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

Articles citing this paper

Genesis of the Cooperative Research Centre for the Cattle and Beef Industry: integration of resources for beef quality research (1993-2000)

B. M. Bindon
41(7) pp.843 - 853


37 articles found in Crossref database.

Brahman and Brahman crossbred cattle grown on pasture and in feedlots in subtropical and temperate Australia. 2. Meat quality and palatability
Schutt K. M., Burrow H. M., Thompson J. M., Bindon B. M.
Animal Production Science. 2009 49(6). p.439
Molecular value predictions: Associations with beef quality, carcass, production, behavior, and efficiency phenotypes in Brahman cattle1
Greenwood P. L., Cafe L. M., McIntyre B. L., Geesink G. H., Thompson J. M., Polkinghorne R., Pethick D. W., Robinson D. L.
Journal of Animal Science. 2013 91(12). p.5912
Assessing the accuracy of modelling weight gain of cattle using feed efficiency data
Robinson D.L.
Livestock Production Science. 2005 95(3). p.187
CRC 'Regional Combinations' project — effects of genetics and growth paths on beef production and meat quality: experimental design, methods and measurements.
McKiernan W. A., Wilkins J. F., Barwick S. A., Tudor G. D., McIntyre B. L., Graham J. F., Deland M. P. B., Davies L.
Australian Journal of Experimental Agriculture. 2005 45(8). p.959
Spectral analysis of feeding patterns of steers divergent in residual feed intake
Dobos Robin, Herd Robert
Australian Journal of Experimental Agriculture. 2008 48(7). p.843
Consequences of prenatal and preweaning growth for feedlot growth, intake and efficiency of Piedmontese- and Wagyu-sired cattle
Cafe L. M., Hennessy D. W., Hearnshaw H., Morris S. G., Greenwood P. L.
Animal Production Science. 2009 49(6). p.461
Temperament and hypothalamic-pituitary-adrenal axis function are related and combine to affect growth, efficiency, carcass, and meat quality traits in Brahman steers
Cafe L.M., Robinson D.L., Ferguson D.M., Geesink G.H., Greenwood P.L.
Domestic Animal Endocrinology. 2011 40(4). p.230
Conserving the zoological resources of Bangladesh under a changing climate
DAS Bidhan C.
Integrative Zoology. 2009 4(2). p.213
Genetics research in the Cooperative Research Centre for Cattle and Beef Quality
Burrow H. M., Bindon B. M.
Australian Journal of Experimental Agriculture. 2005 45(8). p.941
Production and processing studies on calpain-system gene markers for tenderness in Brahman cattle: 1. Growth, efficiency, temperament, and carcass characteristics1
Cafe L. M., McIntyre B. L., Robinson D. L., Geesink G. H., Barendse W., Greenwood P. L.
Journal of Animal Science. 2010 88(9). p.3047
Feed intake, growth, and body and carcass attributes of feedlot steers supplemented with two levels of calcium nitrate or urea1
Hegarty R. S., Miller J., Oelbrandt N., Li L., Luijben J. P. M., Robinson D. L., Nolan J. V., Perdok H. B.
Journal of Animal Science. 2016 94(12). p.5372
Optimizing test procedures for estimating daily methane and carbon dioxide emissions in cattle using short-term breath measures1,2
Arthur P. F., Barchia I. M., Weber C., Bird-Gardiner T., Donoghue K. A., Herd R. M., Hegarty R. S.
Journal of Animal Science. 2017 95(2). p.645
Estimating the genetic merit of sires by using pooled DNA from progeny of undetermined pedigree
Bell Amy M., Henshall John M., Porto-Neto Laercio R., Dominik Sonja, McCulloch Russell, Kijas James, Lehnert Sigrid A.
Genetics Selection Evolution. 2017 49(1).
Phenotypic relationships among methane production traits assessed under ad libitum feeding of beef cattle1,2
Bird-Gardiner T., Arthur P. F., Barchia I. M., Donoghue K. A., Herd R. M.
Journal of Animal Science. 2017 95(10). p.4391
Using gene expression information obtained by quantitative real-time PCR to evaluate Angus bulls divergently selected for feed efficiency
Chen Y., Arthur P. F., Barchia I. M., Quinn K., Parnell P. F., Herd R. M.
Animal Production Science. 2012 52(11). p.1058
Modeling the relationship between scanned rump and 12th-rib fat in young temperate and tropical bovines: Model development and evaluation1,2
Walmsley B. J., Wolcott M. L., McPhee M. J.
Journal of Animal Science. 2010 88(5). p.1848
Global gene expression profiling reveals genes expressed differentially in cattle with high and low residual feed intake
Chen Y., Gondro C., Quinn K., Herd R. M., Parnell P. F., Vanselow B.
Animal Genetics. 2011 42(5). p.475
Genetic variation in fatty acid composition of subcutaneous fat in cattle
Kelly M. J., Tume R. K., Newman S., Thompson J. M.
