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Journal of Animal Science|December 1, 1993
The effect of monensin supplementation on ruminal ammonia accumulation in vivo and the numbers of amino acid-fermenting bacteriaC M Yang, J B RussellGenetics|May 1, 1979
Analysis of the albino-locus region of the mouse. III. Time of death of prenatal lethalsL B Russell, G D RaymerInternational Journal of Health Services : Planning, Administration, Evaluation|January 1, 1981
Policies toward medical technology: an international reviewH D Banta, L B RussellApplied and Environmental Microbiology|March 1, 1996
An rRNA approach for assessing the role of obligate amino acid-fermenting bacteria in ruminal amino acid deaminationD O Krause, J B RussellJournal of Animal Science|May 1, 1991
Effect of monensin and a protonophore on protein degradation, peptide accumulation, and deamination by mixed ruminal microorganisms in vitroG J Chen, J B RussellApplied and Environmental Microbiology|March 21, 1998
Relationship between intracellular phosphate, proton motive force, and rate of nongrowth energy dissipation (energy spilling) in Streptococcus bovis JB1D R Bond, J B RussellApplied and Environmental Microbiology|July 1, 1984
Effect of carbon monoxide on fermentation of fiber, starch, and amino acids by mixed rumen microorganisms in vitroJ B Russell, J L JeraciJournal of Dairy Science|May 1, 1984
Effect of carbon-4 and carbon-5 volatile fatty acids on growth of mixed rumen bacteria in vitroJ B Russell, C J SniffenFEMS Microbiology Letters|October 15, 1994
Alternative strategies of 2-deoxyglucose resistance and low affinity glucose transport in the ruminal bacteria, Streptococcus bovis and Selenomonas ruminantiumG M Cook, J B RussellApplied and Environmental Microbiology|November 1, 1988
Fermentation of peptides and amino acids by a monensin-sensitive ruminal PeptostreptococcusG J Chen, J B RussellPageof 385