Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Tejido, M.L.
Ranilla, M.J.
and
Carro, M.D.
2002.
In vitro digestibility of forages as influenced by source of inoculum (sheep rumen versus Rusitec fermenters) and diet of the donor sheep.
Animal Feed Science and Technology,
Vol. 97,
Issue. 1-2,
p.
41.
Mulligan, F.J
Caffrey, P.J
Rath, M
Callan, J.J
Brophy, P.O
and
O’Mara, F.P
2002.
An investigation of feeding level effects on digestibility in cattle for diets based on grass silage and high fibre concentrates at two forage:concentrate ratios.
Livestock Production Science,
Vol. 77,
Issue. 2-3,
p.
311.
Carro, M. D.
and
Ranilla, M. J.
2003.
Influence of different concentrations of disodium fumarate on methane production and fermentation of concentrate feeds by rumen micro-organisms invitro.
British Journal of Nutrition,
Vol. 90,
Issue. 3,
p.
617.
Castrillo, C.
Barrios-Urdaneta, A.
Fondevila, M.
Balcells, J.
and
Guada, J. A.
2004.
Effects of substitution of barley with citrus pulp on diet digestibility and intake and production of lactating ewes offered mixed diets based on ammonia-treated barley straw.
Animal Science,
Vol. 78,
Issue. 1,
p.
129.
Imamidoost, R.
and
Cant, J. P.
2005.
Non-steady-state modeling of effects of timing and level of concentrate supplementation on ruminal pH and forage intake in high-producing, grazing ewes1.
Journal of Animal Science,
Vol. 83,
Issue. 5,
p.
1102.
Lee, M. R. F.
Tweed, J. K. S.
Dewhurst, R. J.
and
Scollan, N. D.
2006.
Effect of forage: concentrate ratio on ruminal metabolism and duodenal flow of fatty acids in beef steers.
Animal Science,
Vol. 82,
Issue. 1,
p.
31.
Moorby, J.M.
Dewhurst, R.J.
Evans, R.T.
and
Danelón, J.L.
2006.
Effects of Dairy Cow Diet Forage Proportion on Duodenal Nutrient Supply and Urinary Purine Derivative Excretion.
Journal of Dairy Science,
Vol. 89,
Issue. 9,
p.
3552.
Bartocci, S.
and
Terramoccia, S.
2006.
Effect of NDF/undegradable crude protein ratio on in vivo digestibility, particle passage rate in riverine buffaloes compared with sheep.
Livestock Science,
Vol. 104,
Issue. 1-2,
p.
38.
Kamel, C.
Greathead, H.M.R.
Tejido, M.L.
Ranilla, M.J.
and
Carro, M.D.
2008.
Effects of allicin and diallyl disulfide on in vitro rumen fermentation of a mixed diet.
Animal Feed Science and Technology,
Vol. 145,
Issue. 1-4,
p.
351.
Kaur, R.
Nandra, K.S.
Garcia, S.C.
Fulkerson, W.J.
and
Horadagoda, A.
2008.
Efficiency of utilisation of different diets with contrasting forages and concentrate when fed to sheep in a discontinuous feeding pattern.
Livestock Science,
Vol. 119,
Issue. 1-3,
p.
77.
Giraldo, L. A.
Tejido, M. L.
Ranilla, M. J.
Ramos, S.
and
Carro, M. D.
2008.
Influence of direct-fed fibrolytic enzymes on diet digestibility and ruminal activity in sheep fed a grass hay-based diet1.
Journal of Animal Science,
Vol. 86,
Issue. 7,
p.
1617.
Dutta, T.K.
Agnihotri, M.K.
Sahoo, P.K.
Rajkumar, V.
and
Das, Arun K.
2009.
Effect of different protein–energy ratio in pulse by-products and residue based pelleted feeds on growth, rumen fermentation, carcass and sausage quality in Barbari kids.
Small Ruminant Research,
Vol. 85,
Issue. 1,
p.
34.
Jetana, T.
Suthikrai, W.
Usawang, S.
Vongpipatana, C.
Sophon, S.
and
Liang, J. B.
2009.
The effects of concentrate added to pineapple (Ananas Comosus linn. Mer.) waste silage in differing ratios to form complete diets, on digestion, excretion of urinary purine derivatives and blood metabolites in growing, male, Thai swamp buffaloes.
Tropical Animal Health and Production,
Vol. 41,
Issue. 4,
p.
449.
Carro, M.D.
Ranilla, M.J.
Martín-García, A.I.
and
Molina-Alcaide, E.
2009.
Comparison of microbial fermentation of high- and low-forage diets in Rusitec, single-flow continuous-culture fermenters and sheep rumen.
Animal,
Vol. 3,
Issue. 4,
p.
527.
Martínez, M.E.
Ranilla, M.J.
Ramos, S.
Tejido, M.L.
and
Carro, M.D.
2009.
Effects of dilution rate and retention time of concentrate on efficiency of microbial growth, methane production, and ruminal fermentation in Rusitec fermenters.
Journal of Dairy Science,
Vol. 92,
Issue. 8,
p.
3930.
Ramos, S.
Tejido, M. L.
Martínez, M. E.
Ranilla, M. J.
and
Carro, M. D.
2009.
Microbial protein synthesis, ruminal digestion, microbial populations, and nitrogen balance in sheep fed diets varying in forage-to-concentrate ratio and type of forage1.
Journal of Animal Science,
Vol. 87,
Issue. 9,
p.
2924.
Martínez, M.E.
Ranilla, M.J.
Tejido, M.L.
Ramos, S.
and
Carro, M.D.
2010.
Comparison of fermentation of diets of variable composition and microbial populations in the rumen of sheep and Rusitec fermenters. I. Digestibility, fermentation parameters, and microbial growth.
Journal of Dairy Science,
Vol. 93,
Issue. 8,
p.
3684.
Martínez, M.E.
Ranilla, M.J.
Tejido, M.L.
Saro, C.
and
Carro, M.D.
2010.
The effect of the diet fed to donor sheep on in vitro methane production and ruminal fermentation of diets of variable composition.
Animal Feed Science and Technology,
Vol. 158,
Issue. 3-4,
p.
126.
FUJIHARA, Tsutomu
and
SHEM, Martin N.
2011.
Metabolism of microbial nitrogen in ruminants with special reference to nucleic acids.
Animal Science Journal,
Vol. 82,
Issue. 2,
p.
198.
Kang, S.
Wanapat, M.
Pakdee, P.
Pilajun, R.
and
Cherdthong, A.
2012.
Effects of energy level and Leucaena leucocephala leaf meal as a protein source on rumen fermentation efficiency and digestibility in swamp buffalo.
Animal Feed Science and Technology,
Vol. 174,
Issue. 3-4,
p.
131.