Stals, A.; Laboratory of Food Microbiology and Food Preservation, Faculty of Bioscience Engineering, Department of Food Safety and Food Quality, Ghent University, Coupure Links 653, 9000 Ghent, Belgium, Technology and Food Science Unit, Institute for Agricultural and Fisheries Research (ILVO), Flemish Government, Brusselsesteenweg 370, 9090 Melle, Belgium
Mathijs, E.; Department of Infectious and Parasitic Diseases, Virology and Viral Diseases, Faculty of Veterinary Medicine, University of Liège, Boulevard du Colonster 20, 4000 Liège, Belgium, Food Science Department, Food Microbiology, Faculty of Veterinary Medicine, University of Liège, Boulevard du Colonster 20, 4000 Liège, Belgium
Baert, L.; Laboratory of Food Microbiology and Food Preservation, Faculty of Bioscience Engineering, Department of Food Safety and Food Quality, Ghent University, Coupure Links 653, 9000 Ghent, Belgium
Botteldoorn, N.; Division of Bacteriology, Department of Microbiology, Scientific Institute of Public Health, Juliette Wytsmanstraat 14, 1050 Brussels, Belgium
Denayer, S.; Division of Bacteriology, Department of Microbiology, Scientific Institute of Public Health, Juliette Wytsmanstraat 14, 1050 Brussels, Belgium
Mauroy, Axel ; Université de Liège - ULiège > Département des maladies infectieuses et parasitaires > Virologie vétérinaire et maladies virales animales
Scipioni, A.; Department of Infectious and Parasitic Diseases, Virology and Viral Diseases, Faculty of Veterinary Medicine, University of Liège, Boulevard du Colonster 20, 4000 Liège, Belgium
Daube, Georges ; Université de Liège - ULiège > Département de sciences des denrées alimentaires > Microbiologie des denrées alimentaires
Dierick, K.; Division of Bacteriology, Department of Microbiology, Scientific Institute of Public Health, Juliette Wytsmanstraat 14, 1050 Brussels, Belgium
Herman, L.; Technology and Food Science Unit, Institute for Agricultural and Fisheries Research (ILVO), Flemish Government, Brusselsesteenweg 370, 9090 Melle, Belgium
van Coillie, E.; Technology and Food Science Unit, Institute for Agricultural and Fisheries Research (ILVO), Flemish Government, Brusselsesteenweg 370, 9090 Melle, Belgium
Thiry, Etienne ; Université de Liège - ULiège > Département des maladies infectieuses et parasitaires > Virologie vétérinaire et maladies virales animales
Uyttendaele, M.; Laboratory of Food Microbiology and Food Preservation, Faculty of Bioscience Engineering, Department of Food Safety and Food Quality, Ghent University, Coupure Links 653, 9000 Ghent, Belgium
Abolmaaty, A., Gu, W., Witkowsky, R., & Levin, R. E. (2007). The use of activated charcoal for the removal of PCR inhibitors from oyster samples. Journal of Microbiological Methods, 68(2), 349-352.
Afonina, I. A., Reed, M. W., Lusby, E., Shishkina, I. G., & Belousov, Y. S. (2002). Minor groove binder-conjugated DNA probes for quantitative DNA detection by hybridization-triggered fluorescence. Biotechniques, 32(4), 940-949.
Alfano-Sobsey, E., Sweat, D., Hall, A., Breedlove, F., Rodriguez, R., Greene, S., et al. (2012). Norovirus outbreak associated with undercooked oysters and secondary household transmission. Epidemiology and Infection, 140(2), 276-282.
Anderson, A. D., Heryford, A. G., Sarisky, J. P., Higgins, C., Monroe, S. S., Beard, R. S., et al. (2003). A waterborne outbreak of Norwalk like virus among snowmobilers (Wyoming, 2001). The Journal of Infectious Diseases, 187(2), 303-306.
Ando, T., Monroe, S. S., Gentsch, J. R., Jin, Q., Lewis, D. C., & Glass, R. I. (1995). Detection and differentiation of antigenically distinct small round-structured viruses (Norwalk-like viruses) by reverse transcription PCR and Southern hybridization. Journal of Clinical Microbiology, 33(1), 64-71.
Ando, T., Noel, J. S., & Fankhauser, R. L. (2000). Genetic classification of "Norwalk-like viruses". Journal of Infectious Diseases, 181(S2), S336-S348.
Anonymous. (2002). Microbiology of food and animal feeding stuffs. Polymerase chain reaction (PCR) for the detection of food-borne pathogens. General method specific requirements (EN ISO 22174). International Organization for Standardisation, Geneva, Switzerland.
Anonymous (2012). Scientific opinion on norovirus (NoV) in oysters: Methods, limits and control options. EFSA Journal, 10(1), 1-39.
Appleton, H., Buckley, M., Thom, B. T., Cotton, J. L., & Henderson, S. (1977). Virus-like particles in winter vomiting disease. The Lancet, 309(8008), 409-411.
Asanaka, M., Atmar, R. L., Ruvolo, V., Crawford, S. E., Neill, F. H., & Estes, M. K. (2005). Replication and packaging of Norwalk virus RNA in cultured mammalian cells. Proceedings of the National Academy of Sciences of the United States of America, 102(29), 10327-10332.
Baert, L., Mattison, K., Loisy-Hamon, F., Harlow, J., Martyres, A., Lebeau, B., et al. (2011). Review: Norovirus prevalence in Belgian, Canadian and French fresh produce: A threat to human health? International Journal of Food Microbiology, 151(3), 261-269.
Baert, L., Uyttendaele, M., & Debevere, J. (2007). Evaluation of two viral extraction methods for the detection of human noroviruses in shellfish with conventional and real-time reverse transcriptase PCR. Letters in Applied Microbiology, 44(1), 106-111.
Baert, L., Uyttendaele, M., Stals, A., van Coillie, E., Dierick, K., Debevere, J., et al. (2009). Reported foodborne outbreaks due to noroviruses in Belgium: The link between food and patient investigations in an international context. Epidemiology and Infection, 137(3), 316-325.
Baert, L., Wobus, C. E., van Coillie, E., Thackray, L. B., Debevere, J., & Uyttendaele, M. (2008). Detection of murine norovirus 1 by using plaque assay, transfection assay, and real-time reverse transcription-PCR before and after heat exposure. Applied and Environmental Microbiology, 74(2), 543-546.
Bank-Wolf, B. R., König, M., & Thiel, H. J. (2010). Zoonotic aspects of infections with noroviruses and sapoviruses. Veterinary Microbiology, 140(3-4), 204-212.
Beld, M., Minnaar, R., Weel, J., Sol, C., Damen, M., van Der Avoort, H., et al. (2004). Highly sensitive assay for detection of enterovirus in clinical specimens by reverse transcription-PCR with an armored RNA internal control. Journal of Clinical Microbiology, 42(7), 3059-3064.
