Van soest P J. Development of a comprehensive system of feed analyses and its application to forages. Journal of Animal Science,1967, 26(1): 119.
[17]
Tian Y J, Cao Z J, Li S L, et al. Effects of different particle size feedstuffs on fiber material content measured by filter bag technology. Chinese Journal of Animal Nutrition, 2013, 25(2): 350-355.
[18]
Xue H F, Meng Q X. A comparison of various techniques for the determination of NDF, ADF and lignin in ruminant feedstuffs. Chinese Journal of Animal Science, 2006, 42(19): 41-45.
[19]
Russell J B, Oconnor J D, Fox D G, et al. A net carbohydrate and protein system for evaluating cattle diets.1.Ruminal fermentation. Journal of Animal Science, 1992, 70(11): 3551-3561.
[20]
Xue H F, Ren L P, Zhou Z M, et al. A evaluation for rumen degradability of carbohydrate and protein in common feedstuffs by CNCPS. Journal of China Agricultural University, 2007, 12(1): 45-50.
[21]
Yan Y L. Fundamentals and Applications of Near Infrared Spectroscopy. Beijing: China Light Industry Press, 2005.
[22]
Huang Q, Shi C X, Su Y B, et al. Prediction of the digestible and metabolizable energy content of wheat milling by-products for growing pigs from chemical. Animal Feed Science and Technology, 2014, 196: 107-116.
[23]
Huang Q, Piao X S, Ren P, et al. Prediction of digestible and metabolizable energy content and standardized lleal amino acid digestibility in wheat shorts and red dog for growing pigs. Asian-Australasian Journal of Animal Sciences, 2012, 25(12): 1748-1758.
[24]
Huang Q, Piao X, Liu L, et al. Effects of inclusion level on nutrient digestibility and energy content of wheat middlings and soya bean meal. Archives of Animal Nutrition, 2013, 67(5): 356-367.
[25]
Feng Y L. Ruminant Nutrition. Beijing: Science Press, 2004.
[26]
Feng Y L, Zhou J M, Zhang X M, et al. Research on calculation method of net energy for lactation of Chinese dairy feed. Chinese Journal of Animal Science, 1987(1): 8-11.
[27]
Hui X S. Effects of fermented corn straw on performance, energy metabolism and nitrogen, carbon deposition of fattening sheep. Baoding: Agricultural University of Hebei, 2013.
[28]
Qu Z T. Determination of crude feed composition and production levels of net energy impact of L. chinensis and different varieties of corn net. Harbin: Northeast Agricultural University, 2012.
[29]
Liu J, Diao Q Y. Comparation of methods for ruminant feed nutritional value evaluatation.China Herbivores, 2010, (z1): 18-22.
[30]
Xie C Y, Yang H J, Yao X B, et al. Comparison of in situ nylon bag technique and in vitro gas production for evaluating the feedstuff of ruminant. Chinese Journal of Animal Science, 2007, 43(17): 39-42.
[31]
Yue Q, Yang H J, Xie C Y, et al. Estimation of protein intestinal digestibility of ruminant feedstuffs with mobile nylon bag technique and Three-step in vitro procedure. Journal of China Agricultural University, 2007, 12(6): 62-66.
[32]
Wang Y, Xin H S, Yang F, et al. Small intestinal digestibility of rumen undegraded protein measured by different methods and correlation analysis. Chinese Journal of Animal Nutrition, 2012, 24(7): 1264-1273.
[33]
Xie Z L, Zhang T E, Chen X Z, et al. Effects of maturity stages on the nutritive composition and silage quality of whole crop wheat. Asian-Australasian Journal of Animal Science, 2012, 25(10): 1374-1380.
[34]
Tang S X, Li F W, Gan J, et al. Effects of sown season and maturity stage on in vitro fermentation and in sacco degradation characteristics of new variety maize stover. Asian-Australasian Journal of Animal Science, 2011, 24(6): 781-790.
[35]
Li H Y, Xu L, Liu W J, et al. Assessment of the nutritive value of whole corn stover and its morphological fractions. Asian-Australasian Journal of Animal Science, 2014, 27(2): 194-200.
[36]
Cao Z J, Anderson J L, Kalscheur K F. Ruminal degradation and intestinal digestibility of dried or wet distillers grains with increasing concentrations of condensed distillers solubles. Journal of Animal Science, 2009, 87(9): 3013-3019.
