Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Wood, T.A.
Ramos-Morales, E.
McKain, N.
Shen, X.
Atasoglu, C.
and
Wallace, R.J.
2010.
Chrysanthemum coronarium as a modulator of fatty acid biohydrogenation in the rumen.
Animal Feed Science and Technology,
Vol. 161,
Issue. 1-2,
p.
28.
Shen, Xiangzhen
Dannenberger, Dirk
Nuernberg, Karin
Nuernberg, Gerd
and
Zhao, Ruqian
2011.
Trans‐18:1 and CLA Isomers in Rumen and Duodenal Digesta of Bulls Fed n‐3 and n‐6 PUFA‐Based Diets.
Lipids,
Vol. 46,
Issue. 9,
p.
831.
Dugan, Michael
Aldai, Noelia
Aalhus, Jennifer
Rolland, David
and
Kramer, John
2011.
Review:Trans-forming beef to provide healthier fatty acid profiles.
Canadian Journal of Animal Science,
Vol. 91,
Issue. 4,
p.
545.
Jayanegara, Anuraga
Kreuzer, Michael
Wina, Elizabeth
and
Leiber, Florian
2011.
Significance of phenolic compounds in tropical forages for the ruminal bypass of polyunsaturated fatty acids and the appearance of biohydrogenation intermediates as examined in vitro.
Animal Production Science,
Vol. 51,
Issue. 12,
p.
1127.
Doreau, M.
Bauchart, D.
and
Chilliard, Y.
2011.
Enhancing fatty acid composition of milk and meat through animal feeding.
Animal Production Science,
Vol. 51,
Issue. 1,
p.
19.
Zened, A.
Troegeler-Meynadier, A.
Nicot, M.C.
Combes, S.
Cauquil, L.
Farizon, Y.
and
Enjalbert, F.
2011.
Starch and oil in the donor cow diet and starch in substrate differently affect the in vitro ruminal biohydrogenation of linoleic and linolenic acids.
Journal of Dairy Science,
Vol. 94,
Issue. 11,
p.
5634.
Huws, Sharon A.
Kim, Eun J.
Lee, Michael R. F.
Scott, Mark B.
Tweed, John K. S.
Pinloche, Eric
Wallace, R. John
and
Scollan, Nigel D.
2011.
As yet uncultured bacteria phylogenetically classified as Prevotella, Lachnospiraceae incertae sedis and unclassified Bacteroidales, Clostridiales and Ruminococcaceae may play a predominant role in ruminal biohydrogenation.
Environmental Microbiology,
Vol. 13,
Issue. 6,
p.
1500.
Shingfield, K. J.
Lee, M. R. F.
Humphries, D. J.
Scollan, N. D.
Toivonen, V.
Beever, D. E.
and
Reynolds, C. K.
2011.
Effect of linseed oil and fish oil alone or as an equal mixture on ruminal fatty acid metabolism in growing steers fed maize silage-based diets1.
Journal of Animal Science,
Vol. 89,
Issue. 11,
p.
3728.
Bhatt, R.S.
Soren, N.M.
Tripathi, M.K.
and
Karim, S.A.
2011.
Effects of different levels of coconut oil supplementation on performance, digestibility, rumen fermentation and carcass traits of Malpura lambs.
Animal Feed Science and Technology,
Vol. 164,
Issue. 1-2,
p.
29.
Laverroux, S.
Glasser, F.
Gillet, M.
Joly, C.
and
Doreau, M.
2011.
Isomerization of Vaccenic Acid to cis and trans C18:1 Isomers During Biohydrogenation by Rumen Microbes.
Lipids,
Vol. 46,
Issue. 9,
p.
843.
Loor, Juan J.
Bionaz, Massimo
and
Invernizzi, Guido
2011.
Systems Biology and Livestock Science.
p.
215.
Toral, P.G.
Belenguer, A.
Shingfield, K.J.
Hervás, G.
Toivonen, V.
and
Frutos, P.
2012.
Fatty acid composition and bacterial community changes in the rumen fluid of lactating sheep fed sunflower oil plus incremental levels of marine algae.
Journal of Dairy Science,
Vol. 95,
Issue. 2,
p.
794.
Gorissen, Lara
Raes, Katleen
De Smet, Stefaan
De Vuyst, Luc
and
Leroy, Frédéric
2012.
Microbial production of conjugated linoleic and linolenic acids in fermented foods: Technological bottlenecks.
European Journal of Lipid Science and Technology,
Vol. 114,
Issue. 4,
p.
486.
Vasta, Valentina
and
Bessa, Rui J. B.
2012.
Dietary Phytochemicals and Microbes.
p.
263.
Ghazal, S.
Berthelot, V.
Friggens, N.C.
and
Schmidely, P.
2012.
Influence of a supplement containing conjugated linoleic acid on dairy performance, milk fatty acid composition, and adipose tissue reactivity to lipolytic challenge in mid-lactation goats.
Journal of Dairy Science,
Vol. 95,
Issue. 12,
p.
7308.
Mapiye, C.
Aldai, N.
Turner, T.D.
Aalhus, J.L.
Rolland, D.C.
Kramer, J.K.G.
and
Dugan, M.E.R.
2012.
The labile lipid fraction of meat: From perceived disease and waste to health and opportunity.
Meat Science,
Vol. 92,
Issue. 3,
p.
210.
Pestana, José M
Costa, Ana SH
Martins, Susana V
Alfaia, Cristina M
Alves, Susana P
Lopes, Paula A
Bessa, Rui JB
and
Prates, José AM
2012.
Effect of slaughter season and muscle type on the fatty acid composition, including conjugated linoleic acid isomers, and nutritional value of intramuscular fat in organic beef.
Journal of the Science of Food and Agriculture,
Vol. 92,
Issue. 12,
p.
2428.
Morales, E. Ramos
Mata Espinosa, M. A.
McKain, N.
and
Wallace, R. J.
2012.
Ricinoleic acid inhibits methanogenesis and fatty acid biohydrogenation in ruminal digesta from sheep and in bacterial cultures1,2.
Journal of Animal Science,
Vol. 90,
Issue. 13,
p.
4943.
Humada, M.J.
Serrano, E.
Sañudo, C.
Rolland, D.C.
and
Dugan, M.E.R.
2012.
Production system and slaughter age effects on intramuscular fatty acids from young Tudanca bulls.
Meat Science,
Vol. 90,
Issue. 3,
p.
678.
Jayanegara, A.
Kreuzer, M.
and
Leiber, F.
2012.
Ruminal disappearance of polyunsaturated fatty acids and appearance of biohydrogenation products when incubating linseed oil with alpine forage plant species in vitro.
Livestock Science,
Vol. 147,
Issue. 1-3,
p.
104.