Effects of dietary branched-chain amino acid supplementation on serum and milk metabolome profiles in dairy cows during early lactation
Xu W*., Kenéz Á., Mann S., Overton T.R.,Wakshlag J.J., Nydam D.V., Feng T., and Leal Yepes F.A. . Effects of dietary branched-chain amino acids on serum and milk metabolome profiles in dairy cows during early lactation J Dairy Sci. 2022, 0(0): 21892.
— 2022cited by 0position: selected
Leal Yepes F.A. , Mann S., Overton T.R, Behling-Kelly E., Granados G.E., Nydam D.V. and Wakshlag J. J. Hepatic effects of rumen-protected branched-chain amino acid with or without propylene glycol supplementation in dairy cows during early lactation J Dairy Sci. 2021 (9):10324-10337.
— 2021cited by 0position: selected
Leal Yepes F. A. , Mann S., Martens E. M., Puerto S, Gómez M.I., McArt J.A.A. Blood β-hydroxybutyrate concentrations and early lactation management strategies on pasture-based dairy farms in Colombia. Prev. Vet. Med 2020, 174:104855.
— 2020cited by 0position: selected
Leal Yepes F.A , Nydam D.V., Mann S., Caixeta, L., McArt, J.A.A., Wakshlag J.J, Overton T.R., Huson H. Longitudinal phenotypes improve genotype association for hyperketonemia in dairy cattle. Animals. 2019 (9):1059.
— 2019cited by 0position: selected
Hesse A., Ospina P., Wieland M., Leal Yepes F. A. , Nguyen B., Heuwieser W. Short Communication: Microlearning courses are effective at increasing the feeling of confidence and accuracy in the work of dairy personnel. J Dairy Sci. 2019 (10):9505-9511.
— 2019cited by 0position: selected
Leal Yepes F.A. , Mann S., Overton T.R., Wakshlag J. J., M. Ryan C., Bristol L. S., Granados G. and Nydam D.V. Effect of rumen protected branched-chain amino acid supplementation on production and energy related metabolites during the first 35 DIM in Holstein dairy cows. J Dairy Sci. 2019 (6):5657-5
— 2019cited by 0position: selected
Newman, A. W., Miller, A. Leal Yepes, F. A. , Bitsko, E., Nydam, D.V. and Mann, S. The effect of the transition period and postpartum body weight loss on macrophage infiltrates in bovine subcutaneous adipose tissue. J Dairy Sci (2019) 102 (2): 1693-1701.
— 2019cited by 0position: selected
Miles A.M., McArt J.A.A., Leal Yepes F.A. , Stambuk C.R., Virkler P.D., and Huson H.J. Udder and teat conformational risk factors for elevated somatic cell count and clinical mastitis in New York Holsteins. Prev Vet Med. (2019) 163, 7-13.
— 2019cited by 0position: selected
Mann S., Sipka A., Leal Yepes F.A. , Nydam D.V., Overton T.R., Wakshlag J.J. Nutrient sensing kinase signaling in bovine immune cells is altered during nutrient deficit: a possible role in transition cow inflammatory response. J Dairy Sci. (2018) 101 (10): 9360-9370.
— 2018cited by 0position: selected
Leal Yepes F.A. , Nydam D.V., Heuwieser W., Mann S.Technical Note: Evaluation of point-of-care β-hydroxybutyrate meters in bovine plasma. J Dairy Sci. (2018) 101 (7): 6455–6461.
— 2018cited by 0position: selected
Fry M., Yao B., Rios C., Mann S., Won C.G., McArt J.A., Nydam D.V., Leal Yepes F.A. , Viesselmann L., Geick A., Goldin K., Behling-Kelly E. Diagnostic performance of cytology of hepatic lipid content in dairy cattle. J Dairy Sci. (2018) 101 (2): 1379-1387.
— 2018cited by 0position: selected
Mann S., Leal Yepes F.A. , Wakshlag J.J., Behling-Kelly E., McArt J.A.A. The effect of different treatments for early lactation hyperketonemia on liver triglycerides, glycogen, and expression of key metabolic enzymes in dairy cattle. J Dairy Sci. (2018) 101 (2):1626-1637.
— 2018cited by 0position: selected
Mann S., Urh C., Sauerwein H., Wakshlag J.J., Leal Yepes F.A. , Overton T.R., and Nydam D.V. Short communication: The association of adiponectin and leptin concentrations with prepartum dietary energy supply, parity, body condition, and hyperketonemia in transition dairy cows J Dairy Sci. (2018) 101
— 2018cited by 0position: selected
Mann S., Leal Yepes F.A. , Behling-Kelly E., McArt J.A.A. The effect of different treatments for early lactation hyperketonemia on blood ß-hydroxybutyrate, plasma NEFA, glucose, insulin, glucagon in dairy cattle. J Dairy Sci. (2017) 100 (8): 6470-6482.
— 2017cited by 0position: selected
Insulin signaling, inflammation, and lipolysis in subcutaneous adipose tissue of transition dairy cows either overfed energy during the prepartum period or fed a controlled-energy diet
Mann S., Abuelo A., Nydam D.V., Leal Yepes F.A. , Overton T.R., Wakshlag J.J. Insulin signaling, inflammation, and lipolysis in subcutaneous adipose tissue of transition dairy cows either overfed energy during the prepartum period or fed a controlled-energy diet. J Dairy Sci. (2016) 99 (8):6737-52.
— 2016cited by 0position: selected
Mann S., Leal Yepes F. A. , Overton T.R., Lock A.L., SV Lamb, J.J. Wakshlag, Nydam D.V. Effect of dry period dietary energy level in dairy cattle on volume, concentrations of immunoglobulin G, insulin, and fatty acid composition of colostrum. J Dairy Sci. (2016) 99 (2):1515-26.
— 2016cited by 0position: selected
Mann S., Leal Yepes F. A. , Duplessis M., Wakshlag J. J., Overton T. R., Cummings B. P., and Nydam D. V. Dry period plane of energy: Effects on glucose tolerance in transition dairy cows. J. Dairy Sci. (2016) 99 (1):701-17.
— 2016cited by 0position: selected
Dry period plane of energy: Effects on feed intake, energy balance, milk production, and composition in transition dairy cows
Effect of dry period dietary energy level in dairy cattle on volume, concentrations of immunoglobulin G, insulin, and fatty acid composition of colostrum
Dry period plane of energy: Effects on glucose tolerance in transition dairy cows
Mann S., Leal Yepes F. A. , Overton T. R., Wakshlag J. J., Lock A. L., Ryan C. M., and Nydam D.V. Dry period plane of energy: Effects on feed intake, energy balance, milk production, and composition in transition dairy cows. J. Dairy Sci. (2015) 98 (5):3366-82.
— 2015cited by 0position: selected