[37]
Tian Y J. Comparative study on the nutritional value of different stubble and different phenonphase of alfalfa in dairy Cows. Huhhot: Inner Mongolia Agricultural University, 2011.
[38]
Zeng Y. The study of ruminal degradation and intestinal digestion of canola meal in dairy cows. Beijing: China Agricultural University, 2011.
[39]
Zhang Y G, Li C L, Wang Y F, et al. Degradation characteristics of crude protein and dry matter in the rumen and small intestinal digetibility of commonly used feedstuff for dairy cows. Journal of Northeast Agricultural University, 2013, 44(9): 1-6
[40]
Song Y. Study on the ruminal degradation of some cereals and its digestibility of the bypass starch in the postruminal intestine for dairy cattle. Beijing: China Agricultural University, 2014.
[41]
He Y. Study on dry matter and starch degradation in rumen and digestion in small intestine of silage for dairy cows. Beijing: China Agricultural University, 2014.
[42]
Chen D D, Gu Z Z, Wang Y Y, et al. Nutritional value evaluation of sorghum and wheat for growing rex rabbits. Chinese Journal of Animal Nutrition, 2014, 26(1): 170-176.
[43]
Chen X L, Liu Z K, Sun J, et al. Ruminal degradability characteristics of different forages in sheep. Acta Prataculturae Sinica, 2014, (2): 268-276.
[44]
Chen X L, Sun J, Chen D D, et al. Ruminal outflow rates of five kinds of regular roughages in meat sheep. Journal of China Agricultural University, 2014, (7): 1981-1987.
[45]
Jing L P. Comparation of nutritional value evaluation method in common roughage for ruminants. Beijing: Chinese Academy of Agricultural Sciences Dissertation, 2013.
[46]
Chen H. The study on the nutrient composition and rumen degradation characteristics of different source of energy feeds. Yaan: Sichuan Agricultural University, 2013.
[47]
Mu H J, Liu Q H, Xing Q Y. The study on the nutrient values of bean curd residue to ruminants. China Feed, 2013, (23): 39-42.
[48]
Zhang P. Evaluation of nutritional value of different diets for dairy cow. Yinchuan: Ningxia University, 2013.
[49]
Sun X. Study on assessment technique of the absorbed amino acids fluxes in the small intestine of common feedstuffs for dairy cows. Taian: Shandong Agricultural University, 2013.
[50]
Wang L J. Evaluation of origin and impurity content on nutritional value of Leylus chinensis. Harbin: Northeast Agricultural University, 2013.
[51]
Hou Y J, Xu J, Wu C H, et al. Rumen degradation characteristics of five types of forages for dairy cows. China Dairy Cattle, 2013, (16): 4-8.
[52]
Diao Q Y. Studies on ruminal degradation and intestinal digestion of feed constituents in beef cattle. Beijing: Chinese Academy of Agricultural Sciences, 2000.
[53]
Chen Y T. The study on ruminal degradation of crude protein and amino acid in different protein feed resources. Beijing: China Agricultural University, 2013.
[54]
Qiu Y. Nutrient composition, in situ ruminal degradation and in vitro fermentation characteristics of commonly used forage fordairy cow. Beijing: China Agricultural University, 2013.
[55]
Qin M Z, Shen Y X. Effects of maturity stage on fermentation quality of whole crop wheat silage. Scientia Agricultura Sinica, 2012, (8): 1661-1666.
[56]
Li X N. Evaluation on nutritional value of different varieties corns in dairy cows. Baoding: Agricultural University of Hebei, 2012.
[57]
Zhang J K, Li L R, Zou Q H. Evaluation of some dairy cattle feeds in Jiangxi Province with CNCPS, RFV and GI. Feed Industry, 2012, (17): 40-44.
[58]
Wang L M. Study on rumen dynamic degradability and small intestinal digestibility of common feedstuffs in dairy cows. Huhhot: Inner Mongolia Agricultural University, 2012.
[59]
Wang T T. Determination on intestinal digestibility of soybean meal and distillers dried grains with solubes. Harbin: Northeast Agricultural University, 2012.
[60]
Li J Y, Chai G B, Zhu X P, et al. Nutritive value evaluation of some feed for Liaoning cashmere goat. Chinese Journal of Animal Science, 2012, (7): 38-42.
[61]
Liu J. Prediction of metabolizable energy and metabolizable protein in feeds for meat sheep. Beijing: Chinese Academy of Agricultural Sciences, 2012.