Berger, C. N., Sodha, S. V., Shaw, R. K., Griffin, P. M., Pink, D., Hand, P., et al. (2010). Fresh fruit and vegetables as vehicles for the transmission of human pathogens. Environmental Microbiology, 12(9), 2385-2397.
Beuret, C. (2004). Simultaneous detection of enteric viruses by multiplex real-time RT-PCR. Journal of Virological Methods, 115(1), 1-8.
Boom, R., Sol, C. J. A., Salimans, M. M. M., Jansen, C. L., Wertheimvandillen, P. M. E., & Vandernoordaa, J. (1990). Rapid and simple method for purification of nucleic-acids. Journal of Clinical Microbiology, 28(3), 495-503.
Borst, A., Box, A. T. A., & Fluit, A. C. (2004). False-positive results and contamination in nucleic acid amplification assays: Suggestions for a prevent and destroy strategy. European Journal of Clinical Microbiology and Infectious Diseases, 23(4), 289-299.
Boxman, I. L. A., Tilburg, J. J. H. C., Loeke, N. A. J. M., Vennema, H., de Boer, E., & Koopmans, M. (2007). An efficient and rapid method for recovery of norovirus from food associated with outbreaks of gastroenteritis. Journal of Food Protection, 70(2), 504-508.
Boxman, I. L. A., Verhoef, L., Dijkman, R., Hägele, G., Te Loeke, N. A. J. M., & Koopmans, M. (2011). A year round prevalence study for the environmental presence of norovirus in catering companies without a recently reported outbreak of gastroenteritis. Applied and Environmental Microbiology, 77(9), 2968-2974.
Bull, R. A., Eden, J. S., Luciani, F., McElroy, K., Rawlinson, W. D., & White, P. A. (2012). Contribution of intra-and interhost dynamics to norovirus evolution. Journal of Virology, 86(6), 3219-3229.
Bull, R. A., Hansman, G. S., Clancy, L. E., Tanaka, H., Rawlinson, W. D., & White, P. A. (2005). Norovirus recombination in ORF1/ORF2 overlap. Emerging Infectious Diseases, 11(7), 1079-1085.
Bull, R. A., Tanaka, M. M., & White, P. A. (2007). Norovirus recombination. Journal of General Virology, 88(12), 3347-3359.
Bull, R. A., Tu, E. T. V., McIver, C. J., Rawlinson, W. D., & White, P. A. (2006). Emergence of a new norovirus genotype II. 4 variant associated with global outbreaks of gastroenteritis. Journal of Clinical Microbiology, 44(2), 327-333.
Butot, S., Le Guyader, F. S., Krol, J., Putallaz, T., Amoroso, R., & Sanchez, G. (2010). Evaluation of various real-time RT-PCR assays for the detection and quantitation of human norovirus. Journal of Virological Methods, 167(1), 90-94.
Chamberlain, J. S., Gibbs, R. A., Rainer, J. E., Nguyen, P. N., & Thomas, C. (1988). Deletion screening of the Duchenne muscular dystrophy locus via multiplex DNA amplification. Nucleic Acids Research, 16(23), 11141-11156.
Cimino, G. D., Metchette, K., Isaacs, S. T., & Zhu, Y. S. (1990). More false-positive problems. Nature, 345(6278), 773-774.
Cimino, G. D., Metchette, K. C., Tessman, J. W., Hearst, J. E., & Isaacs, S. T. (1991). Post-PCR sterilization: A method to control carryover contamination for the polymerase chain reaction. Nucleic Acids Research, 19(1), 99-107.
Cocolin, L., Rajkovic, A., Rantisou, K., & Uyttendaele, M. (2011). The challenge of merging food safety diagnostic needs with quantitative PCR platforms. Trends in Food Science & Technology, 22(1), S30-S38.
Compton, J. (1991). Nucleic acid sequence-based amplification. Nature, 350(6313), 91-92.
Costafreda, M. I., Bosch, A., & Pinto, R. M. (2006). Development, evaluation, and standardization of a real-time TaqMan reverse transcription-PCR assay for quantification of hepatitis A virus in clinical and shellfish samples. Applied and Environmental Microbiology, 72(6), 3846-3855.
Coyne, K. P., Reed, F. C., Porter, C. J., Dawson, S., Gaskell, R. M., & Radford, A. D. (2006). Recombination of feline calicivirus within an endemically infected cat colony. Journal of General Virology, 87(4), 921-926.
D'Agostino, M., Cook, N., Rodriguez-Lazaro, D., & Rutjes, S. (2011). Nucleic acid amplification-based methods for detection of enteric viruses: Definition of controls and interpretation of results. Food and Environmental Virology, 3(2), 55-60.
Dancho, B. A., Chen, H., & Kingsley, D. H. (2012). Discrimination between infectious and non-infectious human norovirus using porcine gastric mucin. International Journal of Food Microbiology, 155(3), 222-226.
Dastjerdi, A. M., Green, J., Gallimore, C. I., Brown, D. W. G., & Bridger, J. C. (1999). The bovine Newbury agent-2 is genetically more closely related to human SRSVs than to animal caliciviruses. Virology, 254(1), 1-5.
David, S. T., McIntyre, L., MacDougall, L., Kelly, D., Liem, S., Schallie, K., et al. (2007). An outbreak of norovirus caused by consumption of oysters from geographically dispersed harvest sites, British Columbia, Canada, 2004. Foodborne Pathogens and Disease, 4(3), 349-358.
de Bruin, E., Duizer, E., Vennema, H., & Koopmans, M. P. G. (2006). Diagnosis of norovirus outbreaks by commercial ELISA or RT-PCR. Journal of Virological Methods, 137(2), 259-264.
Deer, D. M., Lampel, K. A., & Gonzalez-Escalona, N. (2010). A versatile internal control for use as DNA in real-time PCR and as RNA in real-time reverse transcription PCR assays. Letters in Applied Microbiology, 50(4), 366-372.
DeLeon, R., Matsui, S. M., Baric, R. S., Herrmann, J. E., Blacklow, N. R., Greenberg, H. B., et al. (1992). Detection of Norwalk virus in stool specimens by reverse transcriptase-polymerase chain-reaction and nonradioactive oligoprobes. Journal of Clinical Microbiology, 30(12), 3151-3157.
Demeke, T., & Jenkins, G. R. (2010). Influence of DNA extraction methods, PCR inhibitors and quantification methods on real-time PCR assay of biotechnology-derived traits. Analytical and Bioanalytical Chemistry, 396(6), 1977-1990.
Diez-Valcarce, M., Kovac, K., Cook, N., Rodriguez-Lazaro, D., & Hernandez, M. (2011). Construction and analytical application of internal amplification controls (IAC) for detection of food supply chain-relevant viruses by real-time pcr-based assays. Food Analytical Methods, 4, 437-445.
Dingle, K. E. (2004). Mutation in a Lordsdale norovirus epidemic strain as a potential indicator of transmission routes. Journal of Clinical Microbiology, 42(9), 3950-3957.
