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Examining the Possibility of Detecting Brucella Canis from Tissue Samples Using Bruce-Ladder Multiplex PCR Assay

-ladder) for molecular typing of all Brucella species, including the vaccine strains. J Clin Microbiol 2008, 46:3484-3487. 3. OIE Manual of diagnostic test and vaccines for terrestrial animals: Bovine Brucellosis. Offi ce International des epizootics, Paris 2009, Chapter 2.4.3. 4. Alton GG, Jones LM, Angus RD, Verger JM: Tehniques for the brucellosis laboratory. INRA, 1988, 169-174. 5. Badakhsh FF, Carmichael LE, Douglas JA: Improved rapid slide agglutination test for presumptive diagnosis of canine brucellosis. J Clin

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Occurrence of Cryptosporidium Spp. and Giardia Duodenalis in Red Foxes (Vulpes Vulpes) in Bosnia and Herzegovina

:21744018 11. Hamnes, I. S, Gjerde, B. K., Robertson, L. J. (2007b). A longitudinal study on the occurrence of Cryptosporidium and Giardia in dogs during their first year of life. Acta Vet Scand. 49, 22. http://dx.doi.org/10.1186/1751-0147-49-22 PMid:17848186; PMCid:PMC2040143 12. Beck, R., Sprong, H., Bata, I., Lucinger, S., Pozio, E., Cacció, S. M. (2011b). Prevalence and molecular typing of Giardia spp. in captive mammals at the ZOO of Zagreb, Croatia. Vet Parasitol. 175, 40-46. http://dx.doi.org/10.1016/j.vetpar.2010.09.026 PMid

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The Effects of Different Storage Temperatures and Time on The Survival of Cpe (+) Clostridium Perfringens Type A in Çiğ Köfte (A Traditional Turkish Raw Meat Product)

M.E. (2014). The prevalence and molecular typing of Clostridium petfiingetxs in ground beef and sheep meats. J. Verbrauch. Lebensm., 9: 121-128. Jay J.M, Loessner M.J., Golden D.A. (2005). Editors. Modem Food Microbiology. Springer Science, New York, 7th ed., 790 pp. Junej a VK, Marks H., Thippareddi H. (2008). Predictive model for growth of Clostridium perfiingetxs during cooling of cooked uncured beef. Food MicrobioL, 25: 42-55. Kiic B. (2009). Current trends in traditional Turkish meat products and cuisine. LWT

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Neurological Diseases of Small Ruminants in Greece: A Retrospective Study in 114 Flocks

:275-296. 8. Skerritt GC. New diagnostic and operative approaches for gid. Proc Sheep Vet Soc 1987, 12:12-17. 9. Fragkiadaki EG, G Vaccari, LV Ekateriniadou, U Agrimi, ND Giadinis, B Chiappini, E Esposito, M Conte, R Nonno: PRNP genetic variability and molecular typing of natural goat scrapie isolates in a high number of infected fl ocks. Vet Res 2011, 42:104-110. 10. Pugh DG, A.N. Baird: Sheep and Goat Medicine, 2nd ed. Elsevier Saunders, 2011. 11. Kanata E, C Humphreys-Panagiotidis, ND Giadinis, N Papaioannou, M Arsenakis, T

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Evaluation of Self-Incompatibility Locus Diversity of Domestic Plum (Prunus Domestica L.) using DNA-Based S-Genotyping

cultivars. Acta Hort., 734, 47-51. Tao, R., Yamane, H., Sugiura, A., Murayama, H., Sassa, H., Mori, H. (1999). Molecular typing of 5-alleles through identification, characterization and cDNA cloning for 5-RNases in sweet cherry. J. Amer. Soc. Hort. Sci., 124, 224-233. Tao, R., Iezzoni, A. F. (2010). TheS-RNase-based gametophytic self-incom- patibility system in Prunus exhibits distinct genetic and molecular features. Scientia Hort., 124, 423-433. Tsukamoto, T., Tao, R., Iezzoni, A. F. (2008). PCR markers for mutated S

