R F Brondum
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Explore the profile of R F Brondum including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
312
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Recent Articles
1.
Vesteghem C, Brondum R, Mouritzen M, Christensen H, Bogsted M, Falkmer U, et al.
Clin Oncol (R Coll Radiol)
. 2022 Apr;
34(8):487-496.
PMID: 35400599
Aims: Risk factors for systemic anticancer therapies (SACTs) administered close to death derived from existing quality indicators are not directly applicable in the clinic, because they condition on future events,...
2.
Lund M, van den Berg I, Ma P, Brondum R, Su G
Animal
. 2016 Jan;
10(6):1042-9.
PMID: 26781646
This paper reviews strategies and methods to improve accuracies of genomic predictions from the perspective of a numerically small population. Improvements are realized by influencing one or both of the...
3.
Brondum R, Su G, Janss L, Sahana G, Guldbrandtsen B, Boichard D, et al.
J Dairy Sci
. 2015 Apr;
98(6):4107-16.
PMID: 25892697
This study investigated the effect on the reliability of genomic prediction when a small number of significant variants from single marker analysis based on whole genome sequence data were added...
4.
Sahana G, Guldbrandtsen B, Thomsen B, Holm L, Panitz F, Brondum R, et al.
J Dairy Sci
. 2014 Aug;
97(11):7258-75.
PMID: 25151887
Mastitis is a mammary disease that frequently affects dairy cattle. Despite considerable research on the development of effective prevention and treatment strategies, mastitis continues to be a significant issue in...
5.
Ma P, Brondum R, Zhang Q, Lund M, Su G
J Dairy Sci
. 2013 May;
96(7):4666-77.
PMID: 23684022
This study investigated the imputation accuracy of different methods, considering both the minor allele frequency and relatedness between individuals in the reference and test data sets. Two data sets from...
6.
Rius-Vilarrasa E, Brondum R, Stranden I, Guldbrandtsen B, Strandberg E, Lund M, et al.
J Anim Breed Genet
. 2012 Sep;
129(5):369-79.
PMID: 22963358
Using a combined multi-breed reference population, this study explored the influence of model specification and the effect of including a polygenic effect on the reliability of genomic breeding values (DGV...
7.
Brondum R, Ma P, Lund M, Su G
J Dairy Sci
. 2012 Sep;
95(11):6795-800.
PMID: 22939787
This study investigated the accuracies of imputation from 50K genotypes to high-density genotypes for animals from the Danish, Swedish, or Finnish Red dairy cattle populations, using either a national, combined...
8.
Su G, Brondum R, Ma P, Guldbrandtsen B, Aamand G, Lund M
J Dairy Sci
. 2012 Jul;
95(8):4657-65.
PMID: 22818480
This study investigated genomic prediction using medium-density (∼54,000; 54K) and high-density marker panels (∼777,000; 777K), based on data from Nordic Holstein and Red Dairy Cattle (RDC). The Holstein data comprised...
9.
Thomasen J, Guldbrandtsen B, Su G, Brondum R, Lund M
Animal
. 2012 May;
6(5):789-96.
PMID: 22558926
In order to optimize the use of genomic selection in breeding plans, it is essential to have reliable estimates of the genomic breeding values. This study investigated reliabilities of direct...
10.
Brondum R, Rius-Vilarrasa E, Stranden I, Su G, Guldbrandtsen B, Fikse W, et al.
J Dairy Sci
. 2011 Aug;
94(9):4700-7.
PMID: 21854944
This study investigated the possibility of increasing the reliability of direct genomic values (DGV) by combining reference populations. The data were from 3,735 bulls from Danish, Swedish, and Finnish Red...