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65. Fernandez-Figares I., Prieto C., Nieto R., Aquilera J.F. (1997), Free amino acid concentrations in plasma, muscle and liver as indirect measures of protein adequacy in growing chickens, Animal Science, 64, pp. 529-539.

66. Fernandez S.R., Parsons C.M. (1996), Bioavailability of the digestibile lysine and valine in cottonseed and soybean meals for chicks, Poultry Science, 75, pp. 216-223.

67. Fernandez S.R., Zhang Y., Parsons C.M. (1995), Dietary formulation with cottonseed meal on a total versus a digestible amino acid basis, Poultry Science, 74, pp. 1168-1179.

68. Food and Agriculture Organization of the United Nations (1982), Mammals in the seas. Vol 4. Small cetaceans, seals, sirenians and otters, FAO Advisory Committee on Marine Resources Research Working Party on Marine Mammals, FAO, Rome.

69. Ford J.E. (1964), A microbiological method for assessing the nutritional value of proteins. 3. Further studies on the measurement of available amino acids, British Journal of Nutrition, 18, pp. 449-461.

70. Fraps G.S., Carlyle E. C., Fudge J. F. (1940), Metabolizable energy of some chicken foods, Texas Agric. Exp. Stn. Bull, pp. 589.

71. Friedman M. (1996), Nutritional value of proteins from different food sources: a review, Journal of Agricultural and Food Chemistry, 44, pp. 6-29.

72. Fuller M. (2003), Amino acid bioavailability – a brief history. In Ball R.O. (Ed.) Digestive Physiology in pigs, Proc. 9th intl. Symposium. Vol 1.

73. Gabert V.M., Canibe N., Jorgensen H., Eggum B.O., Sauer W.C. (1997), Use N-amino acid isotope dilution techniques to determine endogenous amino acids in ileal digesta in growing pigs, Acta Agriculturae Scandinavia, 47, pp. 168-177.

74. Gabriel I., Lesire M., Juin H., Burstin J., Duc G., Quillien L., Thibault J.N., Leconte M., Hallouis J.M., Ganier P., Mézière N., Sève B. (2008), Variation in seed protein digestion of different pea (Pisum sativum L.) genotypes by cecectomized broiler chickens: 1. Endogenous amino acid losses, true digestibility and in vitro hydrolysis of proteins, Livestock Science, 113, pp. 251-261.

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75. Gallup W.D. (1929), The determinations of the digestibility of protein by Bergheim’s method, The Journal of Biological Chemistry, 81, pp. 321-324.

76. Garcia A.R., Batal A.B., Dale N.M. (2006), A comparison of methods to determine amino acid digestibility of feed ingredients for chickens, Poultry Science, 86, pp. 94-101.

Xác định giá trị năng lượng trao đổi có hiệu chỉnh nitơ men, tỉ lệ tiêu hóa hồi tràng các chất dinh dưỡng của một số loại thức ăn và ứng dụng trong thiết lập khẩu phần nuôi gà thịt - 18

77. Garcia M., Dale N. (1999), Cassava root meal for poultry, Journal of Applied Poultry Research, 8, pp. 132-137.

78. Ghazalah A.A., Abd-Elsamee M.O., Eman S., Moustafa E.S. (2011), Use of distillers dried grains with solubles (DDGS) as replacement for soybean meal in laying hen diets, International Journal of Poultry Science, 10 (7), pp. 505-513.

79. Gheisari A.A., Pourabadeh A.H., Pourreza J., Mahlougi M., Bahadoran R. (2007), Determination of chemical composition and evaluation of apparent and true metabolisable energy of different barley cultivars in broiler chicks, Journal of Science and Technology of Agriculture and Natural Resources, 11 (41), pp. 405-415.

80. Gicheha M.G., Kosgey I.S., Bebe B.O., Kahi A.K. (2006), Evaluation of the efficiency of alternative two-tier nucleus breeding systems designed to improve meat sheep in Kenya, Journal of Animal Breeding and Genetics, 123 (4), pp. 247-257.

81. Glatz P., Pym R. (2007), Poultry housing and management in developing countries, Poultry Development Review, pp. 1-5.

82. Green S., Bertrand S.L., Duron M.J.C., Maillard R. (1987), Digestibilities of amino acids in maize, wheat, and barley meals, determined with intact and caecectomised cockerels, British Poultry Science, 28, pp. 631-641.

83. Greenfield H., Southgate D.A.T (2003), Food composition data: production, management and use, Second edition, Food and Agriculture Organization of The United Nation, Rome.

84. Gurnsey M.P., James K.A.C. (1985), An improved method of ileal cannulation of adult cockerels, Research in Veterinary Science, 39, pp. 390-391.

