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Abstract

Author(s)
Thresher, R. A.
Publisher
New Zealand Society of Animal Production, Hamilton, New Zealand
Citation
Proceedings of the New Zealand Society of Animal Production, 2017, 77, pp 95-96
Abstract

Mastitis in two herds managed as a comparison between organic and conventional dairy farming systems was monitored for 8 years utilising regular bacterial culture of milk samples, individual and bulk somatic cell counts, and observation by farm staff. The aim of the project was to develop...

Author(s)
Thatcher, A.; Martin, N.; Petrovski, K. R.
Publisher
Springer, Dordrecht, Netherlands
Citation
Organic Agriculture, 2014, 4, 4, pp 313-317
Abstract

Real-time PCR techniques are increasingly used to detect udder pathogens from milk samples collected non-aseptically at routine milk recording. The objectives of this study were (1) to estimate the statistical associations between cycle threshold (Ct) values for Staphylococcus aureus in...

Author(s)
Mahmmod, Y. S.; Klaas, I. C.; Enevoldsen, C.
Publisher
Elsevier Inc., Philadelphia, USA
Citation
Journal of Dairy Science, 2017, 100, 7, pp 5709-5716
Abstract

Objective: To compare the antimicrobial susceptibility patterns of three common mastitis pathogens (Staphylococcus aureus, Streptococcus uberis and Str. dysgalactiae) isolated from milk samples from New Zealand and the USA. Methods: A total of 182 S. aureus, 126 Str. uberis and 89 Str. dysgalactiae ...

Author(s)
Petrovski, K. R.; Grinberg, A.; Williamson, N. B.; Abdalla, M. E.; Lopez-Villalobos, N.; Parkinson, T. J.; Tucker, I. G.; Rapnicki, P.
Publisher
Wiley-Blackwell, Melbourne, Australia
Citation
Australian Veterinary Journal, 2015, 93, 7, pp 227-233
Abstract

Author(s)
Malmo, J.; Vermunt, J. J.; Parkinson, T. J.; Petrovski, K. R.
Publisher
VetLearn, Wellington, New Zealand
Citation
Diseases of cattle in Australasia, 2010, pp 340-413
Abstract

AIMS: To determine the minimal inhibitory concentrations (MIC) of antimicrobials for common mastitis pathogens from dairy cows in New Zealand; and to assess the effect of source of the isolates, i.e. commercial veterinary laboratories or collected as part of research studies; the clinical status of ...

Author(s)
McDougall, S.; Hussein, H.; Petrovski, K.
Publisher
Taylor & Francis, Melbourne, Australia
Citation
New Zealand Veterinary Journal, 2014, 62, 2, pp 68-76
Abstract

AIM: To determine the prevalence of intramammary infection (IMI) of lactating dairy goats between 0 and 4 days postpartum, the prevalence and incidence rate of new IMI at Weeks 2, 14 and 27 of lactation, and the relationship between herd-level prevalence of IMI and bulk tank somatic cell count...

Author(s)
McDougall, S.; Malcolm, D.; Prosser, C. G.
Publisher
Taylor & Francis, Melbourne, Australia
Citation
New Zealand Veterinary Journal, 2014, 62, 3, pp 136-145
Abstract

Publisher
MAF Biosecurity Authority, Ministry of Agriculture and Forestry, Wellington, New Zealand
Citation
Surveillance (Wellington), 2013, 40, 1, pp 14
Abstract

AIMS: To determine the effects of (a) post-milking teat disinfection compared with no disinfection and (b) pre- and post-milking teat disinfection compared with post-milking disinfection alone, on the incidence of new intramammary infection (IMI), somatic cell count (SCC) and teat skin...

Author(s)
Williamson, J. H.; Lacy-Hulbert, S. J.
Publisher
Taylor & Francis, Melbourne, Australia
Citation
New Zealand Veterinary Journal, 2013, 61, 5, pp 262-268
Abstract

AIMS: To determine the pattern of isolation of major mastitis-causing organisms isolated from milk samples submitted to five veterinary diagnostic laboratories in New Zealand. METHODS: The culture results of 25,288 milk samples that were collected from dairy cows throughout New Zealand from August...

Author(s)
Petrovski, K. R.; Williamson, N. B.; Lopez-Villalobos, N.; Parkinson, T. J.; Tucker, I. G.
Publisher
New Zealand Veterinary Association, Wellington, New Zealand
Citation
New Zealand Veterinary Journal, 2011, 59, 6, pp 317-322

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