Author:
Nouws J. F. M.,Breukink H. J.,Binkhorse G. J.,Lohuis J.,van Lith P.,Mevius D. J.,Vree T. B.
Cited by
26 articles.
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1. A physiologically based pharmacokinetic (PBPK) model exploring the blood-milk barrier in lactating species - A case study with oxytetracycline administered to dairy cows and goats;Food and Chemical Toxicology;2022-03
2. Pharmacological studies on tetracycline and tetracycline nanoemulsion formulas. Mohamed S. Saber1, Aziza M. Amer2, Shymaa A. ElBadawy2, Mohamed M. Amer3, 1. PhD student in Pharmacol. , Vet. Service Division, Ministry of Defense, Egypt.. 2. 2. Dept. of Pharmacol., Facult. Vet. Med., Cairo University, Giza, Egypt. 3. 3. Dept. of Poult. Dis., Facult. Vet. Med., Cairo University, P.O. 12211, Giza, Egypt.;Egyptian Journal of Veterinary Sciences;2019-01-03
3. Cross-sectional study of antimicrobials used for surgical prophylaxis by bovine veterinary practitioners in Australia;Veterinary Record;2017-10
4. Transport of oxytetracycline, chlortetracycline, and ivermectin in surface runoff from irrigated pasture;Journal of Environmental Science and Health, Part B;2017-09-02
5. Pharmacokinetic-pharmacodynamic integration and modelling of oxytetracycline for the calf pathogensMannheimia haemolyticaandPasteurella multocida;Journal of Veterinary Pharmacology and Therapeutics;2017-07-23