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Survey Of Infectious Agents Associated With Porcine Respiratory Disease Complex (PRDC) In Serbian Swine Herds Using Polymerase Chain Reaction (PCR) Detection

Eurasian wild boar. J Vet Diagn Invest 2003, 15:364–368. 13. Mayor D, Zeeh F, Frey J, Kuhnert P: Diversity of Mycoplasma hyopneumoniae in pig farms revealed by direct molecular typing of clinical material. Vet Res 2007, 38:391–398. 14. Townsend KM, Boyce JD, Chung JY, Frost AJ, Adler B: Genetic Organization of Pasteurella multocida cap Loci and Development of a Multiplex Capsular PCR Typing System. J Clin Microbiol 2001, 39:924–929. 15. Schaller A, Djordjevic SP, Eamens GJ, Forbes WA, Kuhn R, Kuhnert P, Gottschalk M, Nicolet J, Frey J: Identification

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ERIC-based differentiation and antimicrobial susceptibility of Yersinia enterocolitica O:9 isolated from animals serologically positive and negative for brucellosis

primers. PCR Meth Appl 1993, 3, 85-94. 4. Falcao J.P., Falcao D.P., Pitondo-Silva A., Malaspina A.C., Brocchi M.: Molecular typing and virulence markers of Yersinia enterocolitica strains from human, animal and food origins isolated between 1968 and 2000 in Brazil. J Med Microbiol 2006, 55, 1539-1548. 5. Garin-Bastuji B., Hummel N., Gerbier G., Cau C., Pouillot R., Da Costa M., Fontaine J.J.: Nonspecific serological reactions in the diagnosis of bovine brucellosis: experimental oral infection of cattle with repeated doses of Yersinia

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Characterisation of Staphylococcus aureus and Staphylococcus aureus – like strains isolated from table eggs

.H., Byrne S.K., Zhang J.L., Chow A.W.: Molecular typing of Staphylococcus aureus on the basis of coagulase gene polymorphism. J Clin Microbiol 1992, 30, 1642-1645. 11. Graham J.C., Murphy O.M., Stewart D., Kearns A.M., Galloway A., Freeman R.: Comparison of PCR detection of mecA with methicillin and oxacillin disc susceptibility testing in coagulase-negative staphylococci. J Antimicrob Chemother 2000, 45, 111-113. 12. Hussain Z., Stoakes L., Lannigan R., Longo S., Nancekivell B.: Evaluation of screening and commercial methods for detection

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Genetic diversity of Campylobacter jejuni isolated from the poultry food chain

-borne Campylobacter jejuni isolates in California. J Clin Microbiol 2013, 51, 195–201. 12. Kaakoush N.O., Castaño-Rodriguez N., Mitchell H.M., Man S.M.: Global epidemiology of Campylobacter infection. Clin Microbiol Rev 2015, 28, 687–720. 13. Lévesque S., Fournier E., Carrier N., Frost E., Arbeit R.D., Michaud S.: Campylobacteriosis in urban versus rural areas: A case-case study integrated with molecular typing to validate risk factors and to attribute sources of infection. PLoS ONE 2013, 8, e83731. 14. Müllner P., Spencer S.E.F., Wilson D.J., Jones G., Noble

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Overview of phenotypic methods used for differentiation of Staphylococcus aureus

geography locations. Bosn J Basic Med Sci. 2015;15(3):48-56. 10. Bruisten SM, Schouls L. Molecular typing and clustering analysis as a tool for epidemiology of infectious diseases. In: Kramer A, Kretzschmar M, Krickeberg K, editors. Modern infectious disease epidemiology. New York: Springer;2009:117-41. 11. Mehndiratta PL, Bhalla P. Typing of methicillin resistant Staphylococcus aureus: a technical review. Indian J Med Microbiol. 2012;30(1):16-23. 12. Weller TMA. Methicillin-resistant Staphylococcus aureus typing methods: which should be the

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