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Articles

Determination and estimation of phosphorus availability in growing poultry and their historical development

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Pages 569-586 | Received 10 Jul 2012, Accepted 19 Nov 2012, Published online: 23 Sep 2019

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F. Salisbury, A.J. Cowieson & R.M. Gous. (2021) Constraints on the modelling of calcium and phosphorus growth of broilers: a systematic review. World's Poultry Science Journal 77:4, pages 775-795.
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. (2019) 2019 Abstracts. British Poultry Abstracts 15:1, pages 1-45.
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Lucie Kupcikova, Martina Lichovnikova, Vojtech Anderle, Tomas Vlcko, Ludmila Ohnoutkova, Martin Svidrnoch, Vitezslav Maier & David Hampel. (2017) Pre-caecal digestible phosphorus in maize and wheat for broiler chickens. British Poultry Science 58:6, pages 712-717.
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K. Elwinger, C. Fisher, H. Jeroch, B. Sauveur, H. Tiller & C.C. Whitehead. (2016) A brief history of poultry nutrition over the last hundred years. World's Poultry Science Journal 72:4, pages 701-720.
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. (2013) Determination of phosphorus availability in poultry. World's Poultry Science Journal 69:3, pages 687-698.
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Articles from other publishers (33)

Hanyi Shi, Jinquan Wang & Woo Kyun Kim. (2024) Interactive effects of calcium, phosphorus, and exogenous phytase on growth performance and bone ash in broilers under Eimeria or necrotic enteritis infections: a systemic review and meta-analysis. Journal of Applied Poultry Research 33:2, pages 100422.
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Yauheni Shastak & Wolf Pelletier. (2024) Pet Wellness and Vitamin A: A Narrative Overview. Animals 14:7, pages 1000.
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V.S. Haetinger & O. Adeola. (2024) Comparison of different protein sources on the phosphorus digestibility of soybean meal for broiler chickens determined using the regression method. Poultry Science 103:2, pages 103327.
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Olubukola P A Idowu, Damilola U Kareem, Oyegunle E Oke, Emmanuel A Adeyeye, Olajide M Sogunle & Olusegun M O Idowu. (2024) Effects of housing systems and laying phases on external and internal egg quality characteristics of indigenous guinea fowl hens. Translational Animal Science 8.
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Markus Rodehutscord, Vera Sommerfeld, C. Roselina Angel & Douglas R. Korver. (2023) Minimum phosphorus requirements for laying hen feed formulations. Poultry Science 102:2, pages 102344.
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AIANE A.S. CATALAN, SUELEN N. DA SILVA, VALDIR S. DE AVILA, EVERTON L. KRABBE, LETICIA S. LOPES, VICKY L. KAWSKI, EDUARDO G. XAVIER & VICTOR F.B. ROLL. (2023) Phytate-phosphorus and phytase on performance, bone characteristics, tissue and serum mineral concentration on broilers. Anais da Academia Brasileira de Ciências 95:4.
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Tofuko A. Woyengo, Jan V. Nørgaard, Marleen E. van der Heide & Tina S. Nielsen. (2022) Calcium and phosphorus digestibility in rock- and bone-derived calcium phosphates for pigs and poultry: A review. Animal Feed Science and Technology 294, pages 115509.
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H.Y. Wang, T.J. Applegate, K.Y. Zhang, G. Tian, X.M. Ding, S.P. Bai, J.P. Wang, L. Lv, Y. Xuan, H.W. Peng, S.X. Xu & Q.F. Zeng. (2022) Evaluation of the ileal digestibility and excreta retention of phosphorus for feed phosphates in broiler chickens and in Pekin ducks. Poultry Science 101:7, pages 101837.
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Neville Suttle. 2022. Mineral Nutrition of Livestock. Mineral Nutrition of Livestock 1 16 .
María Cambra-López, Verónica Moset, María del Carmen López, Juan Sebastián Mesa, Laura Carpintero, Andrés Donadeu, Javier Dupuy, Judit Macías-Vidal, Alba Cerisuelo, Pablo Ferrer & Juan José Pascual. (2021) Evaluation of Phosphorus Digestibility from Monocalcium and Dicalcium Phosphate Sources and Comparison between Total Tract and Prececal Digestibility Standard Methods in Broilers. Animals 11:12, pages 3427.
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A. Riviere, T. Nothof, R. Greiner, S. Tranchimand, N. Noiret, F. Robert & M. Mireaux. (2021) In vitro assessment of enzymatic phytate dephosphorylation during digestive process of different feeds and feed ingredients. Animal Feed Science and Technology 281, pages 115096.
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N. Matin, P.L. Utterback & C.M. Parsons. (2021) Phosphorus digestibility and relative phosphorus bioavailability in two dried black soldier fly larvae meals and a defatted black soldier fly larvae meal in broiler chickens. Poultry Science 100:8, pages 101221.
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Susanne Künzel, Daniel Borda-Molina, Tobias Zuber, Jens Hartung, Wolfgang Siegert, Dieter Feuerstein, Amélia Camarinha-Silva & Markus Rodehutscord. (2021) Relative phytase efficacy values as affected by response traits, including ileal microbiota composition. Poultry Science 100:6, pages 101133.
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Su Hyun An, Jung Yeol Sung & Changsu Kong. (2020) Ileal Digestibility and Total Tract Retention of Phosphorus in Inorganic Phosphates Fed to Broiler Chickens Using the Direct Method. Animals 10:11, pages 2167.
