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Applied and Environmental Microbiology|December 1, 1988
Effects of the ionophores monensin and tetronasin on simulated development of ruminal lactic acidosis in vitroC J Newbold, R J WallaceAnimal : an International Journal of Animal Bioscience|February 7, 2020
Review: Ruminal microbiome and microbial metabolome: effects of diet and ruminant hostC J Newbold, E Ramos-MoralesThe Journal of Applied Bacteriology|April 1, 1996
Inhibition by 1,10-phenanthroline of the breakdown of peptides by rumen bacteria and protozoaR J Wallace, C J Newbold, N McKainApplied and Environmental Microbiology|May 26, 2001
Incorporation of [(15)N] ammonia by the cellulolytic ruminal bacteria Fibrobacter succinogenes BL2, Ruminococcus albus SY3, and Ruminococcus flavefaciens 17C Atasoglu, C J Newbold, R J WallaceApplied and Environmental Microbiology|June 1, 1994
Influence of Yucca shidigera extract on ruminal ammonia concentrations and ruminal microorganismsR J Wallace, L Arthaud, C J NewboldLetters in Applied Microbiology|October 1, 1995
The importance of methanogens associated with ciliate protozoa in ruminal methane production in vitroC J Newbold, B Lassalas, J P JouanyJournal of Animal Science|April 1, 1990
Effects of the ionophore tetronasin on nitrogen metabolism by ruminal microorganisms in vitroC J Newbold, R J Wallace, N McKainJournal of Applied Microbiology|July 23, 1998
Influence of dietary acetylated peptides on fermentation and peptidase activities in the sheep rumenM W Witt, C J Newbold, R J WallaceThe British Journal of Nutrition|August 1, 1996
Mode of action of the yeast Saccharomyces cerevisiae as a feed additive for ruminantsC J Newbold, R J Wallace, F M McIntoshThe Journal of Applied Bacteriology|August 1, 1993
The effect of tetronasin and monensin on fermentation, microbial numbers and the development of ionophore-resistant bacteria in the rumenC J Newbold, R J Wallace, N D WalkerPageof 7