about
Lifelong reduction of LDL-cholesterol related to a common variant in the LDL-receptor gene decreases the risk of coronary artery disease--a Mendelian Randomisation studyMendelian randomisation and causal inference in observational epidemiologySex hormone-binding globulin and risk of type 2 diabetes in women and menAMD Genetics in India: The Missing LinksMendelian Randomization for Strengthening Causal Inference in Observational StudiesMendelian randomization as an instrumental variable approach to causal inferenceMendelian Randomization as an Approach to Assess Causality Using Observational Data.Mendelian randomization study of adiposity-related traits and risk of breast, ovarian, prostate, lung and colorectal cancer.Mendelian randomization analysis with multiple genetic variants using summarized data.Using current data to define new approach in age related macular degeneration: need to accelerate translational research.Detecting pleiotropy in Mendelian randomisation studies with summary data and a continuous outcome.Using genetic markers to orient the edges in quantitative trait networks: the NEO softwareBayesian inference of gene-environment interaction from incomplete data: what happens when information on environment is disjoint from data on gene and disease?Usefulness of Mendelian randomization in observational epidemiology.Bayesian methods for instrumental variable analysis with genetic instruments ('Mendelian randomization'): example with urate transporter SLC2A9 as an instrumental variable for effect of urate levels on metabolic syndromeEstimating and testing pleiotropy of single genetic variant for two quantitative traits.A comparison of three methods of Mendelian randomization when the genetic instrument, the risk factor and the outcome are all binary.Methods for meta-analysis of individual participant data from Mendelian randomisation studies with binary outcomes.Use of genetic markers and gene-diet interactions for interrogating population-level causal influences of diet on health.Mendelian randomization: how it can--and cannot--help confirm causal relations between nutrition and cancerModel selection approach suggests causal association between 25-hydroxyvitamin D and colorectal cancerMetabolic imbalance and prostate cancer progression.Integrating epidemiology and genetic association: the challenge of gene-environment interaction.A Bayesian approach for instrumental variable analysis with censored time-to-event outcome.Power and instrument strength requirements for Mendelian randomization studies using multiple genetic variants.Two-step epigenetic Mendelian randomization: a strategy for establishing the causal role of epigenetic processes in pathways to disease.Gene-environment interactions in sarcoidosis: challenge and opportunity.Generating a robust statistical causal structure over 13 cardiovascular disease risk factors using genomics data.Using gene-environment interaction analyses to clarify the role of well-done meat and heterocyclic amine exposure in the etiology of colorectal polyps.A prospective study of leukocyte telomere length and risk of type 2 diabetes in postmenopausal womenA tangled threesome: adiponectin, insulin sensitivity, and adiposity: can Mendelian randomization sort out causality?Interaction of cigarette smoking and carcinogen-metabolizing polymorphisms in the risk of colorectal polyps.Plasma Copeptin, AVP Gene Variants, and Incidence of Type 2 Diabetes in a Cohort From the Community.Use of biological assignment in hematopoietic stem cell transplantation clinical trials.Strengthening causal inference in cardiovascular epidemiology through Mendelian randomization.Observational research--opportunities and limitations.Mendelian randomization: potential use of genetics to enable causal inferences regarding HIV-associated biomarkers and outcomes.Methodological challenges in mendelian randomizationUse of pathway information in molecular epidemiology.Inferring causal phenotype networks using structural equation models.
P2860
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P2860
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年学术文章
@wuu
2004年学术文章
@zh
2004年学术文章
@zh-cn
2004年学术文章
@zh-hans
2004年学术文章
@zh-my
2004年学术文章
@zh-sg
2004年學術文章
@yue
2004年學術文章
@zh-hant
name
Commentary: the concept of 'Mendelian Randomization'.
@en
Commentary: the concept of 'Mendelian Randomization'.
@nl
type
label
Commentary: the concept of 'Mendelian Randomization'.
@en
Commentary: the concept of 'Mendelian Randomization'.
@nl
prefLabel
Commentary: the concept of 'Mendelian Randomization'.
@en
Commentary: the concept of 'Mendelian Randomization'.
@nl
P356
P1476
Commentary: the concept of 'Mendelian Randomization'.
@en
P2093
David V Conti
Duncan C Thomas
P356
10.1093/IJE/DYH048
P577
2004-02-01T00:00:00Z