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Estimation of the frequency of Q fever in sheep, goat and cattle herds in France: results of a 3-year study of the seroprevalence of Q fever and excretion level ofCoxiella burnetiiin abortive episodes
A longitudinal study of serological responses to Coxiella burnetii and shedding at kidding among intensively-managed goats supports early use of vaccines
Epidemiology of Q fever in Iran: A systematic review and meta-analysis for estimating serological and molecular prevalence
Zary Nokhodian, Awat Feizi, Behrooz Ataei, Shervin Ghaffari Hoseini and Ehsan Mostafavi Journal of Research in Medical Sciences 22(1) (2017) https://doi.org/10.4103/jrms.JRMS_586_17
Bayesian Validation of the Indirect Immunofluorescence Assay and Its Superiority to the Enzyme-Linked Immunosorbent Assay and the Complement Fixation Test for Detecting Antibodies against Coxiella burnetii in Goat Serum
Human Q fever incidence is associated to spatiotemporal environmental conditions
J.P.G. Van Leuken, A.N. Swart, J. Brandsma, W. Terink, J. Van de Kassteele, P. Droogers, F. Sauter, A.H. Havelaar and W. Van der Hoek One Health 2 77 (2016) https://doi.org/10.1016/j.onehlt.2016.03.004
A cross sectional study evaluating the prevalence of Coxiella burnetii, potential risk factors for infection, and agreement between diagnostic methods in goats in Indiana
Spatial relationships in the Q fever outbreaks 2007–2010 in the Netherlands
Monica Commandeur, Leonne Jeurissen, Wim van der Hoek, Hendrik-Jan Roest and Tia (C.M.L.) Hermans International Journal of Environmental Health Research 24(2) 137 (2014) https://doi.org/10.1080/09603123.2013.800963
Q fever outbreak in the terraced vineyards of Lavaux, Switzerland
C. Bellini, I. Magouras, C. Chapuis-Taillard, et al. New Microbes and New Infections 2(4) 93 (2014) https://doi.org/10.1002/nmi2.37
Risk factors of Q fever in sheep and goat flocks with history of abortion
Javad Asadi, Mohammad Khalili, Mojtaba Kafi, Maryam Ansari-Lari and Seyed Mohammad Hosseini Comparative Clinical Pathology 23(3) 625 (2014) https://doi.org/10.1007/s00580-012-1661-9
Q fever in pregnant goats: humoral and cellular immune responses
Hendrik IJ Roest, Jacob Post, Betty van Gelderen, Fred G van Zijderveld and Johanna MJ Rebel Veterinary Research 44(1) 67 (2013) https://doi.org/10.1186/1297-9716-44-67
Serological evidence of exposure to Coxiella burnetii in sheep and goats in central Portugal
Detection of Coxiella burnetii in the bulk tank milk from a farm with vaccinated goats, by using a specific PCR technique
R. van den Brom, E. van Engelen, J. Vos, S.J.M. Luttikholt, L. Moll, H.I.J. Roest, H.M.J.F. van der Heijden and P. Vellema Small Ruminant Research 110(2-3) 150 (2013) https://doi.org/10.1016/j.smallrumres.2012.11.024
Bayesian estimation of sensitivity and specificity of Coxiella burnetii antibody ELISA tests in bovine blood and milk
Seroepidemiology ofCoxiella burnetiiin Wild White-Tailed Deer (Odocoileus virginianus) in New York, United States
Megan S. Kirchgessner, Edward J. Dubovi and Christopher M. Whipps Vector-Borne and Zoonotic Diseases 12(11) 942 (2012) https://doi.org/10.1089/vbz.2011.0952
Effectiveness of vaccination and antibiotics to control Coxiella burnetii shedding around calving in dairy cows
Coxiella burnetii in bulk tank milk samples from dairy goat and dairy sheep farms in The Netherlands in 2008
R. van den Brom, E. van Engelen, S. Luttikholt, L. Moll, K. van Maanen and P. Vellema Veterinary Record 170(12) 310 (2012) https://doi.org/10.1136/vr.100304
Immunoreactive Coxiella burnetii Nine Mile proteins separated by 2D electrophoresis and identified by tandem mass spectrometry
Q Fever: Current State of Knowledge and Perspectives of Research of a Neglected Zoonosis
Sarah Rebecca Porter, Guy Czaplicki, Jacques Mainil, Raphaël Guattéo and Claude Saegerman International Journal of Microbiology 2011 1 (2011) https://doi.org/10.1155/2011/248418
Modelling the effect of heterogeneity of shedding on the within herd Coxiella burnetii spread and identification of key parameters by sensitivity analysis
Aurélie Courcoul, Hervé Monod, Mirjam Nielen, Don Klinkenberg, Lenny Hogerwerf, François Beaudeau and Elisabeta Vergu Journal of Theoretical Biology 284(1) 130 (2011) https://doi.org/10.1016/j.jtbi.2011.06.017
The Q fever epidemic in The Netherlands: history, onset, response and reflection
Coxiella burnetii shedding and environmental contamination at lambing in two highly naturally-infected dairy sheep flocks after vaccination
I. Astobiza, J.F. Barandika, F. Ruiz-Fons, A. Hurtado, I. Povedano, R.A. Juste and A.L. García-Pérez Research in Veterinary Science 91(3) e58 (2011) https://doi.org/10.1016/j.rvsc.2010.11.014
Detection of Coxiella burnetii, the agent of Q fever, in oviducts and uterine flushing media and in genital tract tissues of the non pregnant goat
Ashraf Alsaleh, Jean-Louis Pellerin, Annie Rodolakis, et al. Comparative Immunology, Microbiology and Infectious Diseases 34(4) 355 (2011) https://doi.org/10.1016/j.cimid.2011.05.002
Detection of Coxiella burnetii in Complex Matrices by Using Multiplex Quantitative PCR during a Major Q Fever Outbreak in The Netherlands
Spread of Q fever within dairy cattle herds: key parameters inferred using a Bayesian approach
Aurélie Courcoul, Elisabeta Vergu, Jean-Baptiste Denis and François Beaudeau Proceedings of the Royal Society B: Biological Sciences 277(1695) 2857 (2010) https://doi.org/10.1098/rspb.2010.0575
Development of harmonised schemes for the monitoring and reporting of Q‐fever in animals in the European Union
Kinetics of Coxiella burnetii excretion in a commercial dairy sheep flock after treatment with oxytetracycline
Ianire Astobiza, Jesús F. Barandika, Ana Hurtado, Ramón A. Juste and Ana L. García-Pérez The Veterinary Journal 184(2) 172 (2010) https://doi.org/10.1016/j.tvjl.2009.01.017
A survey of Western Australian sheep, cattle and kangaroos to determine the prevalence of Coxiella burnetii
Clinicopathologic Aspects of Animal and Zoonotic Diseases of Bioterrorism
Marc E. Mattix, David H. Zeman, Robert Moeller, Carney Jackson and Thomas Larsen Clinics in Laboratory Medicine 26(2) 445 (2006) https://doi.org/10.1016/j.cll.2006.03.010
Molecular characterization of Coxiella burnetii isolates by infrequent restriction site-PCR and MLVA typing