Dore, B., Keaveney, S., Flannery, J., & Rajko-Nenow, P. (2010). Management of health risks associated with oysters harvested from a norovirus contaminated area, Ireland, February-March 2010. Euro Surveillance, 15(19).
Dreier, J., Stormer, M., & Kleesiek, K. (2005). Use of bacteriophage MS2 as an internal control in viral reverse transcription-PCR assays. Journal of Clinical Microbiology, 43(9), 4551-4557.
Duizer, E., Bijkerk, P., Rockx, B., De Groot, A., Twisk, F., & Koopmans, M. (2004a). Inactivation of caliciviruses. Applied and Environmental Microbiology, 70(8), 4538-4543.
Duizer, E., Pielaat, A., Vennema, H., Kroneman, A., & Koopmans, M. (2007). Probabilities in norovirus outbreak diagnosis. Journal of Clinical Virology, 40(1), 38-42.
Duizer, E., Schwab, K. J., Neill, F. H., Atmar, R. L., Koopmans, M. P. G., & Estes, M. K. (2004b). Laboratory efforts to cultivate noroviruses. Journal of General Virology, 85(1), 79-87.
Edwards, M. C., & Gibbs, R. A. (1994). Multiplex PCR-advantages, development, and applications. Pcr-Methods and Applications, 3(4), S65-S75.
Escobar-Herrera, J., Cancio, C., Guzman, G. I., Villegas-Sepulveda, N., Estrada-Garcia, T., Garcia-Lozano, H., et al. (2006). Construction of an internal RT-PCR standard control for the detection of human caliciviruses in stool. Journal of Virological Methods, 137(2), 334-338.
Espy, M. J., Uhl, J. R., Sloan, L. M., Buckwalter, S. P., Jones, M. F., Vetter, E. A., et al. (2006). Real-time PCR in clinical microbiology: Applications for a routine laboratory testing. Clinical Microbiology Reviews, 19(1), 165-256.
Fahy, E., Kwoh, D. Y., & Gingeras, T. R. (1991). Self-sustained sequence replication (3SR): An isothermal transcription-based amplification system alternative to PCR. Genome Research, 1(1), 25-33.
Farkas, T., Nakajima, S., Sugieda, M., Deng, X., Zhong, W., & Jiang, X. (2005). Seroprevalence of noroviruses in swine. Journal of Clinical Microbiology, 43(2), 657-661.
Fukuda, S., Sasaki, Y., Kuwayama, M., & Miyazaki, K. (2007). Simultaneous detection and genogroup-screening test for norovirus genogroups I and II from fecal specimens in single tube by reverse transcription-loop-mediated isothermal amplification assay. Microbiology and Immunology, 51(5), 547-550.
Geginat, G., Kaiser, D., & Schrempf, S. (2011). Evaluation of third-generation ELISA and a rapid immunochromatographic assay for the detection of norovirus infection in fecal samples from inpatients of a German tertiary care hospital. European Journal of Clinical Microbiology and Infectious Diseases, 31(5), 733-737.
Gibson, U. E. M., Heid, C. A., & Williams, P. M. (1996). A novel method for real time quantitative RT PCR. Genome Research, 6(10), 995-1001.
Goldmeyer, J., Kong, H., & Tang, W. (2007). Development of a novel one-tube isothermal reverse transcription thermophilic helicase-dependent amplification platform for rapid RNA detection. The Journal of Molecular Diagnostics, 9(5), 639-644.
Gonin, P., & Couillard, M. (2000). Genetic diversity and molecular epidemiology of Norwalk like viruses. The Journal of Infectious Diseases, 182(3), 691-697.
Greening, G. E., & Hewitt, J. (2008). Norovirus detection in shellfish using a rapid, sensitive virus recovery and Real-Time RT-PCR detection protocol. Food Analytical Methods, 1(2), 109-118.
Gundry, C. N., Vandersteen, J. G., Reed, G. H., Pryor, R. J., Chen, J., & Wittwer, C. T. (2003). Amplicon melting analysis with labeled primers: A closed-tube method for differentiating homozygotes and heterozygotes. Clinical Chemistry, 49(3), 396-406.
Gunson, R. N., Bennett, S., Maclean, A., & Carman, W. F. (2008). Using multiplex real time PCR in order to streamline a routine diagnostic service. Journal of Clinical Virology, 43(4), 372-375.
Guy, R. A., Payment, P., Krull, U. J., & Horgen, P. A. (2003). Real-time PCR for quantification of Giardia and Cryptosporidium in environmental water samples and sewage. Applied and Environmental Microbiology, 69(9), 5178-5185.
Hall, A. J. (2012). Noroviruses: The perfect human pathogens? Journal of Infectious Diseases, 205(11), 1622-1624.
Hamza, I. A., Jurzik, L., Stang, A., Sure, K., Uberla, K., & Wilhelm, M. (2009). Detection of human viruses in rivers of a densely-populated area in Germany using a virus adsorption elution method optimized for PCR analyses. Water Research, 43(10), 2657-2668.
Han, M. G., Smiley, J. R., Thomas, C., & Saif, L. J. (2004). Genetic recombination between two genotypes of genogroup III bovine noroviruses (BoNVs) and capsid sequence diversity among BoNVs and Nebraska-like bovine enteric caliciviruses. Journal of Clinical Microbiology, 42(11), 5214-5224.
Hartnell, R., Lowther, J., Avant, J., Dancer, D., Lees, D., & Russell, J. (2012). The development of LENTICULES as reference materials for noroviruses. Journal of Applied Microbiology, 112, 338-345.
Hietala, S. K., & Crossley, B. M. (2006). Armored RNA as virus surrogate in a real-time reverse transcriptase PCR assay proficiency panel. Journal of Clinical Microbiology, 44(1), 67-70.
Hoehne, M., & Schreier, E. (2006). Detection of Norovirus genogroup I and II by multiplex real-time RT-PCR using a 3'-minor groove binder-DNA probe. Bmc Infectious Diseases, 6.
Hoorfar, J., Cook, N., Malorny, B., Wagner, M., De Medici, D., Abdulmawjood, A., et al. (2003). Making internal amplification control mandatory for diagnostic PCR. Journal of Clinical Microbiology, 41(12), 5385-5835.
Hoorfar, J., Malorny, B., Abdulmawjood, A., Cook, N., Wagner, M., & Fach, P. (2004). Practical considerations in design of internal amplification controls for diagnostic PCR assays. Journal of Clinical Microbiology, 42(5), 1863-1868.
Houde, A., Leblanc, D., Poitras, E., Ward, P., Brassard, J., Simard, C., et al. (2006). Comparative evaluation of RT-PCR, nucleic acid sequence-based amplification (NASBA) and real-time RT-PCR for detection of noroviruses in faecal material. Journal of Virological Methods, 135(2), 163-172.
Ikner, L. A., Gerba, C. P., & Bright, K. R. (2012). Concentration and recovery of viruses from water: A comprehensive review. Food and Environmental Virology, 4(2), 41-67.
