PuSH - Publication Server of Helmholtz Zentrum München

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1.
Ezzati, M.* et al.: Worldwide trends in body-mass index, underweight, overweight, and obesity from 1975 to 2016: A pooled analysis of 2416 population-based measurement studies in 128.9 million children, adolescents, and adults. Lancet 390, 2627-2642 (2017)
2.
Kollerits, B.* et al.: Plasma concentrations of afamin are associated with prevalent and incident type 2 diabetes: A pooled analysis in more than 20,000 individuals. Diabetes Care 40, 1386-1393 (2017)
3.
Mack, S.* et al.: Evaluating the causal relation of ApoA-IV with disease-related traits - A bidirectional two-sample mendelian randomization study. Sci. Rep. 7:8734 (2017)
4.
Paige, E.* et al.: Use of repeated blood pressure and cholesterol measurements to improve cardiovascular disease risk prediction: An individual-participant-data meta-analysis. Am. J. Epidemiol. 186, 899-907 (2017)
5.
NCD Risk Factors Collaboration et al.: Trends in adult body-mass index in 200 countries from 1975 to 2014: A pooled analysis of 1698 population-based measurement studies with 19.2 million participants. Lancet 387, 1377-1396 (2016)
6.
Barban, N.* et al.: Genome-wide analysis identifies 12 loci influencing human reproductive behavior. Nat. Genet. 48, 1462-1472 (2016)
7.
Eisenberg, T.* et al.: Cardioprotection and lifespan extension by the natural polyamine spermidine. Nat. Med. 22, 1428-1438 (2016)
8.
Kollerits, B.* et al.: Plasma concentrations of afamin are associated with the prevalence and incidence of type 2 diabetes mellitus. Atherosclerosis 252, E217-E218 (2016)
9.
Lamina, C.* et al.: A genome-wide association meta-analysis on apolipoprotein A-IV concentrations. Hum. Mol. Genet. 25, 3635-3646 (2016)
10.
Pechlaner, R.* et al.: Heme oxygenase-1 gene promoter microsatellite polymorphism is associated with progressive atherosclerosis and incident cardiovascular disease. Arterioscler. Thromb. Vasc. Biol. 35, 229-236 (2015)
11.
Pechlaner, R.* et al.: Heme oxygenase-1 gene promoter microsatellite polymorphism is associated with progressive atherosclerosis and incident cardiovascular disease. Int. J. Stroke 10, 250 (2015)
12.
Arking, D.E.* et al.: Genetic association study of QT interval highlights role for calcium signaling pathways in myocardial repolarization. Nat. Genet. 46, 826-836 (2014)
13.
Dieplinger, H.* et al.: Plasma concentrations of afamin are associated with the prevalence and developement of metabolic syndrome. Atherosclerosis 235, E70-E71 (2014)
14.
Kronenberg, F.* et al.: Plasma concentrations of afamin are associated with the prevalence and development of metabolic syndrome. Circ. Cardiovasc. Genet. 7, 822-829 (2014)
15.
Emerging Risk Factors Collaboration (Meisinger, C.) et al.: Glycated hemoglobin measurement and prediction of cardiovascular disease. JAMA 311, 1225-1233 (2014)
16.
Murabito, J.M.* et al.: Association between chromosome 9p21 variants and the ankle-brachial index identified by a meta-analysis of 21 genome-wide association studies. Circ. Cardiovasc. Genet. 5, 100-112 (2012)
17.
Sarwar, N.* et al.: Triglyceride-mediated pathways and coronary disease: Collaborative analysis of 101 studies. Lancet 375, 1634-1639 (2010)
18.
Thompson, A.* et al.: Lipoprotein-associated phospholipase A₂ and risk of coronary disease, stroke, and mortality: Collaborative analysis of 32 prospective studies. Lancet 375, 1536-1544 (2010)
19.
di Angelantonio, E.* et al.: Major lipids, apolipoproteins, and risk of vascular disease. JAMA 302, 1993-2000 (2009)
20.
Erqou, S.* et al.: Lipoprotein(a) concentration and the risk of coronary heart disease, stroke, and nonvascular mortality. JAMA 302, 412-423 (2009)