A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
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Linking Genes to Cardiovascular Diseases: Gene Action and Gene-Environment Interactions.Plasma acylcarnitines are associated with pulmonary hypertension.Genetic Variants in the Bone Morphogenic Protein Gene Family Modify the Association between Residential Exposure to Traffic and Peripheral Arterial Disease.Case-Only Survival Analysis Reveals Unique Effects of Genotype, Sex, and Coronary Disease Severity on Survivorship.A genome-wide trans-ethnic interaction study links the PIGR-FCAMR locus to coronary atherosclerosis via interactions between genetic variants and residential exposure to trafficAssociation between satellite-based estimates of long-term PM2.5 exposure and coronary artery diseaseHigh-density lipoprotein subclass measurements improve mortality risk prediction, discrimination and reclassification in a cardiac catheterization cohort.Metabolomic Profiling Identifies Novel Circulating Biomarkers of Mitochondrial Dysfunction Differentially Elevated in Heart Failure With Preserved Versus Reduced Ejection Fraction: Evidence for Shared Metabolic Impairments in Clinical Heart Failure.A novel approach for measuring residential socioeconomic factors associated with cardiovascular and metabolic health.Fine particulate matter and cardiovascular disease: Comparison of assessment methods for long-term exposure.Ozone exposure is associated with acute changes in inflammation, fibrinolysis, and endothelial cell function in coronary artery disease patients.Apolipoprotein L1 Genetic Variants Are Associated with Chronic Kidney Disease but Not with Cardiovascular Disease in a Population Referred for Cardiac Catheterization.Genetic and Pharmacologic Inactivation of ANGPTL3 and Cardiovascular Disease.Whole Transcriptome Profiling: An RNA-Seq Primer and Implications for Pharmacogenomics Research.A Novel Protein Glycan-Derived Inflammation Biomarker Independently Predicts Cardiovascular Disease and Modifies the Association of HDL Subclasses with Mortality.Genetic inactivation of ANGPTL4 improves glucose homeostasis and is associated with reduced risk of diabetes.
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P2860
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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name
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@ast
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@en
type
label
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@ast
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@en
prefLabel
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@ast
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@en
P2093
P2860
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P1476
A Guide for a Cardiovascular Genomics Biorepository: the CATHGEN Experience.
@en
P2093
Carol Haynes
Elizabeth R Hauser
Geoffrey S Ginsburg
Mark P Donahue
Melissa Hurdle
Michael H Sketch
Svati H Shah
Z Elaine Dowdy
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P2888
P304
P356
10.1007/S12265-015-9648-Y
P407
P577
2015-08-14T00:00:00Z