ISO 22174. (2005). Microbiology of food and animal feeding stuffs-polymerase chain reaction (PCR) for the detection of food-borne pathogens-general requirements and definitions. International Organization for Standardization, Geneva.
Jaykus, L. A., DeLeon, R., & Sobsey, M. D. (1996). A virion concentration method for detection of human enteric viruses in oysters by PCR and oligoprobe hybridization. Applied and Environmental Microbiology, 62(6), 2074-2080.
Jean, J., D'Souza, D. H., & Jaykus, L. A. (2004). Multiplex nucleic acid sequence-based amplification for simultaneous detection of several enteric viruses in model ready-to-eat foods. Applied and Environmental Microbiology, 70(11), 6603-6610.
Jiang, X., Huang, P. W., Zhong, W. M., Farkas, T., Cubitt, D. W., & Matson, D. O. (1999). Design and evaluation of a primer pair that detects both Norwalk-and Sapporo-like caliciviruses by RT-PCR. Journal of Virological Methods, 83(1-2), 145-154.
Jiang, X., Wang, J., Graham, D. Y., & Estes, M. K. (1992). Detection of Norwalk virus in stool by polymerase chain reaction. Journal of Clinical Microbiology, 30(10), 2529-2534.
Jones, S., Douarre, P. E., O'Leary, J., Corcoran, D., O'Mahony, J., & Lucey, B. (2011). Validation of a norovirus multiplex real-time RT-PCR assay for the detection of norovirus GI and GII from faeces samples. British Journal of Biomedical Science, 68(3), 116-119.
Jothikumar, N., Lowther, J. A., Henshilwood, K., Lees, D. N., Hill, V. R., & Vinje, J. (2005). Rapid and sensitive detection of noroviruses by using TaqMan-based one-step reverse transcription-PCR assays and application to naturally contaminated shellfish samples. Applied and Environmental Microbiology, 71(4), 1870-1875.
Julian, T. R., Tamayo, F. J., Leckie, J. O., & Boehm, A. B. (2011). Comparison of surface sampling methods for virus recovery from fomites. Applied and Environmental Microbiology, 77(19), 6918-6925.
Kageyama, T., Kojima, S., Shinohara, M., Uchida, K., Fukushi, S., Hoshino, F. B., et al. (2003). Broadly reactive and highly sensitive assay for Norwalk-like viruses based on real-time quantitative reverse transcription-PCR. Journal of Clinical Microbiology, 41(4), 1548-1557.
Kamel, A. H., Ali, M. A., El-Nady, H. G., De Rougemont, A., Pothier, P., & Belliot, G. (2009). Predominance and circulation of enteric viruses in Grand Cairo. Journal of Clinical Microbiology, 47(4), 1037-1045.
Kapikian, A. Z., Wyatt, R. G., Dolin, R., Thornhill, T. S., Kalica, A. R., & Chanock, R. M. (1972). Visualization by immune electron microscopy of a 27-nm particle associated with acute infectious nonbacterial gastroenteritis. Journal of Virology, 10(5), 1075-1081.
Katayama, K., Shirato-Horikoshi, H., Kojima, S., Kageyama, T., Oka, T., Hoshino, F. B., et al. (2002). Phylogenetic analysis of the complete genome of 18 Norwalk-like viruses. Virology, 299(2), 225-239.
Khamrin, P., Nguyen, T. A., Phan, T. G., Satou, K., Masuoka, Y., Okitsu, S., et al. (2008). Evaluation of immunochromatography and commercial enzyme-linked immunosorbent assay for rapid detection of norovirus antigen in stool samples. Journal of Virological Methods, 147(2), 360-363.
Kittigul, L., Pombubpa, K., Taweekate, Y., Yeephoo, T., Khamrin, P., & Ushijima, H. (2009). Molecular characterization of rotaviruses, noroviruses, sapovirus, and adenoviruses in patients with acute gastroenteritis in Thailand. Journal of Medical Virology, 81(2), 345-353.
Knight, A., Li, D., Uyttendaele, M., & Jaykus, L. A. (2012). A critical review of methods for detecting human noroviruses and predicting their infectivity. Critical Reviews in Microbiology. doi: 10. 3109/1040841X. 2012. 709820.
Kojima, S., Kageyama, T., Fukushi, S., Hoshino, F. B., Shinohara, M., Uchida, K., et al. (2002). Genogroup-specific PCR primers for detection of Norwalk-like viruses. Journal of Virological Methods, 100(1-2), 107-114.
Koopmans, M., & Duizer, E. (2004). Foodborne viruses: An emerging problem. International Journal of Food Microbiology, 90(1), 23-41.
Kroneman, A., Vennema, H., Deforche, K., Avoort, H. V. D., Penaranda, S., Oberste, M. S., et al. (2011). An automated genotyping tool for enteroviruses and noroviruses. Journal of Clinical Virology, 51(2), 121-125.
Kroneman, A., Verhoef, L., Harris, J., Vennema, H., Duizer, E., van Duynhoven, Y., et al. (2008). Analysis of integrated virological and epidemiological reports of norovirus outbreaks collected within the Foodborne Viruses in Europe Network from 1 July 2001 to 30 June 2006. Journal of Clinical Microbiology, 46(9), 2959-2965.
Kwoh, D. Y., Davis, G. R., Whitfield, K. M., Chappelle, H. L., DiMichele, L. J., & Gingeras, T. R. (1989). Transcription-based amplification system and detection of amplified human immunodeficiency virus type 1 with a bead-based sandwich hybridization format. Proceedings of the National Academy of Sciences of the United States of America, 86(4), 1173-1177.
Kwok, S., & Higuchi, R. (1989). Avoiding false positives with PCR. Nature, 339(6221), 237-238.
Lam, T. T., Zhu, H., Smith, D. K., Guan, Y., Holmes, E. C., & Pybus, O. G. (2012). The recombinant origin of emerging human norovirus GII. 4/2008: Intra-genotypic exchange of the capsid P2 domain. Journal of General Virology, 93(pt4), 817-822.
Lamothe, G. T., Putallaz, T., Joosten, H., & Marugg, J. D. (2003). Reverse transcription-PCR analysis of bottled and natural mineral waters for the presence of noroviruses. Applied and Environmental Microbiology, 69(11), 6541-6549.
Laverick, M. A., Wyn-Jones, A. P., & Carter, M. J. (2004). Quantitative RT-PCR for the enumeration of noroviruses (Norwalk-like viruses) in water and sewage. Letters in Applied Microbiology, 39(2), 127-136.
Le Guyader, F. S., Bon, F., DeMedici, D., Parnaudeau, S., Bertone, A., Crudeli, S., et al. (2006). Detection of multiple noroviruses associated with an international gastroenteritis outbreak linked to oyster consumption. Journal of Clinical Microbiology, 44(11), 3878-3882.
Le Guyader, F. S., Neill, F. H., Dubois, E., Bon, F., Loisy, F., Kohli, E., et al. (2003). A semiquantitative approach to estimate Norwalk-like virus contamination of oysters implicated in an outbreak. International Journal of Food Microbiology, 87(1-2), 107-112.