Animal Production Science. 2013 53(2). p.129
Methane emissions and feeding behaviour of feedlot cattle supplemented with nitrate or urea
Velazco J. I., Cottle D. J., Hegarty R. S.
Animal Production Science. 2014 54(10). p.1737
Integration of genomic information into beef cattle and sheep genetic evaluations in Australia
Swan Andrew A., Johnston David J., Brown Daniel J., Tier Bruce, Graser Hans-U.
Animal Production Science. 2012 52(3). p.126
Evolution of the Meat Standards Australia (MSA) beef grading system
Polkinghorne R., Thompson J. M., Watson R., Gee A., Porter M.
Australian Journal of Experimental Agriculture. 2008 48(11). p.1351
Beef cattle methane emissions measured with tracer-ratio and inverse dispersion modelling techniques
Bai Mei, Velazco José I., Coates Trevor W., Phillips Frances A., Flesch Thomas K., Hill Julian, Mayer David G., Tomkins Nigel W., Hegarty Roger S., Chen Deli
Atmospheric Measurement Techniques. 2021 14(5). p.3469
Accounting for bias in regression coefficients with example from feed efficiency
Robinson D.L.
Livestock Production Science. 2005 95(1-2). p.155
Relationships among carbon dioxide, feed intake, and feed efficiency traits in ad libitum fed beef cattle1,2
Arthur Paul F, Bird-Gardiner Tracie, Barchia Idris M, Donoghue Kath A, Herd Robert M
Journal of Animal Science. 2018 96(11). p.4859
Brahman and Brahman crossbred cattle grown on pasture and in feedlots in subtropical and temperate Australia. 3. Feed efficiency and feeding behaviour of feedlot-finished animals
Schutt K. M., Arthur P. F., Burrow H. M.
Animal Production Science. 2009 49(6). p.452
Brahman and Brahman crossbred cattle grown on pasture and in feedlots in subtropical and temperate Australia. 1. Carcass quality
Schutt K. M., Burrow H. M., Thompson J. M., Bindon B. M.
Animal Production Science. 2009 49(6). p.426
An overview on production, consumer perspectives and quality assurance schemes of beef in Mexico
Parra-Bracamonte G.M., Lopez-Villalobos N., Morris S.T., Vázquez-Armijo J.F.
Meat Science. 2020 170 p.108239
Cattle temperament: Persistence of assessments and associations with productivity, efficiency, carcass and meat quality traits1
Cafe L. M., Robinson D. L., Ferguson D. M., McIntyre B. L., Geesink G. H., Greenwood P. L.
Journal of Animal Science. 2011 89(5). p.1452
Performance of steer progeny of sires differing in genetic potential for fatness and meat yield following post-weaning growth at different rates. 1. Growth and live-animal composition
Wilkins J. F., McKiernan W. A., Irwin J., Orchard B., Barwick S. A.
Animal Production Science. 2009 49(6). p.515
Cattle selected for lower residual feed intake have reduced daily methane production1,2
Hegarty R. S., Goopy J. P., Herd R. M., McCorkell B.
Journal of Animal Science. 2007 85(6). p.1479
The effect of variation at the retinoic acid receptor-related orphan receptor C gene on intramuscular fat percent and marbling score in Australian cattle1,2
Barendse W., Bunch R. J., Harrison B. E.
Journal of Animal Science. 2010 88(1). p.47
Use of short-term breath measures to estimate daily methane production by cattle
Velazco J.I., Mayer D.G., Zimmerman S., Hegarty R.S.
Animal. 2016 10(1). p.25
Estimating daily methane production in individual cattle with irregular feed intake patterns from short-term methane emission measurements
Cottle D.J., Velazco J., Hegarty R.S., Mayer D.G.
Animal. 2015 9(12). p.1949
Worldwide stable carbon and nitrogen isotopes of Big Mac® patties: An example of a truly “glocal” food
Martinelli Luiz A., Nardoto Gabriela B., Chesson Lesley A., Rinaldi Fernando D., Ometto Jean Pierre H.B., Cerling Thure E., Ehleringer James R.
Food Chemistry. 2011 127(4). p.1712
Breeding strategies for the development of the Australian beef industry: an overview
Hammond K.
Australian Journal of Experimental Agriculture. 2006 46(2). p.183
Performance of steer progeny of sires differing in genetic potential for fatness and meat yield following postweaning growth at different rates. 2. Carcass traits
McKiernan W. A., Wilkins J. F., Irwin J., Orchard B., Barwick S. A.
Animal Production Science. 2009 49(6). p.525
Bernard Michael Bindon — reproductive physiologist, animal scientist, research leader
Entwistle K. W., Cummins L. J., Hillard M. A., Kinder J. E., O'Shea T., Piper L. R., Thimonier J., Wilkins J. F.
Australian Journal of Experimental Agriculture. 2006 46(2). p.i

Committee on Publication Ethics

Abstract PDF (411 KB) Export Citation Get Permission

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email