Articles citing this article

The Citing articles tool gives a list of articles citing the current article.
The citing articles come from EDP Sciences database, as well as other publishers participating in CrossRef Cited-by Linking Program. You can set up your personal account to receive an email alert each time this article is cited by a new article (see the menu on the right-hand side of the abstract page).

Cited article:

Effects of a commercial blend of essential oils and monensin in a high-grain diet containing wheat distillers’ grains on in vitro fermentation

Y. L. Li, C. Li, K. A. Beauchemin and W. Z. Yang
Canadian Journal of Animal Science 93 (3) 387 (2013)
https://doi.org/10.4141/cjas2013-028

In vitrorumen methane output of grasses and grass silages differing in fermentation characteristics using the gas-production technique (GPT)

A. Navarro-Villa, M. O'Brien, S. López, T. M. Boland and P. O'Kiely
Grass and Forage Science 68 (2) 228 (2013)
https://doi.org/10.1111/j.1365-2494.2012.00894.x

Effects of Plant Herb Combination Supplementation on Rumen Fermentation and Nutrient Digestibility in Beef Cattle

M. Wanapat, S. Kang, P. Khejornsart and S. Wanapat
Asian-Australasian Journal of Animal Sciences 26 (8) 1127 (2013)
https://doi.org/10.5713/ajas.2013.13013

Methanobrevibacter boviskoreani sp. nov., isolated from the rumen of Korean native cattle

J.-H. Lee, S. Kumar, G.-H. Lee, et al.
INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY 63 (Pt 11) 4196 (2013)
https://doi.org/10.1099/ijs.0.054056-0

Opportunities and challenges in the use of the Laser Methane Detector to monitor enteric methane emissions from ruminants

M. G. G. Chagunda
animal 7 (s2) 394 (2013)
https://doi.org/10.1017/S1751731113000724

The impact of Lactobacillus plantarum TUA1490L supernatant on in vitro rumen methanogenesis and fermentation

M. O'Brien, T. Hashimoto, A. Senda, T. Nishida and J. Takahashi
Anaerobe 22 137 (2013)
https://doi.org/10.1016/j.anaerobe.2013.06.003

Assessment of the effect of condensed (acacia and quebracho) and hydrolysable (chestnut and valonea) tannins on rumen fermentation and methane productionin vitro

Fadi Hassanat and Chaouki Benchaar
Journal of the Science of Food and Agriculture 93 (2) 332 (2013)
https://doi.org/10.1002/jsfa.5763

The Effects of Thyme and Cinnamon Essential Oils on Performance, Rumen Fermentation and Blood Metabolites in Holstein Calves Consuming High Concentrate Diet

A. R. Vakili, B. Khorrami, M. Danesh Mesgaran and E. Parand
Asian-Australasian Journal of Animal Sciences 26 (7) 935 (2013)
https://doi.org/10.5713/ajas.2012.12636

Comparative evaluation of equations predicting methane production of dairy cattle from feed characteristics

Friederike Hippenstiel, Martin Pries, Wolfgang Büscher and Karl-Heinz Südekum
Archives of Animal Nutrition 67 (4) 279 (2013)
https://doi.org/10.1080/1745039X.2013.793047

Effect of Defaunation on In Vitro Fermentation Characteristics and Methane Emission When Incubated with Forages

Wei-Ze Qin, Seong-Ho Choi, Seung-Uk Lee, Sang-Suk Lee and Man-Kang Song
Journal of The Korean Society of Grassland and Forage Science 33 (3) 197 (2013)
https://doi.org/10.5333/KGFS.2013.33.3.197

Bioelectrochemical systems for simultaneously production of methane and acetate from carbon dioxide at relatively high rate

Yong Jiang, Min Su, Yao Zhang, et al.
International Journal of Hydrogen Energy 38 (8) 3497 (2013)
https://doi.org/10.1016/j.ijhydene.2012.12.107

Representation of a mathematical model to predict methane output in dairy goats

C. Fernández, F.J. Espinós, M.C. López, F.J. García-Diego and C. Cervera
Computers and Electronics in Agriculture 91 1 (2013)
https://doi.org/10.1016/j.compag.2012.11.013

Methane emissions, body composition, and rumen fermentation traits of beef heifers differing in residual feed intake1

C. Fitzsimons, D. A. Kenny, M. H. Deighton, A. G. Fahey and M. McGee
Journal of Animal Science 91 (12) 5789 (2013)
https://doi.org/10.2527/jas.2013-6956

