- Allen, M. S., Bradford, B. J., & Oba, M. (2009). Board-invited review: The hepatic oxidation theory of the control of feed intake and its application to ruminants. Journal of Animal Science, 87 (10), 3317-3334.
- (1990). Official Methods of Analysis. 15th ed. Association of Official Analytical Chemists, Arlington, VA.
- Bauman, D. E., Perfield, J. W., Harvatine, K. J., & Baumgard, L. H. (2008). Regulation of fat synthesis by conjugated linoleic acid: lactation and the ruminant model. The Journal of Nutrition, 138 (2), 403-409.
- Bauman, D. E., & Griinari, J. M. (2003). Nutritional regulation of milk fat synthesis. Annual Review of Nutrition, 23 (1), 203-227.
- Bauman, D. E., Harvatine, K. J., & Lock, A. L. (2011). Nutrigenomics, rumen-derived bioactive fatty acids, and the regulation of milk fat synthesis. Annual Review of Nutrition, 31, 299-319..
- Bradford, B. J., & Mullins, C. R. (2012). Invited review: Strategies for promoting productivity and health of dairy cattle by feeding nonforage fiber sources. Journal of Dairy Science, 95 (9), 4735-4746.
- Castaneda-Gutierrez, E., Overton, T. R., Butler, W. R., & Bauman, D. E. (2005). Dietary supplements of two doses of calcium salts of conjugated linoleic acid during the transition period and early lactation. Journal of Dairy Science, 88 (3), 1078-1089.
- Chandler, T. L., Fugate, R. T., Jendza, J. A., Troescher, A., & White, H. M. (2017). Conjugated linoleic acid supplementation during the transition period increased milk production in primiparous and multiparous dairy cows. Animal Feed Science and Technology, 224, 90-103.
- Gaines, W.L., and Overman, O. R. (1938). Interrelation of milk fat, milk protein and milk energy yield. Journal of Dairy. 21:261–271.
- Garverick, H. A., Harris, M. N., Vogel-Bluel, R., Sampson, J. D., Bader, J., Lamberson, W. R., ... & Youngquist, R. S. (2013). Concentrations of nonesterified fatty acids and glucose in blood of periparturient dairy cows are indicative of pregnancy success at first insemination. Journal of Dairy Science,96 (1), 181-188.
- Hernandez-Urdaneta, A., Coppock, C. E., McDowell, R. E., Gianola, D., & Smith, N. E. (1976). Changes in forage-concentrate ratio of complete feeds for dairy cows. Journal of Dairy Science,59 (4), 695-707.
- Holt, M. S., Williams, C. M., Dschaak, C. M., Eun, J. S., & Young, A. J. (2010). Effects of corn silage hybrids and dietary nonforage fiber sources on feed intake, digestibility, ruminal fermentation, and productive performance of lactating Holstein dairy cows. Journal of Dairy Science,93 (11), 5397-5407.
- Hötger, K., Hammon, H. M., Weber, C., Görs, S., Tröscher, A., Bruckmaier, R. M., & Metges, C. C. (2013). Supplementation of conjugated linoleic acid in dairy cows reduces endogenous glucose production during early lactation. Journal of Dairy Science,96 (4), 2258-2270.
- Hutchinson, I. A., Hennessy, A. A., Dewhurst, R. J., Evans, A. C. O., Lonergan, P., & Butler, S. T. (2012). The effect of strategic supplementation with trans-10, cis-12 conjugated linoleic acid on the milk production, estrous cycle characteristics, and reproductive performance of lactating dairy cattle. Journal of Dairy Science,95 (5), 2442-2451.
- Kay, J. K., Roche, J. R., Moore, C. E., & Baumgard, L. H. (2006). Effects of dietary conjugated linoleic acid on production and metabolic parameters in transition dairy cows grazing fresh pasture. Journal of Dairy Research, 73 (3), 367-377.
- Kokkonen, T., Taponen, J., Anttila, T., Syrjälä-Qvist, L., Delavaud, C., Chilliard, Y., ... & Tesfa, A. T. (2005). Effect of body fatness and glucogenic supplement on lipid and protein mobilization and plasma leptin in dairy cows. Journal of Dairy Science, 88 (3), 1127-1141.
- Littell, R. C., Milliken, G. A., Stroup, W. W., Wolfinger, R. D., & Schabenberger, O. (2006). SAS for Mixed Models. 2nd. Cary, NC: SAS Institute Inc..
