Diving deep into liver abscess development
The combination of genomic and metabolic data from both bacteria and animals will provide insights into how liver abscesses develop, help identify vaccine or drug development targets, and potentially contribute to better diagnostic techniques.
Started: 2022 | Completed: 2026
Evaluating antimicrobial peptides for animal pathogens and forecasting resistance
This project is early-stage research, which if successful, outlines a methodology to discover and optimize AMPs to specific bacteria or pathogens of concern to the beef industry.
Started: 2022 | Completed: 2025
Exploring options to manage Mycoplasma bovis
While this project is very early stage drug discovery research, and will certainly not eliminate M. bovis infections immediately, it is exploring a new approach that potentially can improve the management of this bacteria in the future.
Started: 2021 | Completed: 2025
Improving pain control during band castration – Part 2
A total of 96 calves were castrated either at one- or five-months of age. At each age, calves were divided into three castration protocols: regular bands with no pain control, regular bands with anesthetic injected into the scrotum, and the new bands with slow-release anesthetic.
Started: 2022 | Completed: 2024
Feeding strategies to reduce liver abscesses
Liver abscess rates in smaller pen research studies are often much higher than we see in commercial operations. While it’s not entirely clear why this occurs, it does provide an opportunity to accurately assess the effectiveness of different mitigation strategies at a lower cost than a very large commercial scale trial.
Completed: 2023
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