Effect of feeding dried high-sugar ryegrass (‘AberMagic’) on methane and urinary nitrogen emissions of primiparous cows

S.M. Staerfl, S.L. Amelchanka, T. Kälber, et al.
Livestock Science 150 (1-3) 293 (2012)
https://doi.org/10.1016/j.livsci.2012.09.019

Effects of quillaja and yucca saponins on communities and select populations of rumen bacteria and archaea, and fermentationin vitro

A.K. Patra, J. Stiverson and Z. Yu
Journal of Applied Microbiology 113 (6) 1329 (2012)
https://doi.org/10.1111/j.1365-2672.2012.05440.x

Strategies to reduce greenhouse gases from ruminant livestock

S. J. Meale, T. A. McAllister, K. A. Beauchemin, O. M. Harstad and A. V. Chaves
Acta Agriculturae Scandinavica, Section A - Animal Science 62 (4) 199 (2012)
https://doi.org/10.1080/09064702.2013.770916

Influence of Rain Tree Pod Meal Supplementation on Rice Straw Based Diets Using In vitro Gas Fermentation Technique

N. Anantasook and M. Wanapat
Asian-Australasian Journal of Animal Sciences 25 (3) 325 (2012)
https://doi.org/10.5713/ajas.2011.11131

Isolation and characterization of methanogens from rumen of Murrah buffalo

Sanjay Kumar, Sumit Singh Dagar and Anil Kumar Puniya
Annals of Microbiology 62 (1) 345 (2012)
https://doi.org/10.1007/s13213-011-0268-8

Comparison of ruminal fermentation characteristics and microbial population in swamp buffalo and cattle

V. Chanthakhoun, M. Wanapat, P. Kongmun and A. Cherdthong
Livestock Science 143 (2-3) 172 (2012)
https://doi.org/10.1016/j.livsci.2011.09.009

Methane yields from Brahman cattle fed tropical grasses and legumes

P. M. Kennedy and E. Charmley
Animal Production Science 52 (4) 225 (2012)
https://doi.org/10.1071/AN11103

Life-cycle assessment of greenhouse gas emissions from dairy production in Eastern Canada: A case study

E.J. Mc Geough, S.M. Little, H.H. Janzen, et al.
Journal of Dairy Science 95 (9) 5164 (2012)
https://doi.org/10.3168/jds.2011-5229

Effect of incremental flaxseed supplementation of an herbage diet on methane output and ruminal fermentation in continuous culture

K.J. Soder, A.F. Brito, M.D. Rubano and C.J. Dell
Journal of Dairy Science 95 (7) 3961 (2012)
https://doi.org/10.3168/jds.2011-4981

Improving rumen fermentation and feed digestibility in cattle by mangosteen peel and garlic pellet supplementation

N. Manasri, M. Wanapat and C. Navanukraw
Livestock Science 148 (3) 291 (2012)
https://doi.org/10.1016/j.livsci.2012.06.009

In vitro ruminal dry matter digestibility and methane production of fermented total mixed ration containing whole-crop rice and rice bran

Yang Cao, Toshiyoshi Takahashi, Ken-ichi Horiguchi, Norio Yoshida and Daowei Zhou
Grassland Science 58 (3) 133 (2012)
https://doi.org/10.1111/j.1744-697X.2012.00254.x

Using strains of Propionibacteria to mitigate methane emissionsin vitro

A. Y. Alazzeh, H. Sultana, K. A. Beauchemin, et al.
Acta Agriculturae Scandinavica, Section A - Animal Science 62 (4) 263 (2012)
https://doi.org/10.1080/09064702.2013.773056

Methane emissions from sheep fed fresh brassicas (Brassica spp.) compared to perennial ryegrass (Lolium perenne)

X.Z. Sun, G.C. Waghorn, S.O. Hoskin, et al.
Animal Feed Science and Technology 176 (1-4) 107 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.07.013

Lance H. Baumgard, Robert P. Rhoads, Michelle L. Rhoads, Nicholas K. Gabler, Jason W. Ross, Aileen F. Keating, Rebbeca L. Boddicker, Sangeeta Lenka and Veerasamy Sejian
413 (2012)
https://doi.org/10.1007/978-3-642-29205-7_15

Effects of Halogenated Compounds on in vitro Fermentation Characteristics in the Rumen and Methane Emissions

Hee-Soon Hwang, Ji-Un Ok, Shin-Ja Lee, et al.
Journal of Life Science 22 (9) 1187 (2012)
https://doi.org/10.5352/JLS.2012.22.9.1187