Le Guyader, F. S., Parnaudeau, S., Schaeffer, J., Bosch, A., Loisy, F., Pommepuy, M., et al. (2009). Detection and quantification of noroviruses in shellfish. Applied and Environmental Microbiology, 75(3), 618-624.
Lees, D. (2010). International standardisation of a method for detection of human pathogenic viruses in molluscan shellfish. Food and Environmental Virology, 2(3), 146-155.
L'Homme, Y., Sansregret, R., Plante-Fortier, E., Lamontagne, A. M., Ouardani, M., Lacroix, G., et al. (2009). Genomic characterization of swine caliciviruses representing a new genus of Caliciviridae. Virus Genes, 39(1), 66-75.
Li, D., Baert, L., Xia, M., Zhong, W., van Coillie, E., Jiang, X., et al. (2012). Evaluation of methods measuring the capsid integrity and/or functions of noroviruses by heat inactivation. Journal of Virological Methods, 181(1), 1-5.
Li, D., Tang, Q., Li, Z., Wang, Y., Xue, Y., & Xue, C. (2009). Comparative study of detection of norovirus in oysters by RT-PCR. RT-seminested PCR and RT-LAMP. Food Science, 2009(12), 1-10.
Liu, B. L., Lambden, P. R., Gunther, H., Otto, P., Elschner, M., & Clarke, I. N. (1999). Molecular characterization of a bovine enteric calicivirus: Relationship to the Norwalk-like viruses. Journal of Virology, 73(1), 819-825.
Loisy, F., Atmar, R. L., Guillon, P., Le Cann, P., Pommepuy, M., & Le Guyader, F. S. (2005). Real-time RT-PCR for norovirus screening in shellfish. Journal of Virological Methods, 123(1), 1-7.
Longo, M. C., Berninger, M. S., & Hartley, J. L. (1990). Use of uracil DNA glycosylase to control carry-over contamination in polymerase chain reactions. Gene, 93(1), 125-128.
Love, D. C., Casteel, M. J., Meschke, J. S., & Sobsey, M. D. (2008). Methods for recovery of hepatitis A virus (HAV) and other viruses from processed foods and detection of HAV by nested RT-PCR and TaqMan RT-PCR. International Journal of Food Microbiology, 126(1-2), 221-226.
Lowe, B., Avila, H. A., Bloom, F. R., Gleeson, M., & Kusser, W. (2003). Quantitation of gene expression in neural precursors by reverse-transcription polymerase chain reaction using self-quenched, fluorogenic primers. Analytical Biochemistry, 315(1), 95-105.
Lowther, J. A., Gustar, N. E., Hartnell, R. E., & Lees, D. N. (2012). Comparison of norovirus RNA levels in outbreak-related oysters with background environmental levels. Journal of Food Protection, 75(2), 389-393.
Mackay, I. M., Arden, K. E., & Nitsche, A. (2002). Real-time PCR in virology. Nucleic Acids Research, 30(6), 1292-1305.
Martella, V., Decaro, N., Lorusso, E., Radogna, A., Moschidou, P., Amorisco, F., et al. (2009). Genetic heterogeneity and recombination in canine noroviruses. Journal of Virology, 83(21), 11391-11396.
Martella, V., Lorusso, E., Decaro, N., Elia, G., Radogna, A., D'Abramo, M., et al. (2008). Detection and molecular characterization of a canine norovirus. Emerging Infectious Diseases, 14(8), 1306-1308.
Matthijs, E., Muylkens, B., Mauroy, A., Ziant, D., Delwiche, T., & Thiry, E. (2010). Experimental evidence of recombination in murine noroviruses. Journal of General Virology, 91(11), 2723-2733.
Mattison, K., Grudeski, E., Auk, B., Brassard, J., Charest, H., Dust, K., et al. (2010a). Analytical performance of norovirus real-time RT-PCR detection protocols in Canadian laboratories. Journal of Clinical Virology, 50(2), 109-113.
Mattison, K., Grudeski, E., Auk, B., Charest, H., Drews, S. J., Fritzinger, A., et al. (2009). Multicenter comparison of two norovirus ORF2-based genotyping protocols. Journal of Clinical Microbiology, 47(12), 3927-3932.
Mattison, K., Harlow, J., Morton, V., Cook, A., Pollari, F., & Bidawid, S. (2010b). Enteric viruses in ready-to-eat packaged leafy greens. Emerging Infectious Diseases, 16(11), 1815-1817.
Mattison, K., Shukla, A., Cook, A., Pollari, F., Friendship, R., Kelton, D., et al. (2007). Human noroviruses in swine and cattle. Emerging Infectious Diseases, 13(8), 1184-1188.
Maunula, L., Roivainen, M., Keranen, M., Makela, S., Soderberg, K., Summa, M., et al. (2009). Detection of human norovirus from frozen raspberries in a cluster of gastroenteritis outbreaks. Eurosurveillance, 14(49), 16-18.
McFadden, N., Bailey, D., Carrara, G., Benson, A., Chaudhry, Y., Shortland, A., et al. (2011). Norovirus regulation of the innate immune response and apoptosis occurs via the product of the alternative open reading frame 4. PLoS Pathogens, 7(12), e1002413.
Medici, M. C., Morelli, A., Arcangeletti, M. C., Calderaro, A., De Conto, F., Martinelli, M., et al. (2008). An outbreak of norovirus infection in an Italian residential-care facility for the elderly. Clinical Microbiology and Infection: The Official Publication of the European Society of Clinical Microbiology and Infections Diseases, 15(1), 97-100.
Menzel, W., Jelkmann, W., & Maiss, E. (2002). Detection of four apple viruses by multiplex RT-PCR assays with coamplification of plant mRNA as internal control. Journal of Virological Methods, 99(1), 81-92.
Mesquita, J. R., & Nascimento, M. S. J. (2009). A foodborne outbreak of norovirus gastroenteritis associated with a christmas dinner in Porto, Portugal, December 2008. Eurosurveillance, 14(41), 19-21.
Milne, S. A., Gallacher, S., Cash, P., Lees, D. N., Henshilwood, K., & Porter, A. J. R. (2007). A sensitive and reliable reverse transcriptase PCR enzyme-linked immunosorbent assay for the detection of human pathogenic viruses in bivalve molluscs. Journal of Food Protection, 70(6), 1475-1482.
Moe, C. L. (2008). Preventing norovirus transmission: How should we handle food handlers? Clinical Infectious Diseases, 48(1), 38-40.
Moore, C., Clark, E. M., Gallimore, C. I., Corden, S. A., Gray, J. J., & Westmoreland, D. (2004). Evaluation of a broadly reactive nucleic acid sequence based amplification assay for the detection of noroviruses in faecal material. Journal of Clinical Virology, 29(4), 290-296.
