"Good enough solutions" and the genetics of complex diseases.
about
The next generation of risk assessment multiyear study - highlights of findings, applications to risk assessment, and future directionsElectrophysiology of Heart Failure Using a Rabbit Model: From the Failing Myocyte to Ventricular Fibrillation.Cardiovascular proteomics in the era of big data: experimental and computational advancesGenome-wide significant loci: how important are they? Systems genetics to understand heritability of coronary artery disease and other common complex disordersInherited dysfunctional nitric oxide signaling and the pathobiology of atherothrombotic disease.Minerva and minepy: a C engine for the MINE suite and its R, Python and MATLAB wrappers.Genetic determinants of atherosclerosis, obesity, and energy balance in consomic mice.Cell-specific cardiac electrophysiology models.Scavenger receptor class A member 5 (SCARA5) and suprabasin (SBSN) are hub genes of coexpression network modules associated with peripheral vein graft patency.Graph-theoretical model of global human interactome reveals enhanced long-range communicability in cancer networks.Variability in cardiac electrophysiology: Using experimentally-calibrated populations of models to move beyond the single virtual physiological human paradigm.Longitudinal analysis of short-term high-fat diet on endothelial senescence in baboons.Uncovering the liver's role in immunity through RNA co-expression networks.Systems genetics approaches to understand complex traits.Biomarkers associated with migraine and their potential role in migraine management.Systems biological approaches to the cardiac signaling network.A Systems Biology Approach to Investigating Sex Differences in Cardiac Hypertrophy.Improving cardiomyocyte model fidelity and utility via dynamic electrophysiology protocols and optimization algorithms.Undiscovered Physiology of Transcript and Protein Networks.Rabbit-specific computational modelling of ventricular cell electrophysiology: Using populations of models to explore variability in the response to ischemia.Using Baseline Transcriptional Connectomes in Rat to Identify Genetic Pathways Associated with Predisposition to Complex Traits.Dual Linkage of a Locus to Left Ventricular Mass and a Cardiac Gene Co-Expression Network Driven by a Chromosome Domain.Network analysis identifies protein clusters of functional importance in juvenile idiopathic arthritis.Relationship of disease-associated gene expression to cardiac phenotype is buffered by genetic diversity and chromatin regulationNetwork statistics of genetically-driven gene co-expression modules in mouse crosses.Recent advances in understanding and prevention of sudden cardiac death.Potassium currents in the heart: functional roles in repolarization, arrhythmia and therapeutics.Potassium channels in the heart: structure, function and regulation.Association between preoperative peripheral blood mononuclear cell gene expression profiles, early postoperative organ function recovery potential and long-term survival in advanced heart failure patients undergoing mechanical circulatory support.From ionic to cellular variability in human atrial myocytes: an integrative computational and experimental study.Differential roles of two delayed rectifier potassium currents in regulation of ventricular action potential duration and arrhythmia susceptibility.A personalized, multiomics approach identifies genes involved in cardiac hypertrophy and heart failure.An Epidemiological Human Disease Network Derived from Disease Co-occurrence in Taiwan.MicroRNAs Establish Uniform Traits during the Architecture of Vertebrate Embryos.Replication of the top 10 most significant polymorphisms from a large blood pressure genome-wide association study of northeastern Han Chinese East Asians.The Ca transient as a feedback sensor controlling cardiomyocyte ionic conductances in mouse populationsCo-Expression Network Analysis Identifies miRNA⁻mRNA Networks Potentially Regulating Milk Traits and Blood Metabolites
P2860
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P2860
"Good enough solutions" and the genetics of complex diseases.
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
"Good enough solutions" and the genetics of complex diseases.
@ast
"Good enough solutions" and the genetics of complex diseases.
@en
type
label
"Good enough solutions" and the genetics of complex diseases.
@ast
"Good enough solutions" and the genetics of complex diseases.
@en
prefLabel
"Good enough solutions" and the genetics of complex diseases.
@ast
"Good enough solutions" and the genetics of complex diseases.
@en
P2093
P2860
P50
P1433
P1476
"Good enough solutions" and the genetics of complex diseases.
@en
P2093
Alain Karma
Christoph D Rau
Colin M Rees
James N Weiss
Mario Deng
Nicholas Wisniewski
Steve Horvath
W Robb MacLellan
P2860
P304
P356
10.1161/CIRCRESAHA.112.269084
P577
2012-08-01T00:00:00Z