Effects of increasing levels of stearidonic acid on methane production in a rumen in vitro system

P. Amaro, M.R.G. Maia, R.J. Dewhurst, A.J.M. Fonseca and A.R.J. Cabrita
Animal Feed Science and Technology 173 (3-4) 252 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.02.007

Fermentation, degradation and microbial nitrogen partitioning for three forage colour phenotypes within anthocyanidin-accumulating Lc-alfalfa progeny

Arjan Jonker, Margaret Y Gruber, Yuxi Wang, et al.
Journal of the Science of Food and Agriculture 92 (11) 2265 (2012)
https://doi.org/10.1002/jsfa.5619

Effects of wheat dried distillers' grains with solubles and cinnamaldehyde onin vitrofermentation and protein degradation using the Rusitec technique

Yangling Li, Maolong He, Chun Li, et al.
Archives of Animal Nutrition 66 (2) 131 (2012)
https://doi.org/10.1080/1745039X.2012.656479

Effect of feeding Bacillus subtilis natto fermentation product on milk production and composition, blood metabolites and rumen fermentation in early lactation dairy cows

H. Peng, J. Q. Wang, H. Y. Kang, et al.
Journal of Animal Physiology and Animal Nutrition 96 (3) 506 (2012)
https://doi.org/10.1111/j.1439-0396.2011.01173.x

Diversity and abundance of the rumen and fecal methanogens in Altay sheep native to Xinjiang and the influence of diversity on methane emissions

C. Liu, Z. P. Zhu, Y. F. Liu, T. J. Guo and H. M. Dong
Archives of Microbiology 194 (5) 353 (2012)
https://doi.org/10.1007/s00203-011-0757-y

Methane yield from dry and lactating cows diets in the Po Plain (Italy) using anin vitrogas production technique

Mario Pirondini, Luca Malagutti, Stefania Colombini, Paola Amodeo and Gianni Matteo Crovetto
Italian Journal of Animal Science 11 (3) e61 (2012)
https://doi.org/10.4081/ijas.2012.e61

Manipulation of rumen fermentation and methane production with plant secondary metabolites

R. Bodas, N. Prieto, R. García-González, et al.
Animal Feed Science and Technology 176 (1-4) 78 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.07.010

Effect of Cassava Hay and Rice Bran Oil Supplementation on Rumen Fermentation, Milk Yield and Milk Composition in Lactating Dairy Cows

R. Lunsin, M. Wanapat and P. Rowlinson
Asian-Australasian Journal of Animal Sciences 25 (10) 1364 (2012)
https://doi.org/10.5713/ajas.2012.12051

Effect of rice bran oil supplementation on rumen fermentation, milk yield and milk composition in lactating dairy cows

R. Lunsin, M. Wanapat, C. Yuangklang and P. Rowlinson
Livestock Science 145 (1-3) 167 (2012)
https://doi.org/10.1016/j.livsci.2012.01.015

Effects of tannins source (Vaccinium vitis idaea L.) on rumen microbial fermentation in vivo

Adam Cieslak, Pawel Zmora, Emilia Pers-Kamczyc and Malgorzata Szumacher-Strabel
Animal Feed Science and Technology 176 (1-4) 102 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.07.012

Effects of Organic Acids on In Vitro Ruminal Fermentation Characteristics and Methane Emission

Ji Un Ok, Dong Uk Ha, Shin Ja Lee, et al.
Journal of Life Science 22 (10) 1324 (2012)
https://doi.org/10.5352/JLS.2012.22.10.1324

Description and function of a mobile open-circuit respirometry system to measure gas exchange in small ruminants

C. Fernández, M.C. López and M. Lachica
Animal Feed Science and Technology 172 (3-4) 242 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.01.006

Effects of tea saponins on rumen microbiota, rumen fermentation, methane production and growth performance—a review

Jia-Kun Wang, Jun-An Ye and Jian-Xin Liu
Tropical Animal Health and Production 44 (4) 697 (2012)
https://doi.org/10.1007/s11250-011-9960-8

Enteric methane mitigation technologies for ruminant livestock: a synthesis of current research and future directions

Amlan Kumar Patra
Environmental Monitoring and Assessment 184 (4) 1929 (2012)
https://doi.org/10.1007/s10661-011-2090-y

Indirect Estimation of CH4 from Livestock Feeds through TOCs Evaluation

M. J. Kim, J. S. Lee, S. Kumar, et al.
Asian-Australasian Journal of Animal Sciences 25 (4) 496 (2012)
https://doi.org/10.5713/ajas.2011.11352