Nayak, M. K., Chatterjee, D., Nataraju, S. M., Pativada, M., Mitra, U., Chatterjee, M. K., et al. (2009). A new variant of Norovirus GII. 4/2007 and inter-genotype recombinant strains of NVGII causing acute watery diarrhoea among children in Kolkata, India. Journal of Clinical Virology, 45(3), 223-229.
Nazarenko, I., Lowe, B., Darfler, M., Ikonomi, P., Schuster, D., & Rashtchian, A. (2002). Multiplex quantitative PCR using self-quenched primers labeled with a single fluorophore. Nucleic Acids Research, 30(9), e37-e43.
Nenonen, N. P., Hannoun, C., Olsson, M. B., & Bergstrom, T. (2009). Molecular analysis of an oyster-related norovirus outbreak. Journal of Clinical Virology, 45(2), 105-108.
Niesters, H. G. (2002). Clinical virology in real time. Journal of Clinical Virology, 25(Suppl 3), S3-S12.
Noel, J. S., Ando, T., Leite, J. P., Green, K. Y., Dingle, K. E., Estes, M. K., et al. (1997). Correlation of patient immune responses with genetically characterized small round-structured viruses involved in outbreaks of nonbacterial acute gastroenteritis in the United States, 1990 to 1995. Journal of Medical Virology, 53(4), 372-383.
Nordgren, J., Bucardo, F., Dienus, O., Svensson, L., & Lindgren, P. E. (2008). Novel light-upon-extension real-time PCR assays for detection and quantification of genogroup I and II noroviruses in clinical specimens. Journal of Clinical Microbiology, 46(1), 164-170.
Nordgren, J., Bucardo, F., Svensson, L., & Lindgren, P. E. (2010). Novel light-upon-extension real-time PCR assay for simultaneous detection, quantification, and genogrouping of group A rotavirus. Journal of Clinical Microbiology, 48(5), 1859-1864.
Notomi, T., Okayama, H., Masubuchi, H., Yonekawa, T., Watanabe, K., Amino, N., et al. (2000). Loop-mediated isothermal amplification of DNA. Nucleic Acids Research, 28(12), e63/1-e63/7.
Nyrén, P. (2007). The history of pyrosequencing. Methods in Molecular Biology (Clifton, NJ), 373, 1-14.
Palmer, S., Brown, D., & Morgan, D. (2005). Early qualitative risk assessment of the emerging zoonotic potential of animal diseases. British Medical Journal, 331(7527), 1256-1260.
Pang, X. L., Lee, B., Chui, L., Preiksaitis, J. K., & Monroe, S. S. (2004). Evaluation and validation of real-time reverse transcription-PCR assay using the LightCycler system for detection and quantitation of norovirus. Journal of Clinical Microbiology, 42(10), 4679-4685.
Park, K. S., Baek, K. A., Kim, D. U., Kwon, K. S., Bing, S. H., Park, J. S., et al. (2012). Evaluation of a new immunochromatographic assay kit for the rapid detection of norovirus in fecal specimens. Annals of Laboratory Medicine, 32(1), 79-81.
Park, G. W., Barclay, L., Macinga, D., Charbonneau, D., Pettigrew, C. A., & Vinje, J. (2010). Comparative efficacy of seven hand sanitizers against murine norovirus, feline calicivirus, and GII. 4 norovirus. Journal of Food Protection, 73(12), 2232-2238.
Park, Y., Cho, Y. H., Jee, Y., & Ko, G. (2008). Immunomagnetic separation combined with real-time reverse transcriptase PCR assays for detection of norovirus in contaminated food. Applied and Environmental Microbiology, 74(13), 4226-4230.
Parshionikar, S. U., Cashdollar, J., & Fout, G. S. (2004). Development of homologous viral internal controls for use in RT-PCR assays of waterborne enteric viruses. Journal of Virological Methods, 121(1), 39-48.
Pierce, K. E., Sanchez, J. A., Rice, J. E., & Wangh, L. J. (2005). Linear-After-The-Exponential (LATE)-PCR: Primer design criteria for high yields of specific single-stranded DNA and improved real-time detection. Proceedings of the National Academy of Sciences of the United States of America, 102(24), 8609-8614.
Pierce, K. E., & Wangh, L. J. (2007). LATE-PCR and allied technologies: Real-time detection strategies for rapid, reliable diagnosis from single cells. Methods in Molecular Biology, 668, 47-66.
Pombubpa, K., & Kittigul, L. (2012). Assessment of a rapid immunochromatographic test for the diagnosis of norovirus gastroenteritis. European Journal of Clinical Microbiology & Infectious Diseases, 31(9), 2379-2383.
Reiss, R. A., & Rutz, B. (1999). Quality control PCR: A method for detecting inhibitors of Taq DNA polymerase. BioTechniques, 27(5), 920/2-924/6.
Richards, G. P., Watson, M. A., Fankhauser, R. L., & Monroe, S. S. (2004). Genogroup I and II noroviruses detected in stool samples by real-time reverse transcription-PCR using highly degenerate universal primers. Applied and Environmental Microbiology, 70(12), 7179-7184.
Rijpens, N. P., & Herman, L. M. F. (2002). Molecular methods for identification and detection of bacterial food pathogens. Journal of AOAC International, 85(4), 984-995.
Rolfe, K. J., Parmar, S., Mururi, D., Wreghitt, T. G., Jalal, H., Zhang, H., et al. (2007). An internally controlled, one-step, real-time RT-PCR assay for norovirus detection and genogrouping. Journal of Clinical Virology, 39(4), 318-321.
Rosenfield, S. I., & Jaykus, L. A. (1999). A multiplex reverse transcription polymerase chain reaction method for the detection of foodborne viruses. Journal of Food Protection, 62(10), 1210-1214.
Rosenstraus, M., Wang, Z., Chang, S. Y., DeBonville, D., & Spadoro, J. P. (1998). An internal control for routine diagnostic PCR: Design, properties, and effect on clinical performance. Journal of Clinical Microbiology, 36(1), 191-197.
Ruether, I. G. A., Tsakogiannis, D., Pliaka, V., Kyriakopoulou, Z., Krikelis, A., Gartzonika, C., et al. (2012). Molecular characterization of a new intergenotype Norovirus GII recombinant. Virus Genes, 44(2), 237-243.
Sábato, M. F., Shiffman, M. L., Langley, M. R., Wilkinson, D. S., & Ferreira-Gonzalez, A. (2007). Comparison of performance characteristics of three real-time reverse transcription-PCR test systems for detection and quantification of hepatitis C virus. Journal of Clinical Microbiology, 45(8), 2529-2536.
Sair, A. I., D'Souza, D. H., Moe, C. L., & Jaykus, L. A. (2002). Improved detection of human enteric viruses in foods by RT-PCR. Journal of Virological Methods, 100(1-2), 57-69.
Salk, J. J., Sanchez, J. A., Pierce, K. E., Rice, J. E., Soares, K. C., & Wangh, L. J. (2006). Direct amplification of single-stranded DNA for pyrosequencing using Linear-After-The-Exponential (LATE)-PCR. Analytical Biochemistry, 353(1), 124-132.