[62]
Bao K, Xu C, Ning H R, et al. Determination of protein ruminal degradability of common feed ingredients in sika deer. Chinese Journal of Animal Nutrition, 2012, (11): 2257-2262.
[63]
Jing L P, Diao Q Y, Tu Y, et al. Study on the rumen degradability of five kinds of alfalfa hay. China Herbivores, 2012, (S1): 316-319.
[64]
Zhang Y, Guo C H, Yu M, et al. Study on of rumen microbial fermentation in vitro characteristics of goats common roughages. Journal of Southwest University for Nationalities (Natrual Science Edition), 2012, (6): 915-919.
[65]
Lv Y L, Zhou Y X, Xiao G P. Evaluation of common forages used for ruminants. Heilongjiang Animal Science and Veterinary Medicine, 2011, (9): 86-87.
[66]
Zhou J H, Zou C X, Liang X W, et al. Evaluation of nutritive value of common roughages for Guangxi water buffalo by Cornell net carbohydrate and protein system. Chinese Journal of Animal Nutrition, 2011, (12): 2190-2197.
[67]
Xue F, Wang L, Meng Q X, et al. Research on using near infrared diffuse reflectance spectroscopy for rapid prediction of compositions of steamed-flaking corn. Spectroscopy and Spectral Analysis, 2011, (1): 62-64.
[68]
Zhao Y. The assessment of nutritive value of typical feeds and diet formulation screening to sheep of Bayannur City. Huhhot: Inner Mongolia Agricultural University, 2011.
[69]
Zhou R. Evaluation of feed amino acids digestibility in small intestinal in dairy cows. Beijing: Chinese Academy of Agricultural Sciences, 2011.
[70]
Qu Y L, Wu J H, Li T. Use of Cornell net carbohydrate and protein system for evaluation of nutrient value of feeds to dairy cattle in the northeast agricultural region of China. Chinese Journal of Animal Nutrition, 2010, (1): 201-206.
[71]
Qu Y L, Wu J H, Zhang Y G. Use of Cornell net carbohydrate and protein system for evaluation of nutrient value of feeds to dairy cattle in the west region of Heilongjiang Province. Chinese Journal of Animal Science, 2009, (11): 42-45.
[72]
Chen T. Effects of stem-flaked corn on the performance and excretion of nitrogen and phosphorus in dairy cows. Baoding: Agricultural University of Hebei, 2009.
[73]
Wu D Q. The utilization of CNCPS for nutritive value evaluates some concentrate feeds and prediction model of enegy value for sheep. Daqing: Heilongjiang Bayi Agricultural University, 2009.
Wu X. Study on ruminal degradability and ruminal environment in different feedstuffs in goat. Guiyang: Guizhou University, 2009.
[95]
Yu M, Mao H M, Zhao G, et al. Evaluation of nutritive value of common feedstuffs used for beef cattle in Weishan county. China Herbivores, 2008, (3): 29-33.
[96]
Lan X Q, Lu D X. Evaluation of rumen bypass starch content and its digestibility in small intestine of common used concentrates for dairy cattle. Feed Research, 2008, (7): 34-37.
[97]
Sun X Z. Energy value evaluation and associative effects of forages for sheep. Beijing: Chinese Academy of Agricultural Sciences, 2007.
[98]
Yao X B, Yang H J, Xie C Y, et al. In situ degradability characteristics of crude protein and amino acids in the rumen and small intestinal digestibility using the mobile nylon bag with ruminant feedstuffs. Chinese Journal of Animal Nutrition, 2007, (3): 225-231.
[99]
Liu M, Wang Z H, Wang Y, et al. The evaluation of nutritive values of feedstuffs for goats. Journal of Shandong Agricultural University(Natural Science), 2006, (1): 25-30.
[100]
Zhang P, Yin Y L, Li T J, et al. Evaluation of the starch content of some common feedstuffs. Feed Research, 2005, (9): 42-43.
[101]
Qiao F Q. Factors in relation to physical processing and variety influencing starch gelatinization and in vitro rumen fermentation. Taiyuan: Shanxi Agricultural University, 2005.
[102]
Wang C, Lou Y J, Yang L Y, et al. Study on the degradability characteristics of four corn deep processing byproducts. Animal Husbandry and Veterinary Medicine, 2004, (1): 22-24.