- Miron, J., Adin, G., Solomon, R., Nikbachat, M., Zenou, A., Yosef, E., ... & Mabjeesh, S. J. (2010). Effects of feeding cows in early lactation with soy hulls as partial forage replacement on heat production, retained energy and performance. Animal Feed Science and Technology, 155 (1), 9-17.
- Naderi, N., Ghorbani, G. R., Sadeghi-Sefidmazgi, A., Nasrollahi, S. M., & Beauchemin, K. A. (2016). Shredded beet pulp substituted for corn silage in diets fed to dairy cows under ambient heat stress: Feed intake, total-tract digestibility, plasma metabolites, and milk production. Journal of Dairy Science, 99 (11), 8847-8857.
- National Research Council (2001). Nutrient Requirements of Dairy Cattle, 7th ed., Washington, DC: National Academy Press.
- Odens, L. J., Burgos, R., Innocenti, M., VanBaale, M. J., & Baumgard, L. H. (2007). Effects of varying doses of supplemental conjugated linoleic acid on production and energetic variables during the transition period. Journal of Dairy Science, 90 (1), 293-305.
- Pappritz, J., Meyer, U., Kramer, R., Weber, E. M., Jahreis, G., Rehage, J., Flachowsky G., & Dänicke, S. (2011). Effects of long-term supplementation of dairy cow diets with rumen-protected conjugated linoleic acids (CLA) on performance, metabolic parameters and fatty acid profile in milk fat. Archives of Animal Nutrition,65 (2), 89-107.
- Piantoni, P., Lock, A. L., & Allen, M. S. (2014). Saturated fat supplementation interacts with dietary forage NDF content during the immediate postpartum in Holstein cows: Energy balance and metabolism. Journal of Dairy Science, 98, 3323-3334.
- Piantoni, P., Lock, A. L., & Allen, M. S. (2015). Saturated fat supplementation interacts with dietary forage neutral detergent fiber content during the immediate postpartum and carryover periods in Holstein cows: Production responses and digestibility of nutrients. Journal of Dairy Science, 98 (5), 3309-3322.
- Rabelo, E., Rezende, R. L., Bertics, S. J., & Grummer, R. R. (2003). Effects of transition diets varying in dietary energy density on lactation performance and ruminal parameters of dairy cows. Journal of Dairy Science,86 (3), 916-925.
- Schäfers, S., Von Soosten, D., Meyer, U., Drong, C., Frahm, J., Kluess, J., Raschka C., Rehage J., Tröscher A., Pelletier W., & Dänicke, S. (2017). Influence of conjugated linoleic acid and vitamin E on performance, energy metabolism, and change of fat depot mass in transitional dairy cows. Journal of Dairy Science, 100 (4), 3193-3208.
- Schlegel, G., Ringseis, R., Windisch, W., Schwarz, F. J., & Eder, K. (2012). Effects of a rumen-protected mixture of conjugated linoleic acids on hepatic expression of genes involved in lipid metabolism in dairy cows. Journal of Dairy Science,95 (7), 3905-3918.
- Undersander, D., Mertens, D. R., & Thiex, N. (1993). Forage analyses. Information Systems Division, National Agricultural Library (United States of America) NAL/USDA, 10301.
- Van Soest, P. V., Robertson, J. B., & Lewis, B. (1991). Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. Journal of Dairy Science, 74 (10), 3583-3597.
- Voigt, J., Gaafar, K., Kanitz, W., Precht, D., Becker, F., Schneider, Spitschak, M., Schönhusen, U., Junghans, P., Aschenbach, J.R, & Gäbel, G. (2005). Utilization of glucose and long-chain fatty acids in lactating dairy cows fed a fat-enriched diet. Deutsche Tierarztliche Wochenschrift, 112 (11), 423-425. (In German).
- Von Soosten, D., Meyer, U., Weber, E. M., Rehage, J., Flachowsky, G., & Dänicke, S. (2011). Effect of trans-10, cis-12 conjugated linoleic acid on performance, adipose depot weights, and liver weight in early-lactation dairy cows. Journal of Dairy Science, 94 (6), 2859-2870.
- Von Soosten, D., Meyer, U., Piechotta, M., Flachowsky, G., & Dänicke, S. (2012). Effect of conjugated linoleic acid supplementation on body composition, body fat mobilization, protein accretion, and energy utilization in early lactation dairy cows. Journal of Dairy Science, 95 (3), 1222-1239.
- Wildman, E. E., Jones, G. M., Wagner, P. E., Boman, R. L., Troutt Jr, H. F., & Lesch, T. N. (1982). A dairy cow body condition scoring system and its relationship to selected production characteristics. Journal of Dairy Science, 65 (3), 495-501.
|