490
Views
30
CrossRef citations to date
0
Altmetric
Scientific Article

A randomised, non-inferiority trial of a new cephalonium dry-cow therapy

Pages 45-58 | Received 20 May 2009, Accepted 11 Jan 2010, Published online: 16 Feb 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

M Bryan & SY Hea. (2017) A survey of antimicrobial use in dairy cows from farms in four regions of New Zealand. New Zealand Veterinary Journal 65:2, pages 93-98.
Read now
RA Laven, CC Balcomb, WT Tulley & KE Lawrence. (2014) Effect of dry period length on the effect of an intramammary teat sealant on the risk of mastitis in cattle treated with antibiotics at drying off. New Zealand Veterinary Journal 62:4, pages 214-220.
Read now
S McDougall, H Hussein & K Petrovski. (2014) Antimicrobial resistance in Staphylococcus aureus, Streptococcus uberis and Streptococcus dysgalactiae from dairy cows with mastitis. New Zealand Veterinary Journal 62:2, pages 68-76.
Read now
MA Bryan, C Heuer & FR Emslie. (2011) The comparative efficacy of two long-acting dry-cow cephalonium products in curing and preventing intramammary infections. New Zealand Veterinary Journal 59:4, pages 166-173.
Read now

Articles from other publishers (23)