85. Harris D.L., Newman S. (1994), Breeding for profit: synergism between genetic improvement and livestock production (a review), Journal of Animal Science, 72, pp. 2178-2200.

86. Harrison M.D., Ballard M.R.M., Barclay R.A., Jackson M.E., Stillborn H.L. (1991), A comparison of true digestibility for poultry and apparent ileal digestibility in swine. A classical in vitro method and NIR spectrophotometry for determining amino acid digestibility. In Verstegen M.W.A, Huisman J., den Hartzog (Eds.) Digestive physiology in pigs. Pudoc Wageningen, Pudoc, pp. 254-259.

87. Harwood E.J., Shrimpton D.H. (1969), A chick biological assay for available tryptophan, Proceedings of the Nutrition Society, 28, pp. 66A.

88. Hew L.I., Ravindran V., Ravindran G., Bryden W.L. (1996), Ileal and excreta digestibilities of amino acids of some protein supplements for broilers, Preceedings of the Nutrition Society of Australia, 20, pp. 201.

89. Hill D.C., McIndoo E.M., Olsen E.M. (1961), Influence of dietary zein on the concentration of amino acids in the plasma of chicks, Journal of Nutrition, 74, pp. 16-22.

90. Hill F.W, Anderson D.L., Renner R., Carew Jr.L.B. (1960), Studies of the metabolizable energy of grain and grain products for chickens, Poultry Science, 39, pp. 573-579.

91. Hill F.W., Anderson D.L. (1958), Comparison of metabolizable energy and productive determinations with growing chicks, Journal of Nutrition, 64, pp. 587-603.

92. Hoehler D., Lemme A., Ravindran V., Bryden W.L., Rostagno H.S. (2006), Feed formulation in broiler chickens based on standardized ileal amino acid digestibility, VIII Simposium Internacional de Nutrición Acuícola. Universidad Autónoma de Nuevo León, Monterrey, Nuevo Léon, México. ISBN 970-694-333-5.

93. Hsu H.W., Vavak D.L., Satterlee L.D., Miller G. (1977), A multi-enzyme technique for estimating protein digestibility, Journal of Food Science, 42, pp. 1269-1273.

94. Huang K.H., Li X., Ravindran V., Bryden W.L. (2006), Comparison of apparent ileal amino acid digestibility of feed ingredients measured with broilers, layers, and roosters, Poultry Science, 85, pp. 625-634.

95. Huang K.H., Ravindran V., Li X., Ravindran G., Bryden W.L. (2007), Apparent ileal digestibility of amino acids in feed ingredients determined with broilers and layers, Journal of the Science of Food and Agriculture, 87, pp. 47-53.

96. Huang R.L., Yin Y.L., Wu G.Y., Zhang Y.G., Li T.J., Li L.L., Li M.X., Tang Z.R., Zhang J., Wang B., He J.H., Nie X.Z. (2005), Effect of dietary oligochitosan supplementation on ileal digestibility of nutrients and performance in broilers, Poultry Science, 84, pp. 1383-1388.

97. Hullard I., Meleg I., Fekete S., Romvari R. (1999), Studies on the energy content of pigeon feeds. I. Determination of digestibility and metabolizable enery content, Poultry Science, 78, pp. 1757-1762.

98. Hurrell RF, Carpenter K.J. (1974), Mechanisms of heat damage in proteins. 4. The reactive lysine content of heat-damaged material as measured in different ways, British Journal of Nutrition, 32, pp. 589-604.

99. Imbayashi K., Kametaka M., Hatano T. (1955), Studies on the digestion in the domestic fowl. 1. ‘Artificial anus operation’ for the domestic fowl and the passage of the indicator throughout the digestive tract, Tohoku journal of agricultural research, 6, pp. 99-117.

100. International Agrifood Consulting (2006), The impact of avian influenza on poultry sector restructuring and its socio-economic effects, FAO, Hanoi, Vietnam.

101. Isshiki Y., Yokota H., Nakahiro Y., Tasaki I. (1974), Digestion and absorption in the cecum of chickens, Japanese Journal of Zootechnical Science, 45, pp. 488-493.

102. Ivy C.A., Bragg D.B., Stephenson E.L. (1968), Surgical exteriorizing the rectum of growing chick, Poultry Science, 47, pp. 1771-1774.

103. Jackson D.A., Bodin J.C., Maillard R. (1996), Determination of total and digestible amino acids by near infrared reflectance spectroscopy, Preceedings of the Australian Poultry Science Symposium, 8, pp. 46-52.

