Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Pszczola, M.
Rzewuska, K.
Mucha, S.
and
Strabel, T.
2017.
Heritability of methane emissions from dairy cows over a lactation measured on commercial farms1.
Journal of Animal Science,
Vol. 95,
Issue. 11,
p.
4813.
Shetty, N.
Difford, G.
Lassen, J.
Løvendahl, P.
and
Buitenhuis, A.J.
2017.
Predicting methane emissions of lactating Danish Holstein cows using Fourier transform mid-infrared spectroscopy of milk.
Journal of Dairy Science,
Vol. 100,
Issue. 11,
p.
9052.
Sandri, Misa
Licastro, Danilo
Dal Monego, Simeone
Sgorlon, Sandy
and
Stefanon, Bruno
2018.
Investigation of rumen metagenome in Italian Simmental and Italian Holstein cows using a whole-genome shotgun sequencing technique.
Italian Journal of Animal Science,
Vol. 17,
Issue. 4,
p.
890.
Pszczola, M.
Strabel, T.
Mucha, S.
and
Sell-Kubiak, E.
2018.
Genome-wide association identifies methane production level relation to genetic control of digestive tract development in dairy cows.
Scientific Reports,
Vol. 8,
Issue. 1,
Pszczola, M.
Calus, M.P.L.
and
Strabel, T.
2019.
Short communication: Genetic correlations between methane and milk production, conformation, and functional traits.
Journal of Dairy Science,
Vol. 102,
Issue. 6,
p.
5342.
Sypniewski, M.
Strabel, T.
Cieslak, A.
Szumacher-Strabel, M.
and
Pszczola, M.
2019.
Technical note: Interchangeability and comparison of methane measurements in dairy cows with 2 noninvasive infrared systems.
Journal of Dairy Science,
Vol. 102,
Issue. 10,
p.
9512.
Breider, I.S.
Wall, E.
and
Garnsworthy, P.C.
2019.
Short communication: Heritability of methane production and genetic correlations with milk yield and body weight in Holstein-Friesian dairy cows.
Journal of Dairy Science,
Vol. 102,
Issue. 8,
p.
7277.
Muñoz-Tamayo, R.
Ramírez Agudelo, J.F.
Dewhurst, R.J.
Miller, G.
Vernon, T.
and
Kettle, H.
2019.
A parsimonious software sensor for estimating the individual dynamic pattern of methane emissions from cattle.
Animal,
Vol. 13,
Issue. 6,
p.
1180.
Wallace, R. John
Sasson, Goor
Garnsworthy, Philip C.
Tapio, Ilma
Gregson, Emma
Bani, Paolo
Huhtanen, Pekka
Bayat, Ali R.
Strozzi, Francesco
Biscarini, Filippo
Snelling, Timothy J.
Saunders, Neil
Potterton, Sarah L.
Craigon, James
Minuti, Andrea
Trevisi, Erminio
Callegari, Maria L.
Cappelli, Fiorenzo Piccioli
Cabezas-Garcia, Edward H.
Vilkki, Johanna
Pinares-Patino, Cesar
Fliegerová, Kateřina O.
Mrázek, Jakub
Sechovcová, Hana
Kopečný, Jan
Bonin, Aurélie
Boyer, Frédéric
Taberlet, Pierre
Kokou, Fotini
Halperin, Eran
Williams, John L.
Shingfield, Kevin J.
and
Mizrahi, Itzhak
2019.
A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions.
Science Advances,
Vol. 5,
Issue. 7,
Garnsworthy, Philip C.
Difford, Gareth F.
Bell, Matthew J.
Bayat, Ali R.
Huhtanen, Pekka
Kuhla, Björn
Lassen, Jan
Peiren, Nico
Pszczola, Marcin
Sorg, Diana.
Visker, Marleen H.P.W.
and
Yan, Tianhai
2019.
Comparison of Methods to Measure Methane for Use in Genetic Evaluation of Dairy Cattle.
Animals,
Vol. 9,
Issue. 10,
p.
837.
Difford, G.F.
Løvendahl, P.
Veerkamp, R.F.
Bovenhuis, H.
Visker, M.H.P.W.
Lassen, J.
and
de Haas, Y.
2020.
Can greenhouse gases in breath be used to genetically improve feed efficiency of dairy cows?.
Journal of Dairy Science,
Vol. 103,
Issue. 3,
p.
2442.
Huhtanen, P.
Bayat, A.R.
Lund, P.
Hellwing, A.L.F.
and
Weisbjerg, M.R.
2020.
Short communication: Variation in feed efficiency hampers use of carbon dioxide as a tracer gas in measuring methane emissions in on-farm conditions.
Journal of Dairy Science,
Vol. 103,
Issue. 10,
p.
9090.
López-Paredes, J.
Goiri, I.
Atxaerandio, R.
García-Rodríguez, A.
Ugarte, E.
Jiménez-Montero, J.A.
Alenda, R.
and
González-Recio, O.
2020.
Mitigation of greenhouse gases in dairy cattle via genetic selection: 1. Genetic parameters of direct methane using noninvasive methods and proxies of methane.
Journal of Dairy Science,
Vol. 103,
Issue. 8,
p.
7199.
Pérez-Enciso, Miguel
and
Steibel, Juan P.
2021.
Phenomes: the current frontier in animal breeding.
Genetics Selection Evolution,
Vol. 53,
Issue. 1,
Hardan, Ali
Garnsworthy, Philip C.
and
Bell, Matt J.
2021.
Detection of Methane Eructation Peaks in Dairy Cows at a Robotic Milking Station Using Signal Processing.
Animals,
Vol. 12,
Issue. 1,
p.
26.
Christensen, Ole F
Börner, Vinzent
Varona, Luis
and
Legarra, Andres
2021.
Genetic evaluation including intermediate omics features.
Genetics,
Vol. 219,
Issue. 2,
Suzuki, Tomoyuki
Kamiya, Yuko
Oikawa, Kohei
Nonaka, Itoko
Shinkai, Takumi
Terada, Fuminori
and
Obitsu, Taketo
2021.
Prediction of enteric methane emissions from lactating cows using methane to carbon dioxide ratio in the breath.
Animal Science Journal,
Vol. 92,
Issue. 1,
Sorg, Diana
2021.
Measuring Livestock CH4 Emissions with the Laser Methane Detector: A Review.
Methane,
Vol. 1,
Issue. 1,
p.
38.
Strandén, I.
Kantanen, J.
Lidauer, M.H.
Mehtiö, T.
and
Negussie, E.
2022.
Animal board invited review: Genomic-based improvement of cattle in response to climate change.
animal,
Vol. 16,
Issue. 12,
p.
100673.
Huuki, Hanna
Tapio, Miika
Mäntysaari, Päivi
Negussie, Enyew
Ahvenjärvi, Seppo
Vilkki, Johanna
Vanhatalo, Aila
and
Tapio, Ilma
2022.
Long-term effects of early-life rumen microbiota modulation on dairy cow production performance and methane emissions.
Frontiers in Microbiology,
Vol. 13,
Issue. ,