Blood and milk metabolites of Holstein dairy cattle for the development of objective indicators of a subacute ruminal acidosis
暂无分享,去创建一个
Y. Choi | S. Lee | Hyun Sang Kim | J. Eom | S. S. Lee | E. T. Kim | Sung-Sill Lee | S. Jo
[1] Y. Choi,et al. Comparison of metabolites in rumen fluid, urine, and feces of dairy cow from subacute ruminal acidosis model measured by proton nuclear magnetic resonance spectroscopy , 2022, Animal bioscience.
[2] Y. Choi,et al. Metabolomics comparison of rumen fluid and milk in dairy cattle using proton nuclear magnetic resonance spectroscopy , 2020, Asian-Australasian journal of animal sciences.
[3] E. Humer,et al. Innate immunity and metabolomic responses in dairy cows challenged intramammarily with lipopolysaccharide after subacute ruminal acidosis. , 2018, Animal : an international journal of animal bioscience.
[4] Shengli Li,et al. Effect of Dietary Forage to Concentrate Ratios on Dynamic Profile Changes and Interactions of Ruminal Microbiota and Metabolites in Holstein Heifers , 2017, Front. Microbiol..
[5] Souichiro Kato,et al. Methanogenic degradation of lignin-derived monoaromatic compounds by microbial enrichments from rice paddy field soil , 2015, Scientific Reports.
[6] E. Trevisi,et al. Experimental acute rumen acidosis in sheep: consequences on clinical, rumen, and gastrointestinal permeability conditions and blood chemistry. , 2014, Journal of animal science.
[7] W. Yao,et al. Effect of Crude Protein Levels in Concentrate and Concentrate Levels in Diet on In vitro Fermentation , 2014, Asian-Australasian journal of animal sciences.
[8] yongqing guo,et al. Changes in ruminal fermentation, milk performance and milk fatty acid profile in dairy cows with subacute ruminal acidosis and its regulation with pelleted beet pulp , 2013, Archives of animal nutrition.
[9] E. Khafipour,et al. Evaluation of diagnostic measures for subacute ruminal acidosis in dairy cows , 2012, Canadian Journal of Animal Science.
[10] R. Lamanna,et al. Identification of milk mixtures by 1H NMR profiling , 2011, Magnetic resonance in chemistry : MRC.
[11] J. Alcorn,et al. LPS-induced inflammation downregulates mammary gland glucose, fatty acid, and L-carnitine transporter expression at different lactation stages. , 2010, Research in veterinary science.
[12] D. Jammalamadaka,et al. Ethylene Glycol, Methanol and Isopropyl Alcohol Intoxication , 2010, The American journal of the medical sciences.
[13] K. Schwartzkopf-Genswein,et al. Repeated ruminal acidosis challenges in lactating dairy cows at high and low risk for developing acidosis: feeding, ruminating, and lying behavior. , 2009, Journal of dairy science.
[14] M. Wanapat,et al. Effect of Level of Crude Protein and Use of Cottonseed Meal in Diets Containing Cassava Chips and Rice Straw for Lactating Dairy Cows , 2005 .
[15] A. D. Kennedy,et al. Subacute ruminal acidosis induces ruminal lipopolysaccharide endotoxin release and triggers an inflammatory response. , 2005, Journal of dairy science.
[16] I. Wilson,et al. Understanding 'Global' Systems Biology: Metabonomics and the Continuum of Metabolism , 2003, Nature Reviews Drug Discovery.
[17] R F Veerkamp,et al. Genetic relationships among body condition score, body weight, milk yield, and fertility in dairy cows. , 2003, Journal of dairy science.
[18] J. Cant,et al. Milk synthetic response of the bovine mammary gland to an increase in the local concentration of arterial glucose. , 2002, Journal of dairy science.
[19] J. Russell,et al. Factors That Alter Rumen Microbial Ecology , 2001, Science.
[20] B. Lindholm,et al. Calculation of the Protein Equivalent of Total Nitrogen Appearance from Urea Appearance. Which Formulas Should be Used? , 1998, Peritoneal dialysis international : journal of the International Society for Peritoneal Dialysis.
[21] J. C. Preez,et al. Process parameters and environmental factors affecting d-xylose fermentation by yeasts , 1994 .
[22] M. Buse,et al. Leucine and isoleucine activate skeletal muscle branched-chain alpha-keto acid dehydrogenase in vivo. , 1986, The American journal of physiology.
[23] J. Bremer. Carnitine--metabolism and functions. , 1983, Physiological reviews.
[24] A. D. Mitchell,et al. Metabolism of betaine in the ruminant. , 1979, Journal of animal science.
[25] D. Tyler,et al. Ethylene glycol toxicosis in cattle. , 1979, The Cornell veterinarian.
[26] A. Burlingame,et al. Deuterium and carbon-13 tracer studies of ethanol metabolism in the rat by 2H, 1H-decoupled 13C nuclear magnetic resonance. , 1974, Biochemical and biophysical research communications.
[27] Y. G. Deosthale,et al. Varietal differences in protein, lysine, and leucine content of grain sorghum. , 1970 .
[28] E. Khafipour,et al. Population structure of rumen Escherichia coli associated with subacute ruminal acidosis (SARA) in dairy cattle. , 2011, Journal of dairy science.
[29] Kenneth Helrick,et al. Official methods of analysis , 1990 .
[30] L. G. Ensminger. The Association of Official Analytical Chemists , 1976 .