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F Loos

Showing results (501-510 of 590) with videos related to

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Diabetes|September 23, 2010
Common variants at 10 genomic loci influence hemoglobin A₁(C) levels via glycemic and nonglycemic pathwaysNicole Soranzo, Serena Sanna, Eleanor Wheeler, et al.
Nature Genetics|June 19, 2023
Genome-wide association analyses define pathogenic signaling pathways and prioritize drug targets for IgA nephropathyKrzysztof Kiryluk, Elena Sanchez-Rodriguez, Xu-Jie Zhou, et al.
Nature Communications|September 1, 2022
Genetic analyses of the electrocardiographic QT interval and its components identify additional loci and pathwaysWilliam J Young, Najim Lahrouchi, Aaron Isaacs, et al.
Nature|September 18, 2012
FTO genotype is associated with phenotypic variability of body mass indexJian Yang, Ruth J F Loos, Joseph E Powell, et al.
Nature Genetics|November 25, 2010
Thirty new loci for age at menarche identified by a meta-analysis of genome-wide association studiesCathy E Elks, John R B Perry, Patrick Sulem, et al.
Nature Communications|February 3, 2016
Genome-wide meta-analysis uncovers novel loci influencing circulating leptin levelsTuomas O Kilpeläinen, Jayne F Martin Carli, Alicja A Skowronski, et al.
Nature|December 11, 2012
Seventy-five genetic loci influencing the human red blood cellPim van der Harst, Weihua Zhang, Irene Mateo Leach, et al.
Nature Communications|May 23, 2020
Multi-ancestry GWAS of the electrocardiographic PR interval identifies 202 loci underlying cardiac conductionIoanna Ntalla, Lu-Chen Weng, James H Cartwright, et al.
Nature Communications|August 2, 2023
Genetic insights into resting heart rate and its role in cardiovascular diseaseYordi J van de Vegte, Ruben N Eppinga, M Yldau van der Ende, et al.
American Journal of Human Genetics|December 21, 2021
Rare coding variants in 35 genes associate with circulating lipid levels-A multi-ancestry analysis of 170,000 exomesGeorge Hindy, Peter Dornbos, Mark D Chaffin, et al.
Pageof 59

Showing results (501-510 of 590) with videos related to

Sort By:
Pageof 59
Diabetes|September 23, 2010
Common variants at 10 genomic loci influence hemoglobin A₁(C) levels via glycemic and nonglycemic pathwaysNicole Soranzo, Serena Sanna, Eleanor Wheeler, et al.
Nature Genetics|June 19, 2023
Genome-wide association analyses define pathogenic signaling pathways and prioritize drug targets for IgA nephropathyKrzysztof Kiryluk, Elena Sanchez-Rodriguez, Xu-Jie Zhou, et al.
Nature Communications|September 1, 2022
Genetic analyses of the electrocardiographic QT interval and its components identify additional loci and pathwaysWilliam J Young, Najim Lahrouchi, Aaron Isaacs, et al.
Nature|September 18, 2012
FTO genotype is associated with phenotypic variability of body mass indexJian Yang, Ruth J F Loos, Joseph E Powell, et al.
Nature Genetics|November 25, 2010
Thirty new loci for age at menarche identified by a meta-analysis of genome-wide association studiesCathy E Elks, John R B Perry, Patrick Sulem, et al.
Nature Communications|February 3, 2016
Genome-wide meta-analysis uncovers novel loci influencing circulating leptin levelsTuomas O Kilpeläinen, Jayne F Martin Carli, Alicja A Skowronski, et al.
Nature|December 11, 2012
Seventy-five genetic loci influencing the human red blood cellPim van der Harst, Weihua Zhang, Irene Mateo Leach, et al.
Nature Communications|May 23, 2020
Multi-ancestry GWAS of the electrocardiographic PR interval identifies 202 loci underlying cardiac conductionIoanna Ntalla, Lu-Chen Weng, James H Cartwright, et al.
Nature Communications|August 2, 2023
Genetic insights into resting heart rate and its role in cardiovascular diseaseYordi J van de Vegte, Ruben N Eppinga, M Yldau van der Ende, et al.
American Journal of Human Genetics|December 21, 2021
Rare coding variants in 35 genes associate with circulating lipid levels-A multi-ancestry analysis of 170,000 exomesGeorge Hindy, Peter Dornbos, Mark D Chaffin, et al.
Pageof 59