Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
LENT, AMY J.
and
WIDEMAN, ROBERT F.
1994.
Hypercalciuric Response to Dietary Supplementation with DL-Methionine and Ammonium Sulfate.
Poultry Science,
Vol. 73,
Issue. 1,
p.
63.
SCHEIDELER, S.E.
RIVES, D.V.
GARLICH, J.D.
and
FERKET, P.R.
1995.
Dietary Calcium and Phosphorus Effects on Broiler Performance and the Incidence of Sudden Death Syndrome Mortality.
Poultry Science,
Vol. 74,
Issue. 12,
p.
2011.
SEBASTIAN, S.
TOUCHBURN, S.P.
CHAVEZ, E.R.
and
LAGUE, P.C.
1996.
The Effects of Supplemental Microbial Phytase on the Performance and Utilization of Dietary Calcium, Phosphorus, Copper, and Zinc in Broiler Chickens Fed Corn-Soybean Diets.
Poultry Science,
Vol. 75,
Issue. 6,
p.
729.
Rama Rao, S.V
Ravindra Reddy, V
and
Ramasubba Reddy, V
1999.
Enhancement of phytate phosphorus availability in the diets of commercial broilers and layers.
Animal Feed Science and Technology,
Vol. 79,
Issue. 3,
p.
211.
WILLIAMS, B.
WADDINGTON, D.
SOLOMON, S.
and
FARQUHARSON, C.
2000.
Dietary effects on bone quality and turnover, and Ca and P metabolism in chickens.
Research in Veterinary Science,
Vol. 69,
Issue. 1,
p.
81.
Koutsos, Elizabeth A.
Matson, Kevin D.
and
Klasing, Kirk C.
2001.
Nutrition of Birds in the Order Psittaciformes: A Review.
Journal of Avian Medicine and Surgery,
Vol. 15,
Issue. 4,
p.
257.
Viveros, A
Brenes, A
Arija, I
and
Centeno, C
2002.
Effects of microbial phytase supplementation on mineral utilization and serum enzyme activities in broiler chicks fed different levels of phosphorus.
Poultry Science,
Vol. 81,
Issue. 8,
p.
1172.
Schoulten, Neudi Artemio
Teixeira, Antônio Soares
Freitas, Rilke Tadeu Fonseca de
Bertechini, Antônio Gilberto
Conte, Ademir José
and
Silva, Hunaldo Oliveira
2003.
Níveis de cálcio em rações de frangos de corte na fase inicial suplementadas com fitase.
Revista Brasileira de Zootecnia,
Vol. 32,
Issue. 5,
p.
1190.
Teixeira, Antônio Soares
Schoulten, Neudi Artemio
Silva, Hunaldo Oliveira
Conte, Ademir José
Bertechini, Antônio Gilberto
and
Fialho, Elias Tadeu
2003.
Desempenho e retenção de nitrogênio de frangos de corte dos 22 aos 42 dias alimentados com rações com diferentes níveis de cálcio e suplementadas com Fitase.
Ciência e Agrotecnologia,
Vol. 27,
Issue. 1,
p.
192.
Rama Rao, S.V.
Raju, M.V.L.N.
Reddy, M.R.
and
Pavani, P.
2006.
Interaction between dietary calcium and non-phytate phosphorus levels on growth, bone mineralization and mineral excretion in commercial broilers.
Animal Feed Science and Technology,
Vol. 131,
Issue. 1-2,
p.
135.
Barbosa, Nei André Arruda
Sakomura, Nilva Kazue
Fernandes, João Batista Kochenborger
and
Dourado, Leilane Rocha Barros
2008.
Enzimas exógenas no desempenho e na digestibilidade ileal de nutrientes em frangos de corte.
Pesquisa Agropecuária Brasileira,
Vol. 43,
Issue. 6,
p.
755.
Manangi, M.K.
and
Coon, C.N.
2008.
Phytate Phosphorus Hydrolysis in Broilers in Response to Dietary Phytase, Calcium, and Phosphorus Concentrations.
Poultry Science,
Vol. 87,
Issue. 8,
p.
1577.
Santos, F.R.
Hruby, M.
Pierson, E.E.M.
Remus, J.C.
and
Sakomura, N.K.
2008.
Effect of Phytase Supplementation in Diets on Nutrient Digestibility and Performance in Broiler Chicks.
Journal of Applied Poultry Research,
Vol. 17,
Issue. 2,
p.
191.
Sheikhlar, Atefeh
Bin Kasim, Azhar
Chwen, Loh Teck
and
Hair Bejo, Mohd
2009.
Effect of Varying Ratios of Dietary Calcium and Phosphorus on Performance, Phytate P and Mineral Retention in Japanese Quail (Coturnix cotnurnix Japonica).
International Journal of Poultry Science,
Vol. 8,
Issue. 7,
p.
692.
Aydin, A.
Pekel, A.Y.
Issa, G.
Demirel, G.
and
Patterson, P.H.
2010.
Effects of dietary copper, citric acid, and microbial phytase on digesta pH and ileal and carcass microbiota of broiler chickens fed a low available phosphorus diet.
Journal of Applied Poultry Research,
Vol. 19,
Issue. 4,
p.
422.
Kanyinji, Francisco
and
Maeda, Teruo
2010.
Additional dietary calcium fed to Barred Plymouth Rock roosters reduces blood cholesterol, elevates seminal calcium, and enhances sperm motility, thermo-tolerance and cryosurvivability.
Animal Reproduction Science,
Vol. 120,
Issue. 1-4,
p.
158.
Rousseau, X.
Létourneau-Montminy, M.P.
Même, N.
Magnin, M.
Nys, Y.
and
Narcy, A.
2012.
Phosphorus utilization in finishing broiler chickens: Effects of dietary calcium and microbial phytase.
Poultry Science,
Vol. 91,
Issue. 11,
p.
2829.
Englmaierová, M.
Skřivanová, V.
and
Skřivan, M.
2014.
The effect of non-phytate phosphorus and phytase levels on performance, egg and tibia quality, and pH of the digestive tract in hens fed higher-calcium-content diet.
Czech Journal of Animal Science,
Vol. 59,
Issue. 3,
p.
107.
Bradbury, E.J.
Wilkinson, S.J.
Cronin, G.M.
Thomson, P.C.
Bedford, M.R.
and
Cowieson, A.J.
2014.
Nutritional geometry of calcium and phosphorus nutrition in broiler chicks. Growth performance, skeletal health and intake arrays.
animal,
Vol. 8,
Issue. 7,
p.
1071.
Perryman, K.R.
Masey O'Neill, H.V.
Bedford, M.R.
and
Dozier, W.A.
2016.
Effects of calcium feeding strategy on true ileal phosphorus digestibility and true phosphorus retention determined with growing broilers.
Poultry Science,
Vol. 95,
Issue. 5,
p.
1077.