104. Johns D.C. (1990), Determination of amino acid digestibility and availability in poultry. In Farrell D.J. (Ed.) Recent advances in animal nutrition in Australia. The University of New England, Armidale, NSW, pp. 65-80.

105. Johns D.C., Low C.K., James K.A.S. (1986b), Comparison of amino acid digestibility using ileal digesta from growing chickens and cannulated adult cockerels, British Poultry Science, 27, pp. 679-685.

106. Johns D.C., Low C.K., Sedcote J.R., James K.A.S. (1986a), Determination of amino acid digestibility using caecectomised and intact cockerels, British Poultry Science, 27, pp. 451-462.

107. Kaczmarek S., Bochenek M., Józefiak D., Rutkowski A. (2009), Effect of enzyme supementation of diets based on maize or hominy feed on performance and nutrient digestibility in broilers, Journal of Animal Feed Sciences, 18, pp. 113-123.

108. Kakade M.L., Liener I.H. (1969), Determination of available lysine in proteins, Analytical Biochemistry, 27 (2), pp. 273-280.

109. Kan C.A., Scheele C.W., Janssen W.M.M.A. (1988), The energy content of full-fat soya beans in meal and pelleted feeds for adult cocks and broilers, Animal Feed Science and Technology, 19, pp. 97-104.

110. Kane E. A., Jacobson W.C., Moore L.A. (1950), A comparison of techniques used in digestibility studies with dairy cattle, Journal of Nutrition, 41, pp. 583.

111. Keith M.O., Bell J.M. (1988), Digestibility of nitrogen and amino acids in selected protein souces fed to mice, Journal of Nutrition, 118, pp. 561-568.

112. Keulen J.V., Young B.A. (1977), Evaluation of acid-insoluble ash as a natural marker in ruminant digestibility studies, Journal of Animal Science, 44, pp. 282-287.

113. Kim I.B. (2001), Development of in vitro technique for bioavailable corn energy value, Asian - Australasian Journal of Animal Sciences, 14 (11), pp. 1645-1646.

114. Kluth H., Rodehutscord M. (2006), Comparison of amino acid digestibility in broiler chickens, turkeys, and pekin ducks, Poultry Science, 85, pp. 1953-1960.

115. Kocher A., Choct M., Ross G., Broz J., Chung T.K. (2003), Effects of enzyme combinations on apparent metabolizable energy of corn-soybean meal- based diets in broilers, Journal of Applied Poultry Research, 12, pp. 275-283.

116. Kotb A.R., Luckey T.D. (1972), Markers in nutrition, Nutrition Abstracts and Reviews, 42, pp. 813-845.

117. Kuiken K.A., Lyman C.M. (1948), Availability of amino acids in some foods,

Journal of Nutrition, 36, pp. 359-368.

118. Lammers P.J., Kerr B.J., Honeyman M.S., Stalder K., Dozier W.A. 3rd, Weber T.E., Kidd M.T., Bregendahl K. (2008), Nitrogen-corrected apparent metabolizable energy value of crude glycerol for laying hens, Poultry Science, 87 (1), pp. 104-107.

119. Lapar M.L.A., Binh V.T., Ehui S. (2003), Identifying barriers to entry to livestock input and output markets in South-East Asia: The case of Vietnam. Socioeconomics and Policy Research Working Paper 56, ILRI (International Livestock Research Institute), Nairobi, Kenya.

120. Laughlin K. (2007), Poultry genetics – Anticipating the industry requirement,

Lohmann Information, 42 (2), pp. 10-13.

121. Leibholz J. (1992), The availability of lysine in diets for pigs: comparative methodology, British Journal of Nutrition, 67, pp. 401-410.

122. Lemme A., Ravindran V., Bryden W.L. (2004), Ileal digestibility of amino acids in feed ingredients for broilers, World‘s Poultry Science Journal, 60, pp. 423-437.

123. Leterme P., Monmart T., Thewis A., Morandi P. (1996a), Effect of oral and parenteral N nutrition vs N-free nutrition on the endogenous amino acid flow at the ileum of the pig, Journal of the Science of Food and Agriculture, 71, pp. 265-271.

124. Leterme P., Thewis A., Francois E., van Leewen P., Wathelet B., Huisman J. (1996b), The use of 15N-labeled dietary proteins for determining true ileal amino acid digestibilities is limited by their rapid recycling in the endogenous secretions of pigs, Journal of Nutrition, 126, pp. 2188-2198.

125. Lewis A.J., Bayley H.L. (1995) Amino acid bioavailability. In Ammerman C.B., Baker D.H., Lewis A.J. (Eds.) Bioavailability of nutrients of animals – Amino acids, minerals, and vitamins, Academic Press, New York, pp. 35-65.