Sanchez, J. A., Pierce, K. E., Rice, J. E., & Wangh, L. J. (2004). Linear-After-The-Exponential (LATE) PCR: An advanced method of asymmetric PCR and its uses in quantitative real-time analysis. Proceedings of the National Academy of Sciences of the United States of America, 101(7), 1933-1938.
Schumacher, W., Frick, E., Kauselmann, M., Maier-Hoyle, V., van der Vliet, R., & Babiel, R. (2007). Fully automated quantification of human immunodeficiency virus (HIV) type 1 RNA in human plasma by the COBAS® AmpliPrep/COBAS® TaqMan® system. Journal of Clinical Virology, 38(4), 304-312.
Schwab, K. J., Estes, M. K., Neill, F. H., & Atmar, R. L. (1997). Use of heat release and an internal RNA standard control in reverse transcription- detection of Norwalk virus from stool samples. Journal of Clinical Microbiology, 35(2), 511-514.
Schwab, K. J., & McDevitt, J. J. (2003). Development of a PCR-enzyme immunoassay oligoprobe detection method for Toxoplasma gondii oocysts, incorporating PCR controls. Applied and Environmental Microbiology, 69(10), 5819-5825.
Schwab, K. J., Neill, F. H., Estes, M. K., Metcalf, T. G., & Atmar, R. L. (1998). Distribution of Norwalk virus within shellfish following bioaccumulation and subsequent depuration by detection using RT-PCR. Journal of Food Protection, 61(12), 1674-1680.
Scipioni, A., Bourgot, I., Mauroy, A., Ziant, D., Saegerman, C., Daube, G., et al. (2008a). Detection and quantification of human and bovine noroviruses by a TaqMan RT-PCR assay with a control for inhibition. Molecular and Cellular Probes, 22(4), 215-222.
Scipioni, A., Mauroy, A., Vinje, J., & Thiry, E. (2008b). Animal noroviruses. The Veterinary Journal, 178(1), 32-45.
Scipioni, A., Mauroy, A., Ziant, D., Saegerman, C., & Thiry, E. (2008c). A SYBR Green RT-PCR assay in single tube to detect human and bovine noroviruses and control for inhibition. Virology Journal, 5(1), 94-102.
Sdiri-Loulizi, K., Gharbi-Khelifi, H., De Rougemont, A., Chouchane, S., Sakly, N., Ambert-Balay, K., et al. (2008). Acute infantile gastroenteritis associated with human enteric viruses in Tunisia. Journal of Clinical Microbiology, 46(4), 1349-1355.
Shigemoto, N., Fukuda, S., Tanizawa, Y., Kuwayama, M., Ohara, S., & Seno, M. (2011). Detection of norovirus, sapovirus, and human astrovirus in fecal specimens using a multiplex reverse transcription-PCR with fluorescent dye-labeled primers. Microbiology and Immunology, 55(5), 369-372.
Sidoti, F., Bergallo, M., Costa, C., & Cavallo, R. (2012). Alternative molecular tests for virological diagnosis. Molecular Biotechnology, 1-11. doi: 10. 1007/s12033-012-9533-8.
Siebenga, J. J., Vennema, H., Renckens, B., Bruin, E., van der Veer, B. D., Siezen, R. J., et al. (2007). Epochal evolution of GGII. 4 norovirus capsid proteins from 1995 to 2006. Journal of Virology, 81(18), 9932-9941.
Stals, A., Baert, L., Botteldoorn, N., Werbrouck, H., Herman, L., Uyttendaele, M., et al. (2009a). Multiplex real-time RT-PCR for simultaneous detection of GI/GII noroviruses and murine norovirus 1. Journal of Virological Methods, 161(2), 247-253.
Stals, A., Baert, L., Jasson, V., van Coillie, E., & Uyttendaele, M. (2011a). Screening of fruit products for norovirus and the difficulty of interpreting positive PCR results. Journal of Food Protection, 74(3), 425-431.
Stals, A., Baert, L., van Coillie, E., & Uyttendaele, M. (2011b). Evaluation of a norovirus detection methodology for soft red fruits. Food Microbiology, 28(1), 52-58.
Stals, A., Baert, L., van Coillie, E., & Uyttendaele, M. (2012). Extraction of food-borne viruses from food samples: A review. International Journal of Food Microbiology, 153(1-2), 1-9.
Stals, A., Werbrouck, H., Baert, L., Botteldoorn, N., Herman, L., Uyttendaele, M., et al. (2009b). Laboratory efforts to eliminate contamination problems in the real-time RT-PCR detection of noroviruses. Journal of Microbiological Methods, 77(1), 72-76.
Sugieda, M., Nagaoka, H., Kakishima, Y., Ohshita, T., Nakamura, S., & Nakajima, S. (1998). Detection of Norwalk-like virus genes in the caecum contents of pigs. Archives of Virology, 143(6), 1215-1221.
Summa, M., von Bonsdorff, C. H., & Maunula, L. (2012). Pet dogs, a transmission route for human noroviruses? Journal of Clinical Virology, 53(3), 244-247.
Svraka, S., Duizer, E., Vennema, H., de Bruin, E., van der Veer, B., Dorresteijn, B., et al. (2007). Etiological role of viruses in outbreaks of acute gastroenteritis in the Netherlands from 1994 through 2005. Journal of Clinical Microbiology, 45(5), 1389-1394.
Tajiri-Utagawa, E., Hara, M., Takahashi, K., Watanabe, M., & Wakita, T. (2009). Development of a rapid high-throughput method for high-resolution melting analysis for routine detection and genotyping of noroviruses. Journal of Clinical Microbiology, 47(2), 435-440.
Takanashi, S., Wang, Q., Chen, N., Shen, Q., Jung, K., Zhang, Z., et al. (2011). Characterization of Emerging GII. g/GII. 12 noroviruses from a gastroenteritis outbreak in the United States in 2010. Journal of Clinical Microbiology, 49(9), 3234-3244.
Teunis, P. F. M., Moe, C. L., Liu, P., Miller, S. E., Lindesmith, L., Baric, R. S., et al. (2008). Norwalk virus: How infectious is it? Journal of Medical Virology, 80(8), 1468-1476.
Thornhill, T. S., Kalica, A. R., Wyatt, R. G., Kapikian, A. Z., & Chanock, R. M. (1975). Pattern of shedding of the Norwalk particle in stools during experimentally induced gastroenteritis in volunteers as determined by immune electron microscopy. Journal of Infectious Diseases, 132(1), 28-34.
Tolentino-Ruiz, R., Montoya-Varela, D., Garcia-Espitia, M., Salas-Benito, M., Gutiérrez-Escolano, A., Gomez-Garcia, C., et al. (2012). Development of a multiplex PCR assay to detect gastroenteric pathogens in the feces of mexican children. Current Microbiology, 65(4), 361-368.
