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Applied and Environmental Microbiology|November 1, 1993
Bacterial strains from human feces that reduce CO2 to acetic acidM J Wolin, T L MillerApplied and Environmental Microbiology|September 1, 1981
Fermentation by the human large intestine microbial community in an in vitro semicontinuous culture systemT L Miller, M J WolinApplied and Environmental Microbiology|January 1, 1983
Stability of Methanobrevibacter smithii populations in the microbial flora excreted from the human large bowelT L Miller, M J WolinJournal of Bacteriology|February 1, 1983
Oxidation of hydrogen and reduction of methanol to methane is the sole energy source for a methanogen isolated from human fecesT L Miller, M J WolinJournal of Dairy Science|June 22, 2001
Inhibition of growth of methane-producing bacteria of the ruminant forestomach by hydroxymethylglutaryl-SCoA reductase inhibitorsT L Miller, M J WolinApplied and Environmental Microbiology|November 1, 1995
Bioconversion of Cellulose to Acetate with Pure Cultures of Ruminococcus albus and a Hydrogen-Using AcetogenT L Miller, M J WolinArchives of Microbiology|March 1, 1985
Methanosphaera stadtmaniae gen. nov., sp. nov.: a species that forms methane by reducing methanol with hydrogenT L Miller, M J WolinThe American Journal of Clinical Nutrition|January 1, 1979
Fermentations by saccharolytic intestinal bacteriaT L Miller, M J WolinApplied and Environmental Microbiology|May 1, 1996
Pathways of acetate, propionate, and butyrate formation by the human fecal microbial floraT L Miller, M J WolinArchives of Microbiology|February 1, 1980
Molybdate and sulfide inhibit H2 and increase formate production from glucose by Ruminococcus albusM J Wolin, T L MillerPageof 16