., NIELSEN L. R. & BAGGESEN D. L. (2013). Use of real-time PCR on fecal samples for detection of sub- clinical Salmonella infection in cattle did not improve the detection sensitivity compared to conventional bacteriology. Vet. Microbiol., 163, (3-4), 373-377

KANKI M., SAKATA J., TAGUCHI M., KUMEDA Y., ISHIBASHI M., KAWAI T., KAWATSU K., YAMASAKI W., INOUE K. & MIYAHARA M. (2009). Effect of sample preparation and bacterial concentration on Salmonella enterica detection in poultry meat using culture methods and PCR assaying of preenrichment broths. Food Microbiol., 26 (1), 1-3.

KRASCSENICSOVA K., PIKNOVA L., KACLIKOVA E. & KUCHTA T. (2008). Detection of Salmonella enterica in food using two-step enrichment and real-time polymerase chain reaction. Lett. Microbiol., 46, 483-487.

LEE K. M., RUNYON M., HERRMAN T. J., PHILLIPS R. & HSIEH J. (2015). Review of Salmonella detection and identification methods: Aspects of rapid emergency response and food safety. Food Control, 47, 264-276.

MALORNY B. & HOORFAR J. (2005). Toward standardization of diagnostic pcr testing of fecal samples: lessons from the detection of salmonellae in pigs. J. Clin. Microbiol., 43 (7), 3033-3037.

MALORNY B., PACCASSONI E., FACH P., BUNGE C., MARTIN A. & HELMUTH R. (2004). Diagnostic real-time PCR for detection of Salmonella in food. Appl. Environ. Microbiol., 70, 7046-7052.

MASTROENI P., CHABALGOITY J. A., DUNSTAN S. J., MASKELL D. J. & DOUGAN G. (2001). Salmonella: Immune responses and vaccines. Vet. J., 161, 132-164.

MAURISCHAT S., BAUMANN B., MARTIN A. & MALORNY B. (2015a). Rapid detection and specific differentiation of Salmonella enterica subsp. enterica Enteritidis, Typhimurium and its monophasic variant 4, [5], 12: i: - by real-time multiplex PCR. Int. J. Food Microbiol., 193, 8-14.

MAURISCHAT S., SZABO L., BAUMANN B. & MALORNY B. (2015b). Rapid real-time PCR methods to distinguish Salmonella Enteritidis wildtype field isolates from vaccine strains Salmovac SE/Gallivac SE and AviPro Salmonella Vac E. J. Microbiol. Methods, 112, 92-98.

NIELSEN B., EKEROTH L., BAGER F. & LIND P. (1998). Use of muscle fluid as a source of antibodies for serologic detection of Salmonella infection in slaughter pig herds. J. Vet. Diagn Invest., 10, 158-163.

OLIVEIRA S. D., RODENBUSCH M. C. CE, ROCHA S. L. S. & CANAL C. W. (2003). Evaluation of selective and non-selective enrichment PCR procedures for Salmonella detection. Lett. Appl. Microbiol., 36, 217-221.

PARK S. H., AYDIN M., KHATIWARA A., DOLAN M. C., GILMORE D. F., BOULDIN J. L., AHN S. & RICKE S. C. (2014). Current and emerging technologies for rapid detection and characterization of Salmonella in poultry and poultry products. Food Microbiol., 38, 250-262.

PARK S. H., JARQUIN R., HANNING L., ALMEIDA G. & RICKE S. C. (2011). Detection of Salmonella spp. survival and virulence in poultry feed by targeting the hilA gene. J. Appl. Microbiol., 111, 426-432.

PIKNOVA L., KACLIKOVA E., PANGALLO D., POLEK B. & KUCHTA T. (2005). Quantification of Salmonella by 5’-nuclease real-time polymerase chain reaction targeted to fimC gene. Curr. Microbiol., 50, 38-42.

PORWOLLIK S., BOYD E. F., CHOY C., CHENG P., FLOREA L., PROCTOR E. & MCCLELLAND M. (2004). Characterization of Salmonella enterica subspecies I genovars by

use of microarrays. J. Bacteriol., 186, 5883-5898.

RASOOLY A. & HEROLD K. E. (2008). Food microbial pathogen detection and analysis using DNA microarray technologies. Foodborne Pathog. Dis., 5 (4), 531-550.

REISSBRODT R. (1995). Conventional and alternative methods for isolation and identification of Salmonella - an overview. Biotest Bull., 5, 143-156.

THOMSON N. R., CLAYTON D. J., WINDHORST D., VERNIKOS G., DAVIDSON S., CHURCHER C., QUAIL M. A., STEVENS M., JONES M. A., WATSON M., BARRON A., LAYTON A., PICKARD D., KINGSLEY R. A., BIGNELL A., CLARK L., HARRIS B., ORMOND D., ABDELLAH Z., BROOKS K., CHEREVACH I., CHILLINGWORTH T., WOODWARD J., NORBERCZAK H., LORD A., ARROWSMITH C., JAGELS K., MOULE S., MUNGALL K., SANDERS M., WHITEHEAD S., CHABALGOITY J. A., MASKELL D., HUMPHREY T., ROBERTS M., BARROW P. A., DOUGAN G. & PARKHILL J. (2008). Comparative genome analysis of Salmonella enteritidis Pt4 and Salmonella Gallinarum 287/91 provides insights into evolutionary and host adaptation pathways. Genome Res., 18 (10), 1624-1637.

VAN IMMERSEEL F., STUDHOLME D. J., EECKHAUT V., HEYNDRICKX M., DEWULF J., DEWAELE I., VAN HOOREBEKE S., VAN MEIRHAEGHE H., DUCATELLE R., PASZKEIWICZ K. & TITBALL R. W. (2013). Salmonella Gallinarum field isolates from laying hens are related to the vaccine strain SG9R. Vaccine, 31 (43), 4940-4945.

VOOGT N., RAES M., WANNET W. J. B., HENKEN N. M. & VAN DE GIESSEN A. W. (2001). Comparison of selective enrichment media for the detetection of Salmonella in poultry faeces. Lett. Appl. Microbiol., 32, 89-92.

WANG W., LIU L., SONG S., TANG L., KUANG H. & XU C. (2015). A highly sensitive ELISA and immune- chromatographic strip for the detection of Salmonella typhimurium in milk samples. Sensors, 15, 5281-5292.

WESTPHAL O. & LUDERITZ O. (1954). Chemische Erforschung von Lipopolysacchariden gramnegativer Bakterien. Angew. Chem., 66, 407-417.

WORLD HEALTH ORGANIZATION (WHO) (1994). Guidelines on Detection and Monitoring of Salmonella Infected Poultry Flocks with Particular Reference to Salmonella enteritidis. Wray C. & Davies R. H., eds. WHO, Geneva, Switzerland, ZOON/94. 173.

 

NB: Имеются справочные референтные лаборатории МЭБ по сальмонеллезу

(См. Таблицу в части 4 данного Руководства по диагностическим тестам и вакцинам для наземных животных или посетите веб-сайт МЭБ для получения новейшей справочной информации по адресу: http: //www. oie. int/en/our-scientific-expertise/reference-la bora tories/list-of-la bora tories/).

Обращайтесь в референтные лаборатории МЭБ за любой дополнительной информацией по диагностическим тестам, реактивам и вакцинам для сальмонеллеза.

Поделиться:





Воспользуйтесь поиском по сайту:



©2015 - 2024 megalektsii.ru Все авторские права принадлежат авторам лекционных материалов. Обратная связь с нами...