Trujillo, A. A., McCaustland, K. A., Zheng, D. P., Hadley, L. A., Vaughn, G., Adams, S. M., et al. (2006). Use of TaqMan real-time reverse transcription-PCR for rapid detection, quantification, and typing of norovirus. Journal of Clinical Microbiology, 44(4), 1405-1412.
Uhrbrand, K., Myrmel, M., Maunula, L., Vainio, K., Trebbien, R., Norrung, B., et al. (2010). Evaluation of a rapid method for recovery of norovirus and hepatitis A virus from oysters and blue mussels. Journal of Virological Methods, 169(1), 70-78.
van der Poel, W. H., Vinje, J., van Der Heide, R., Herrera, M. I., Vivo, A., & Koopmans, M. P. (2000). Norwalk-like calicivirus genes in farm animals. Emerging Infectious Diseases, 6(1), 36-41.
van Maarseveen, N. M., Wessels, E., De Brouwer, C. S., Vossen, A. C. T. M., & Claas, E. C. J. (2010). Diagnosis of viral gastroenteritis by simultaneous detection of adenovirus group F, astrovirus, rotavirus group A, norovirus genogroups I and II, and sapovirus in two internally controlled multiplex real-time PCR assays. Journal of Clinical Virology, 49(3), 205-210.
Vennema, H., de Bruin, E., & Koopmans, M. (2002). Rational optimization of generic primers used for Norwalk-like virus detection by reverse transcriptase polymerase chain reaction. Journal of Clinical Virology, 25(2), 233-235.
Verheyen, J., Kaiser, R., Bozic, M., Timmen-Wego, M., Maier, B. K., & Kessler, H. H. (2012). Extraction of viral nucleic acids: Comparison of five automated nucleic acid extraction platforms. Journal of Clinical Virology, 54(3), 255-259.
Vincent, M., Xu, Y., & Kong, H. (2004). Helicase-dependent isothermal DNA amplification. EMBO Reports, 5(8), 795-800.
Vinje, J., Green, J., Lewis, D. C., Gallimore, C. I., Brown, D. W. G., & Koopmans, M. P. G. (2000). Genetic polymorphism across regions of the three open reading frames of "Norwalk-like viruses". Archives of Virology, 145(2), 223-241.
Vinje, J., Hamidjaja, R. A., & Sobsey, M. D. (2004). Development and application of a capsid VP1 (region D) based reverse transcription PCR assay for genotyping of genogroup I and II noroviruses. Journal of Virological Methods, 116(2), 109-117.
Vinje, J., & Koopmans, M. P. (1996). Molecular detection and epidemiology of small round-structured viruses in outbreaks of gastroenteritis in the Netherlands. Journal of Infectious Diseases, 174(3), 610-615.
Vinje, J., Vennema, H., Maunula, L., von Bonsdorff, C. H., Hoehne, M., Schreier, E., et al. (2003). International collaborative study to compare reverse transcriptase PCR assays for detection and genotyping of noroviruses. Journal of Clinical Microbiology, 41(4), 1423-1433.
Wang, Q. H., Han, M. G., Cheetham, S., Souza, M., Funk, J. A., & Saif, L. J. (2005). Porcine noroviruses related to human noroviruses. Emerging Infectious Diseases, 11(12), 1874-1881.
Williams-Woods, J., Gonzalez-Escalona, N., & Burkhardt, W. (2011). Direct sequencing of hepatitis A virus and norovirus RT-PCR products from environmentally contaminated oyster using M13-tailed primers. Journal of Virological Methods, 178(1-2), 253-257.
Winn-Deen, E. S. (1998). Direct fluorescence detection of allele-specific PCR products using novel energy-transfer labeled primers. Molecular Diagnosis, 3(4), 217-222.
Wittwer, C. T., Reed, G. H., Gundry, C. N., Vandersteen, J. G., & Pryor, R. J. (2003). High-resolution genotyping by amplicon melting analysis using LCGreen. Clinical Chemistry, 49(6), 853-860.
Wobus, C. E., Thackray, L. B., & Virgin, H. W. (2006). Murine norovirus: A model system to study norovirus biology and pathogenesis. Journal of Virology, 80(11), 5104-5112.
Wolf, S., Hewitt, J., & Greening, G. E. (2010). Viral multiplex quantitative PCR assays for tracking sources of fecal contamination. Applied and Environmental Microbiology, 76(5), 1388-1394.
Wolf, S., Reetz, J., Hoffmann, K., Gründel, A., Schwarz, B. A., Hänel, I., et al. (2012). Discovery and genetic characterization of novel caliciviruses in German and Dutch poultry. Archives of Virology, 157(8), 1499-1507.
Wolf, S., Williamson, W., Hewitt, J., Lin, S., Rivera-Aban, M., Ball, A., et al. (2009). Molecular detection of norovirus in sheep and pigs in New Zealand farms. Veterinary Microbiology, 133(1-2), 184-189.
Wolf, S., Williamson, W. M., Hewitt, J., Rivera-Aban, M., Lin, S., Ball, A., et al. (2007). Sensitive multiplex real-time reverse transcription-PCR assay for the detection of human and animal noroviruses in clinical and environmental samples. Applied and Environmental Microbiology, 73(17), 5464-5470.
Xi, J. A., Graham, D. Y., Wang, K. N., & Estes, M. K. (1990). Norwalk virus genome cloning and characterization. Science, 250(4987), 1580-1583.
Yan, H. N., Yagyu, F., Okitsu, S., Nishio, O., & Ushijima, H. (2003). Detection of norovirus (GI, GII), sapovirus and astrovirus in fecal samples using reverse transcription single-round multiplex PCR. Journal of Virological Methods, 114(1), 37-44.
Yilmaz, A., Bostan, K., Altan, E., Muratoglu, K., Turan, N., Tan, D., et al. (2011). Investigations on the frequency of norovirus contamination of ready-to-eat food items in Istanbul, Turkey, by using real-time reverse transcription PCR. Journal of Food Protection, 74(5), 840-843.
Yoda, T., Suzuki, Y., Yamazaki, K., Sakon, N., Kanki, M., Aoyama, I., et al. (2007). Evaluation and application of reverse transcription loop-mediated isothermal amplification for detection of noroviruses. Journal of Medical Virology, 79(3), 326-334.
Zainazor, C. T., Hidayah, M. S. N., Chai, L. C., Tunung, R., Ghazali, F. M., & Son, R. (2010). The scenario of norovirus contamination in food and food handlers. Journal of Microbiology and Biotechnology, 20(2), 229-237.
Zheng, D. P., Ando, T., Fankhauser, R. L., Beard, R. S., Glass, R. I., & Monroe, S. S. (2006). Norovirus classification and proposed strain nomenclature. Virology, 346(2), 312-323.
Zheng, D. P., Widdowson, M. A., Glass, R. I., & Vinje, J. (2010). Molecular epidemiology of genogroup II-genotype 4 noroviruses in the United States between 1994 and 2006. Journal of Clinical Microbiology, 48(1), 168-177.