Effect of Dietary Supplementation of Garlic and May Flower Powder on CO2and CH4Emission by Hanwoo Cow

Du Ri Kim, Jae Jung Ha and Young Han Song
Journal of Animal Science and Technology 54 (5) 363 (2012)
https://doi.org/10.5187/JAST.2012.54.5.363

A meta-analysis of effects of chemical composition of incubated diet and bioactive compounds on in vitro ruminal fermentation

F. Klevenhusen, A. Muro-Reyes, R. Khiaosa-ard, B.U. Metzler-Zebeli and Q. Zebeli
Animal Feed Science and Technology 176 (1-4) 61 (2012)
https://doi.org/10.1016/j.anifeedsci.2012.07.008

Meta-analysis of the relationship between dietary tannin level and methane formation in ruminants from in vivo and in vitro experiments

A. Jayanegara, F. Leiber and M. Kreuzer
Journal of Animal Physiology and Animal Nutrition 96 (3) 365 (2012)
https://doi.org/10.1111/j.1439-0396.2011.01172.x

Effect of cattle diet and manure storage conditions on carbon dioxide, methane and nitrous oxide emissions from tie-stall barns and stored solid manure

Michaël Mathot, Virginie Decruyenaere, Didier Stilmant and Richard Lambert
Agriculture, Ecosystems & Environment 148 134 (2012)
https://doi.org/10.1016/j.agee.2011.11.012

Responses in digestion, rumen fermentation and microbial populations to inhibition of methane formation by a halogenated methane analogue

Makoto Mitsumori, Takumi Shinkai, Akio Takenaka, et al.
British Journal of Nutrition 108 (03) 482 (2012)
https://doi.org/10.1017/S0007114511005794

Effect of lactic acid bacteria inoculant and beet pulp addition on fermentation characteristics and in vitro ruminal digestion of vegetable residue silage

Y. Cao, Y. Cai, T. Takahashi, et al.
Journal of Dairy Science 94 (8) 3902 (2011)
https://doi.org/10.3168/jds.2010-3623

In vitro study of the effects of condensed tannins in sainfoin on the digestive process in the rumen at two vegetation cycles

Katerina Theodoridou, Jocelyne Aufrère, Vincent Niderkorn, et al.
Animal Feed Science and Technology 170 (3-4) 147 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.09.003

Slow-release of methanogenic inhibitors derived from encapsulated calcium carbide using paraffin wax and/or rosin: matrix optimization and diffusion characteristics

Zhao Tiantao, Zhao Youcai, Zhang Lijie, et al.
Waste Management & Research 29 (11) 1197 (2011)
https://doi.org/10.1177/0734242X10387654

Methane Emissions from Grazing Cattle Using Point-Source Dispersion

S. M. McGinn, D. Turner, N. Tomkins, E. Charmley, G. Bishop-Hurley and D. Chen
Journal of Environmental Quality 40 (1) 22 (2011)
https://doi.org/10.2134/jeq2010.0239

Regional inventory of methane and nitrous oxide emission from ruminant livestock in the Basque Country

P. Merino, E. Ramirez-Fanlo, H. Arriaga, et al.
Animal Feed Science and Technology 166-167 628 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.081

Effects of a perennial ryegrass diet or total mixed ration diet offered to spring-calving Holstein-Friesian dairy cows on methane emissions, dry matter intake, and milk production

B.F. O’Neill, M.H. Deighton, B.M. O’Loughlin, et al.
Journal of Dairy Science 94 (4) 1941 (2011)
https://doi.org/10.3168/jds.2010-3361

Measurement and prediction of enteric methane emission

Veerasamy Sejian, Rattan Lal, Jeffrey Lakritz and Thaddeus Ezeji
International Journal of Biometeorology 55 (1) 1 (2011)
https://doi.org/10.1007/s00484-010-0356-7

Rumen stoichiometric models and their contribution and challenges in predicting enteric methane production

Aklilu W. Alemu, J. Dijkstra, A. Bannink, J. France and E. Kebreab
Animal Feed Science and Technology 166-167 761 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.054

An evaluation of the methane output associated with high-moisture grains and silages using the in vitro total gas production technique

E. J. Mc Geough, P. O'Kiely, M. O'Brien and D. A. Kenny
Animal Production Science 51 (7) 627 (2011)
https://doi.org/10.1071/AN10243

