Robust assessment of genetic effects on quantitative traits or complex-disease risk requires synthesis of evidence from multiple studies. Frequently, studies have genotyped partially overlapping sets of SNPs within a gene or region of interest, hampering attempts to combine all the available data. By using the example of C-reactive protein (CRP) as a quantitative trait, we show how linkage disequilibrium in and around its gene facilitates use of Bayesian hierarchical models to integrate informative data from all available genetic association studies of this trait, irrespective of the SNP typed. A variable selection scheme, followed by contextualization of SNPs exhibiting independent associations within the haplotype structure of the gene, e...
C-reactive protein (CRP) is a circulating biomarker indicative of systemic inflammation. We aimed to...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Robust assessment of genetic effects on quantitative traits or complex-disease risk requires synthes...
Robust assessment of genetic effects on quantitative traits or complex-disease risk requires synthes...
CRP CHD Genetics Collaboration member: L. J. Palmer for the Western Australia Institute for Medical ...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
C-reactive protein (CRP) is a circulating biomarker indicative of systemic inflammation. We aimed to...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective: To use genetic variants as unconfounded proxies of C reactive protein concentration to st...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
C-reactive protein (CRP) is a circulating biomarker indicative of systemic inflammation. We aimed to...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Robust assessment of genetic effects on quantitative traits or complex-disease risk requires synthes...
Robust assessment of genetic effects on quantitative traits or complex-disease risk requires synthes...
CRP CHD Genetics Collaboration member: L. J. Palmer for the Western Australia Institute for Medical ...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
C-reactive protein (CRP) is a circulating biomarker indicative of systemic inflammation. We aimed to...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective: To use genetic variants as unconfounded proxies of C reactive protein concentration to st...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
C-reactive protein (CRP) is a circulating biomarker indicative of systemic inflammation. We aimed to...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...
Objective To use genetic variants as unconfounded proxies of C reactive protein concentration to stu...