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J.A. Munoz, P.L. Utterback & C.M. Parsons. (2020) Phosphorus digestibility and bioavailability in soybean meal, spray-dried plasma protein, and meat and bone meal determined using different methods. Poultry Science 99:10, pages 4998-5006.
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Michael Oster, Henry Reyer, Nares Trakooljul, Frank M. Weber, Lu Xi, Eduard Muráni, Siriluck Ponsuksili, Markus Rodehutscord, Jörn Bennewitz & Klaus Wimmers. (2020) Ileal Transcriptome Profiles of Japanese Quail Divergent in Phosphorus Utilization. International Journal of Molecular Sciences 21:8, pages 2762.
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M.R. Bedford & A.J. Cowieson. (2020) Matrix values for exogenous enzymes and their application in the real world. Journal of Applied Poultry Research 29:1, pages 15-22.
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R. M. Dixon, S. T. Anderson, L. J. Kidd & M. T. Fletcher. (2020) Management of phosphorus nutrition of beef cattle grazing seasonally dry rangelands: a review. Animal Production Science 60:7, pages 863.
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Susanne Künzel, Jörn Bennewitz & Markus Rodehutscord. (2019) Genetic parameters for bone ash and phosphorus utilization in an F2 cross of Japanese quail. Poultry Science 98:10, pages 4369-4372.
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L Fan, Z Z He, X Ao, W L Sun, X Xiao, F K Zeng, Y C Wang & J He. (2019) Effects of residual superdoses of phytase on growth performance, tibia mineralization, and relative organ weight in ducks fed phosphorus-deficient diets. Poultry Science 98:9, pages 3926-3936.
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Raquel Souza Dias, Secundino López, Laura Maria Oliveira Borgatti, Ermias Kebreab, Dorinha Miriam Silber Schmidt Vitti, Adibe Luiz Abdalla, Jayasooriya Arachchige Don Ranga Niroshan Appuhamy & James France. (2019) Phosphorus utilization in broilers fed with diets supplemented with different feed ingredients. Scientia Agricola 76:1, pages 18-23.
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J.A. Munoz, C.D. Hanna, P.L. Utterback & C.M. Parsons. (2018) Phosphorus retention in corn, spray dried plasma protein, soybean meal, meat and bone meal, and canola meal using a precision-fed rooster assay. Poultry Science 97:12, pages 4324-4329.
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S.J. Dai, K.Y. Zhang, X.M. Ding, S.P. Bai, Y.H. Luo, J.P. Wang & Q.F. Zeng. (2018) Effect of Dietary Non-phytate Phosphorus Levels on the Diversity and Structure of Cecal Microbiota in Meat Duck from 1 to 21 d of age. Poultry Science 97:7, pages 2441-2450.
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M. Rodehutscord, O. Adeola, R. Angel, P. Bikker, E. Delezie, W.A. DozierIIIIII, M. Umar Faruk, M. Francesch, C. Kwakernaak, A. Narcy, C.M. Nyachoti, O.A. Olukosi, A. Preynat, B. Renouf, A. Saiz del Barrio, K. Schedle, W. Siegert, S. Steenfeldt, M.M. van Krimpen, S.M. Waititu & M. Witzig. (2017) Results of an international phosphorus digestibility ring test with broiler chickens. Poultry Science 96:6, pages 1679-1687.
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Daniel Borda-Molina, Marius Vital, Vera Sommerfeld, Markus Rodehutscord & Amélia Camarinha-Silva. (2016) Insights into Broilers' Gut Microbiota Fed with Phosphorus, Calcium, and Phytase Supplemented Diets. Frontiers in Microbiology 7.
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M. Rodehutscord. 2016. Phytate destruction - consequences for precision animal nutrition. Phytate destruction - consequences for precision animal nutrition 167 178 .
Xiuhua Li, Dagong Zhang, Tsung Yang & Wayne Bryden. (2016) Phosphorus Bioavailability: A Key Aspect for Conserving this Critical Animal Feed Resource with Reference to Broiler Nutrition. Agriculture 6:2, pages 25.
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P. Beck, H.-P. Piepho, M. Rodehutscord & J. Bennewitz. (2016) Inferring relationships between Phosphorus utilization, feed per gain, and bodyweight gain in an F2 cross of Japanese quail using recursive models. Poultry Science 95:4, pages 764-773.
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Daniel Menezes-Blackburn, Stefanie Gabler & Ralf Greiner. (2015) Performance of Seven Commercial Phytases in an in Vitro Simulation of Poultry Digestive Tract. Journal of Agricultural and Food Chemistry 63:27, pages 6142-6149.
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Y. Shastak & M. Rodehutscord. (2015) Recent developments in determination of available phosphorus in poultry. Journal of Applied Poultry Research 24:2, pages 283-292.
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Y. Shastak, E. Zeller, M. Witzig, M. Schollenberger & M. Rodehutscord. (2014) Effects of the composition of the basal diet on the evaluation of mineral phosphorus sources and interactions with phytate hydrolysis in broilers. Poultry Science 93:10, pages 2548-2559.
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Todd J. Applegate & Roselina Angel. (2014) Nutrient requirements of poultry publication: History and need for an update. Journal of Applied Poultry Research 23:3, pages 567-575.
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P. Beck, M. Rodehutscord, J. Bennewitz & W. Bessei. (2014) A pilot study of the genetic variation of phosphorus utilization in young Japanese quail (Coturnix japonica). Poultry Science 93:8, pages 1916-1921.
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