Evaluation of rumen methanogen diversity in cattle fed diets containing dry corn distillers grains and condensed tannins using PCR-DGGE and qRT-PCR analyses

R. Mohammed, M. Zhou, K.M. Koenig, K.A. Beauchemin and L.L. Guan
Animal Feed Science and Technology 166-167 122 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.061

The effect of dietary concentrate and soya oil inclusion on microbial diversity in the rumen of cattle

L. Lillis, B. Boots, D.A. Kenny, et al.
Journal of Applied Microbiology 111 (6) 1426 (2011)
https://doi.org/10.1111/j.1365-2672.2011.05154.x

Genetic parameters for predicted methane production and potential for reducing enteric emissions through genomic selection

Y. de Haas, J.J. Windig, M.P.L. Calus, et al.
Journal of Dairy Science 94 (12) 6122 (2011)
https://doi.org/10.3168/jds.2011-4439

Estimation of enteric methane emissions trends (1990–2008) from Manitoba beef cattle using empirical and mechanistic models

Aklilu Alemu, K. H. Ominski and E. Kebreab
Canadian Journal of Animal Science 91 (2) 305 (2011)
https://doi.org/10.4141/cjas2010-009

Impacts of herbage mass and sward allowance of perennial ryegrass sampled throughout the growing season on in vitro rumen methane production

P.J. Purcell, M. O’Brien, T.M. Boland, M. O’Donovan and P. O’Kiely
Animal Feed Science and Technology 166-167 405 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.073

Effect of forage-to-concentrate ratio in dairy cow diets on emission of methane, carbon dioxide, and ammonia, lactation performance, and manure excretion

M.J. Aguerre, M.A. Wattiaux, J.M. Powell, G.A. Broderick and C. Arndt
Journal of Dairy Science 94 (6) 3081 (2011)
https://doi.org/10.3168/jds.2010-4011

The Benefits of Supplementary Fat in Feed Rations for Ruminants with Particular Focus on Reducing Levels of Methane Production

J. Rasmussen and A. Harrison
ISRN Veterinary Science 2011 1 (2011)
https://doi.org/10.5402/2011/613172

Evaluation of sulfur content of dried distillers grains with solubles in finishing diets based on steam-flaked corn or dry-rolled corn1,2

S. Uwituze, G. L. Parsons, C. J. Schneider, K. K. Karges, M. L. Gibson, L. C. Hollis, J. J. Higgins and J. S. Drouillard
Journal of Animal Science 89 (8) 2582 (2011)
https://doi.org/10.2527/jas.2010-3103

Inhibition of rumen methanogenesis by tea saponins with reference to fermentation pattern and microbial communities in Hu sheep

Y.Y. Zhou, H.L. Mao, F. Jiang, et al.
Animal Feed Science and Technology 166-167 93 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.007

In vitro fermentation patterns and methane production of sainfoin (Onobrychis viciifolia Scop.) hay with different condensed tannin contents

A. Guglielmelli, S. Calabro`, R. Primi, et al.
Grass and Forage Science 66 (4) 488 (2011)
https://doi.org/10.1111/j.1365-2494.2011.00805.x

In vitro rumen methane output of red clover and perennial ryegrass assayed using the gas production technique (GPT)

A. Navarro-Villa, M. O’Brien, S. López, T.M. Boland and P. O’Kiely
Animal Feed Science and Technology 168 (3-4) 152 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.091

Prediction of enteric methane output from milk fatty acid concentrations and rumen fermentation parameters in dairy cows fed sunflower, flax, or canola seeds

R. Mohammed, S.M. McGinn and K.A. Beauchemin
Journal of Dairy Science 94 (12) 6057 (2011)
https://doi.org/10.3168/jds.2011-4369

Effects of forage chicory (Cichorium intybus) and perennial ryegrass (Lolium perenne) on methane emissions in vitro and from sheep

X.Z. Sun, S.O. Hoskin, S. Muetzel, G. Molano and H. Clark
Animal Feed Science and Technology 166-167 391 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.027

Effects of Saponin Contained Plant Extracts on Ruminal Fermentation Characteristics and Methane Production

Ji-Un Ok, Youl-Chang Baek, Kyoung-Hoon Kim, et al.
Journal of Animal Science and Technology 53 (2) 147 (2011)
https://doi.org/10.5187/JAST.2011.53.2.147

A novel method to determine simultaneously methane production during in vitro gas production using fully automated equipment