126. Lien K., Sauer W., Mosenthin R., Souffrant W. (1994), Determination of ileal amino acid digestibilities with N-isotope dilution techniques. In Souffran W.B., Hagemeister H. (Eds.) Proceedings of the 6th International Symposium on Digestive Physiology in Pigs. Volume I, EAAP Publication No.80, Bad Doberan, Germany, pp. 31-34.

127. Lien K.A., Sauer W.A., Fenton M. (1997), Muci output in ileal digesta and excreta digestibility values, British Poultry Science, 44, pp. 588-597.

128. Likuski H.J.A., Dorrel H.G. (1978), A bioassay for rapid determinations of amino acid availability values, Poultry Science, 57, pp. 1658-1660.

129. Liu F., Niu Z. (2008), Carcass quality of different meat - typed chickens when achieve a common physiological body weight, International Journal of Poultry Science, 7 (4), pp. 319-322.

130. Lockhart W.C., Bolin D.W., Olson G., Bryant R.L. (1961), The metabolizable energy value of oats of various bushel weight, Poultry Science, 40, pp. 327-333.

131. Longo F.A., Menten J.F.M., Pedroso A.A., Figueiredo A.N., Racanicci A.M.C., Gaiotto J.B., Sorbara J.O.B. (2004), Determination of the energetic value of corn, soybean meal and micronized full fat soybean for newly hatched chicks, Brazilian Journal of Poultry Science, 6 (3), pp. 147-151.

132. Loon C.Y. (1997), Fullfat soybean meal production and utilization. Proceedings: 5th Regional ASA feed technology and nutrition workshop, 25-29 May 1997, The Westin Chiangmai, Thailand, MITA (P) No. 044/11/96.

133. Lopez G., Leeson S. (2007), Relevance of nitrogen correction for assessment of metabolizable energy with broilers to forty-nine days of age, Poultry Science, 86, pp. 1696-1704.

134. Low A.G. (1990), Protein evaluation in pigs and poultry. In Wiseman J., Cole

D.J.A. (Eds.) Feedstuff evaluation. Butterworth, London, pp. 91-114.

135. MacLeod M.G. (2002), Energy utilization: Measurement and prediction. In McNab J.M., Boorman K.N. (Eds.) Poultry feedstuffs: supply, composition and nutritive value, CABI, Oxon, UK, pp. 191- 217.

136. Major E.J., Batterham E.S. (1981), Availability of lysine in protein concentrates as determined by the slope-ratio assay with chicks and comparion with rat, pig and chemical assays, British Journal of Nutrition, 46, pp. 513-519.

137. March B.E., Biely J. (1973), Chemical, physical, and nutritional characteristics of different samples of wheat, Canadian Journal of Animal Science, 53, pp. 569-577.

138. Mauron J., Bujard E. (1964), Guanidination, an alternative approach to the determination of available lysine in foods. Proceedings of the Sixth International Congress of Nutrition, Endinburgh, E & S Livingstone Ltd., Endinburgh., pp. 489.

139. McCarthy J.F., Aherne F.X., Okai D.B. (1974), Use of HCl insoluble ash as an index material for determining apparent digestibility with pigs, Canadian Journal of Animal Science, 54 (1), pp. 107-109.

140. McDonald P., Edwards R.A., Greenhalgh J.F.D., Morgan C.A. (2002), Animal Nutrition, Longman Scientific & Technical (England) and John Wiley & Sons, Inc., New York.,

141. McIntosh J.E., Slinger S.J., Sibbald I.R., Ashton G.C. (1962), Factors effecting the metabolizable energy content of poultry feeds. 7. The effects of grinding, pelleting, and grit feeding on the availability of the energy of wheat, corn, oats and barley. 8. A study on the effects of dietary balance, Poultry Science, 41, pp. 445-456.

142. McNab J.M. (1989), Measuring availability of amino acids from digestibility experiments. Proceedings of the Seventh European Symposium on Poultry Nutrition, World’s Poultry Science Association, Girona, Spain, pp. 45-53.

143. McNab J.M. (1995), Amino acid digestibilities: determination and application to poultry. In Rowe J.B., Nolan J.V. (Eds.) Recent advances in animal nutrition in Australia 1995, The University of New England, Armidale, NSW, pp. 7-13.

144. Mertz E.T., Hassen M.M., Cairns-Whittern C., Kirleis A.W., Tu L., Axtell

J.D. (1984), Pepsin digestibility of proteins in sorghum and other major cereals,

Proc Natl Acad Sci USA, 81 (1), pp. 1-2.

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