Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

Evaluation of rumen probe for continuous monitoring of rumen pH, temperature and pressure

R. Kaur A B , S. C. Garcia A , A. Horadagoda A and W. J. Fulkerson A
+ Author Affiliations
- Author Affiliations

A Dairy Science Group, M.C. Franklin Laboratory, The University of Sydney, Camden, NSW 2570, Australia.

B Corresponding author. Email: r.jhajj@usyd.edu.au

Animal Production Science 50(2) 98-104 https://doi.org/10.1071/AN09048
Submitted: 16 March 2009  Accepted: 14 October 2009   Published: 11 February 2010



18 articles found in Crossref database.

Characterization of a New Xylanase Found in the Rumen Metagenome and Its Effects on the Hydrolysis of Wheat
Hu Die, Zhao Xianghui
Journal of Agricultural and Food Chemistry. 2022 70(21). p.6493
Comparison of Rumen Fluid pH by Continuous Telemetry System and Bench pH Meter in Sheep with Different Ranges of Ruminal pH
Reis Leonardo F., Minervino Antonio H. H., Araújo Carolina A. S. C., Sousa Rejane S., Oliveira Francisco L. C., Rodrigues Frederico A. M. L., Meira-Júnior Enoch B. S., Barrêto-Júnior Raimundo A., Mori Clara S., Ortolani Enrico L.
The Scientific World Journal. 2014 2014 p.1
Replacing alfalfa silage with corn silage in dairy cow diets: Effects on enteric methane production, ruminal fermentation, digestion, N balance, and milk production
Hassanat F., Gervais R., Julien C., Massé D.I., Lettat A., Chouinard P.Y., Petit H.V., Benchaar C.
Journal of Dairy Science. 2013 96(7). p.4553
A Glycosyl Hydrolase 30 Family Xylanase from the Rumen Metagenome and Its Effects on In Vitro Ruminal Fermentation of Wheat Straw
Tang Longzhang, Lei Xiaowen, Ouyang Kehui, Wang Lei, Qiu Qinghua, Li Yanjiao, Zang Yitian, Liu Chanjuan, Zhao Xianghui
Animals. 2023 14(1). p.118
Performance, carcass characteristics, and ruminal pH of Nellore and Angus young bulls fed a whole shelled corn diet1
Carvalho J. R. R., Chizzotti M. L., Schoonmaker J. P., Teixeira P. D., Lopes R. C., Oliveira C. V. R., Ladeira M. M.
Journal of Animal Science. 2016 94(6). p.2451
Subspecies and diet affect the expression of genes involved in lipid metabolism and chemical composition of muscle in beef cattle
Teixeira Priscilla D., Oliveira Dalton M., Chizzotti Mario L., Chalfun-Junior Antonio, Coelho Tamara C., Gionbelli MateusP., Paiva Luciano V., Carvalho José Roberto R., Ladeira Marcio M.
Meat Science. 2017 133 p.110
Invited review: Sensor technologies for real-time monitoring of the rumen environment
Han Chan Su, Kaur Upinder, Bai Huiwen, Roqueto dos Reis Barbara, White Robin, Nawrocki Robert A., Voyles Richard M., Kang Min Gyu, Priya Shashank
Journal of Dairy Science. 2022 105(8). p.6379
Use of Wireless Rumen Sensors in Ruminant Nutrition Research
Kilic U.
Asian Journal of Animal Sciences. 2010 5(1). p.46
The effects on ruminal pH and serum haptoglobin after feeding a grain-based supplement to grazing dairy cows as a partial mixed ration or during milking
Coombe J.E., Pyman M.F., Mansell P.D., Auldist M.J., Anderson G.A., Wales W.J., Conley M.J., Manos S., Hannah M., Fisher A.D.
The Veterinary Journal. 2015 204(1). p.105
Effects of lactic acid bacteria inoculants and fibrolytic enzymes on the fermentation quality, in vitro degradability, ruminal variables and microbial communities of high‐moisture alfalfa silage
Chen Lei, Li Junfeng, Dong Zhihao, Shao Tao
Grassland Science. 2019 65(4). p.216
Relative reticulo-rumen pH indicators for subacute ruminal acidosis detection in dairy cows
Villot C., Meunier B., Bodin J., Martin C., Silberberg M.
Animal. 2018 12(3). p.481
Influence of the time of day and season of the year on temperature and pH of rumen in cattle
Vladimirov F. E., Bazaev S. O.
Glavnyj zootehnik (Head of Animal Breeding). 2022 (12). p.28
Characteristics of recombinant xylanase from camel rumen metagenome and its effects on wheat bran hydrolysis
Zhu Linli, Liu Chanjuan, Li Yanjiao, Pan Ke, Ouyang Kehui, Song Xiaozhen, Xiong Xiaowen, Qu Mingren, Zhao Xianghui
International Journal of Biological Macromolecules. 2022 220 p.1309
Using rumen probes to examine effects of conjugated linoleic acids and dietary concentrate proportion on rumen pH and rumen temperature of periparturient dairy cows
Petzold M., Meyer U., Spilke J., Dänicke S.
Journal of Animal Physiology and Animal Nutrition. 2014 98(4). p.785
Using wireless rumen sensors for evaluating the effects of diet and ambient temperature in nonlactating dairy goats
Castro-Costa A., Salama A.A.K., Moll X., Aguiló J., Caja G.
Journal of Dairy Science. 2015 98(7). p.4646
Review: Rumen sensors: data and interpretation for key rumen metabolic processes
Dijkstra J., van Gastelen S., Dieho K., Nichols K., Bannink A.
Animal. 2020 14 p.s176
A Protease-Insensitive Feruloyl Esterase from China Holstein Cow Rumen Metagenomic Library: Expression, Characterization, and Utilization in Ferulic Acid Release from Wheat Straw
Cheng Fansheng, Sheng Jiping, Cai Ting, Jin Jian, Liu Wanzhen, Lin Yanmei, Du Yongxin, Zhang Maoqiu, Shen Lin
Journal of Agricultural and Food Chemistry. 2012 60(10). p.2546
Effects of niacin supplementation and dietary concentrate proportion on body temperature, ruminal pH and milk performance of primiparous dairy cows
Lohölter Malte, Meyer Ulrich, Rauls Caroline, Rehage Jürgen, Dänicke Sven
Archives of Animal Nutrition. 2013 67(3). p.202

Committee on Publication Ethics


Abstract Export Citation Get Permission