P. Mehrtens, E.L. Cuttance, W.A. Mason & R. Nortje. (2023) Randomized, non-inferiority trial evaluating the efficacy of a novel teat sealant in pasture grazed dairy cows. Journal of Dairy Science.
Crossref
Jabin Nesaraj, Alex Grinberg, Richard Laven & Patrick Biggs. (2023) Genomic epidemiology of bovine mastitis-causing Staphylococcus aureus in New Zealand. Veterinary Microbiology 282, pages 109750.
Crossref
Sam Rowe, Fidele Kabera, Simon Dufour, Sandra Godden, Jean-Philippe Roy & Daryl Nydam. (2023) Selective dry-cow therapy can be implemented successfully in cows of all milk production levels. Journal of Dairy Science 106:3, pages 1953-1967.
Crossref
A.J. Bates, C. King, M. Dhar, C. Fitzpatrick & R.A. Laven. (2022) Retention of internal teat sealants over the dry period and their efficacy in reducing clinical and subclinical mastitis at calving. Journal of Dairy Science 105:6, pages 5449-5461.
Crossref
Anna Lavery, Aimee‐Louise Craig, Alan W. Gordon & Conrad P. Ferris. (2022) Impact of adopting non‐antibiotic dry‐cow therapy on the performance and udder health of dairy cows. Veterinary Record 190:12.
Crossref
Che‐Hsuan Huang, Ikuho Fujihara & Nobuyuki Kusaba. (2022) Effect of selective dry cow therapy on dry period intramammary infection dynamics and their association with management factors in Japan. Animal Science Journal 93:1.
Crossref
S.M. Rowe, D.V. Nydam, S.M. Godden, P.J. Gorden, A. Lago, A.K. Vasquez, E. Royster, J. Timmerman, M.J. Thomas & R.A. Lynch. (2021) Partial budget analysis of culture- and algorithm-guided selective dry cow therapy. Journal of Dairy Science 104:5, pages 5652-5664.
Crossref
R.E. Niemi, M. Hovinen, M.J. Vilar, H. Simojoki & P.J. Rajala-Schultz. (2021) Dry cow therapy and early lactation udder health problems—Associations and risk factors. Preventive Veterinary Medicine 188, pages 105268.
Crossref
S.M. Rowe, S.M. Godden, D.V. Nydam, P.J. Gorden, A. Lago, A.K. Vasquez, E. Royster, J. Timmerman & M.J. Thomas. (2020) Randomized controlled trial investigating the effect of 2 selective dry-cow therapy protocols on udder health and performance in the subsequent lactation. Journal of Dairy Science 103:7, pages 6493-6503.
Crossref
S.M. Rowe, S.M. Godden, D.V. Nydam, P.J. Gorden, A. Lago, A.K. Vasquez, E. Royster, J. Timmerman & M.J. Thomas. (2020) Randomized controlled non-inferiority trial investigating the effect of 2 selective dry-cow therapy protocols on antibiotic use at dry-off and dry period intramammary infection dynamics. Journal of Dairy Science 103:7, pages 6473-6492.
Crossref
S.M. Rowe, S.M. Godden, D.V. Nydam, A. Lago, A.K. Vasquez, E. Royster & J. Timmerman. (2020) Randomized equivalence study comparing the efficacy of 2 commercial internal teat sealants in dairy cows. Journal of Dairy Science 103:6, pages 5398-5413.
Crossref
Sam Rowe, Sandra Godden, Daryl V. Nydam, Patrick Gorden, Alfonso Lago, Amy Vasquez, Erin Royster, Jennifer Timmerman & Mark Thomas. (2020) Evaluation of rapid culture, a predictive algorithm, esterase somatic cell count and lactate dehydrogenase to detect intramammary infection in quarters of dairy cows at dry-off. Preventive Veterinary Medicine 179, pages 104982.
Crossref
Cristian Marlon de Magalhães Rodrigues Martins, Bruna Gomes Alves, Camylla Pedrosa Monteiro, Eduardo Souza Campos Pinheiro, Marcelo Arne Feckinghaus, Luiz Gustavo Paranhos & Marcos V. dos Santos. (2019) Noninferiority field trial for evaluation of efficacy of ciprofloxacin associated with internal teat sealant as dry-off protocol. Tropical Animal Health and Production 51:8, pages 2547-2557.
Crossref
Richard Laven. 2019. Veterinary Reproduction and Obstetrics. Veterinary Reproduction and Obstetrics 485 492 .
P.A. Ospina, N. Rota, C. Locatelli, L. Colombo, C. Pollera, G. Giacinti, V. Bronzo, A. Casula, A. Arpinelli, V. Brossette, M. Facchi, A. Patelli, A. Ruggeri, A. Barberio, G. Potenza, D.V. Nydam & P. Moroni. (2016) Randomized noninferiority field trial comparing 2 first-generation cephalosporin products at dry off in quarters receiving an internal teat sealant in dairy cows. Journal of Dairy Science 99:8, pages 6519-6531.
Crossref
A.J. Bates & I. Dohoo. (2016) Risk factors for peri-parturient farmer diagnosed mastitis in New Zealand dairy herds: findings from a retrospective cohort study. Preventive Veterinary Medicine 127, pages 70-76.
Crossref
Scott McDougall & Chris Compton. (2015) Effect of infusing an internal teat sealant into a gland infected with a major pathogen. Livestock 20:4, pages 194-200.
Crossref
M. Cameron, G.P. Keefe, J.-P. Roy, H. Stryhn, I.R. Dohoo & S.L. McKenna. (2015) Evaluation of selective dry cow treatment following on-farm culture: Milk yield and somatic cell count in the subsequent lactation. Journal of Dairy Science 98:4, pages 2427-2436.
Crossref
K.J. Freise, T.‐L. Lin, T.M. Fan, V. Recta & T.P. Clark. (2013) Evidence‐Based Medicine: The Design and Interpretation of Noninferiority Clinical Trials in Veterinary Medicine. Journal of Veterinary Internal Medicine 27:6, pages 1305-1317.
Crossref
Y.H. Schukken, M.J. Zurakowski, B.J. Rauch, B. Gross, L.L. Tikofsky & F.L. Welcome. (2013) Noninferiority trial comparing a first-generation cephalosporin with a third-generation cephalosporin in the treatment of nonsevere clinical mastitis in dairy cows. Journal of Dairy Science 96:10, pages 6763-6774.
Crossref
A.G. Arruda, S. Godden, P. Rapnicki, P. Gorden, L. Timms, S.S. Aly, T.W. Lehenbauer & J. Champagne. (2013) Randomized noninferiority clinical trial evaluating 3 commercial dry cow mastitis preparations: II. Cow health and performance in early lactation. Journal of Dairy Science 96:10, pages 6390-6399.
Crossref
A.G. Arruda, S. Godden, P. Rapnicki, P. Gorden, L. Timms, S.S. Aly, T.W. Lehenbauer & J. Champagne. (2013) Randomized noninferiority clinical trial evaluating 3 commercial dry cow mastitis preparations: I. Quarter-level outcomes. Journal of Dairy Science 96:7, pages 4419-4435.
Crossref
Päivi J Rajala-Schultz, Audrey H Torres & Fred J DeGraves. (2011) Milk yield and somatic cell count during the following lactation after selective treatment of cows at dry-off. Journal of Dairy Research 78:4, pages 489-499.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.