W.F. Pellikaan, W.H. Hendriks, G. Uwimana, et al.
Animal Feed Science and Technology 168 (3-4) 196 (2011)
https://doi.org/10.1016/j.anifeedsci.2011.04.096

Methane emissions, feed intake, and performance of finishing beef cattle offered maize silages harvested at 4 different stages of maturity1

E. J. Mc Geough, P. O'Kiely, P. A. Foley, K. J. Hart, T. M. Boland and D. A. Kenny
Journal of Animal Science 88 (4) 1479 (2010)
https://doi.org/10.2527/jas.2009-2380

Long-term spatiotemporal patterns of CH4 and N2O emissions from livestock and poultry production in Turkey

Recep Kulcu, Kamil Ekinci, Fatih Evrendilek and Can Ertekin
Environmental Monitoring and Assessment 167 (1-4) 545 (2010)
https://doi.org/10.1007/s10661-009-1071-x

Can rumen methane production be predicted from volatile fatty acid concentrations?

D. L. Robinson, J. Goopy and R. S. Hegarty
Animal Production Science 50 (6) 630 (2010)
https://doi.org/10.1071/AN09214

In vitro fermentative traits of Australian woody perennial plant species that may be considered as potential sources of feed for grazing ruminants

Z. Durmic, P. Hutton, D.K. Revell, et al.
Animal Feed Science and Technology 160 (3-4) 98 (2010)
https://doi.org/10.1016/j.anifeedsci.2010.07.006

Methane emissions, feed intake, performance, digestibility, and rumen fermentation of finishing beef cattle offered whole-crop wheat silages differing in grain content1

E. J. Mc Geough, P. O'Kiely, K. J. Hart, A. P. Moloney, T. M. Boland and D. A. Kenny
Journal of Animal Science 88 (8) 2703 (2010)
https://doi.org/10.2527/jas.2009-2750

Mitigation of enteric methane emissions through improving efficiency of energy utilization and productivity in lactating dairy cows

T. Yan, C.S. Mayne, F.G. Gordon, et al.
Journal of Dairy Science 93 (6) 2630 (2010)
https://doi.org/10.3168/jds.2009-2929

Effect of breeding for milk yield, diet and management on enteric methane emissions from dairy cows

M. J. Bell, E. Wall, G. Russell, C. Morgan and G. Simm
Animal Production Science 50 (8) 817 (2010)
https://doi.org/10.1071/AN10038

The isotope record of short- and long-term dietary changes in sheep tooth enamel: Implications for quantitative reconstruction of paleodiets

A. Zazzo, M. Balasse, B.H. Passey, et al.
Geochimica et Cosmochimica Acta 74 (12) 3571 (2010)
https://doi.org/10.1016/j.gca.2010.03.017

Functional Gene Analysis Suggests Different Acetogen Populations in the Bovine Rumen and Tammar Wallaby Forestomach

Emma J. Gagen, Stuart E. Denman, Jagadish Padmanabha, Someshwar Zadbuke, Rafat Al Jassim, Mark Morrison and Christopher S. McSweeney
Applied and Environmental Microbiology 76 (23) 7785 (2010)
https://doi.org/10.1128/AEM.01679-10

Interspecies Somatic Cell Nuclear Transfer Technique for Researching Dog Cloning and Embryonic Stem Cells

Satoshi Sugimura and Eimei Sato
Asian-Australasian Journal of Animal Sciences 24 (1) 1 (2010)
https://doi.org/10.5713/ajas.2011.r.01

Effect of Coconut Oil and Sunflower Oil Ratio on Ruminal Fermentation, Rumen Microorganisms, N-balance and Digestibility in Cattle

Ruangyote Pilajun, Metha Wanapat, Chalong Wachirapak and Chainarong Navanukroa
Journal of Animal and Veterinary Advances 9 (13) 1868 (2010)
https://doi.org/10.3923/javaa.2010.1868.1874

The effect of the diet fed to donor sheep on in vitro methane production and ruminal fermentation of diets of variable composition

M.E. Martínez, M.J. Ranilla, M.L. Tejido, C. Saro and M.D. Carro
Animal Feed Science and Technology 158 (3-4) 126 (2010)
https://doi.org/10.1016/j.anifeedsci.2010.04.005

Nutritional evaluation of bamboo cultivars in sub-Himalayan region of India by chemical composition and in vitro ruminal fermentation

Artabandhu Sahoo, Ram K. Ogra, Anil Sood and Paramvir S. Ahuja
Grassland Science 56 (2) 116 (2010)
https://doi.org/10.1111/j.1744-697X.2010.00183.x