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Applied and Environmental Microbiology|October 6, 1998
Phenotypic and phylogenetic characterization of ruminal tannin-tolerant bacteriaK E Nelson, M L Thonney, T K Woolston, et al.Journal of Animal Science|February 3, 2004
A mechanistic model for predicting the nutrient requirements and feed biological values for sheepA Cannas, L O Tedeschi, D G Fox, et al.Journal of Dairy Science|May 1, 1997
Development and evaluation of equations for prediction of feed intake for lactating Holstein dairy cowsD K Roseler, D G Fox, L E Chase, et al.Cryobiology|February 1, 1991
Subfreezing volumetric behavior and stochastic modeling of intracellular ice formation in Drosophila melanogaster embryosR E Pitt, S P Myers, T T Lin, et al.Biorheology|January 1, 1985
Elastic constitutive laws for cow teat tissue undergoing finite deformationsR S Gates, N R Scott, R E Pitt, et al.Cryobiology|December 1, 1993
Osmometric behavior, hydraulic conductivity, and incidence of intracellular ice formation in bovine oocytes at different developmental stagesN A Ruffing, P L Steponkus, R E Pitt, et al.Cryobiology|October 1, 1989
Characterization of intracellular ice formation in Drosophila melanogaster embryosS P Myers, R E Pitt, D V Lynch, et al.Journal of Dairy Science|January 1, 1991
Effect of long-term bovine somatotropin (sometribove) treatment on nitrogen (protein) distribution in Jersey milkP S Kindstedt, A N Pell, J K Rippe, et al.Journal of Animal Science|January 1, 1995
Application of the Cornell Net Carbohydrate and Protein model for cattle consuming foragesD G Fox, M C Barry, R E Pitt, et al.Journal of Dairy Science|December 19, 2002
The effect of a ruminal nitrogen (N) deficiency in dairy cows: evaluation of the cornell net carbohydrate and protein system ruminal N deficiency adjustmentR Ruiz, L O Tedeschl, J C Marini, et al.Pageof 5