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26,306 results on '"Gene-Environment Interaction"'

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1. A scalable and robust variance components method reveals insights into the architecture of gene-environment interactions underlying complex traits.

2. Gene-environment interactions: Epstein-Barr virus infection and risk of pediatric-onset multiple sclerosis.

3. BHAFT: Bayesian heredity‐constrained accelerated failure time models for detecting gene‐environment interactions in survival analysis.

4. Genetic risk accentuates dietary effects on hepatic steatosis, inflammation and fibrosis in a population-based cohort.

5. Class, genes, and rationality: A gene–environment interaction approach to ideology.

6. Exposure-associated DNA methylation among people exposed to multiple industrial pollutants.

7. Effect modification by sex of genetic associations of vitamin C related metabolites in the Canadian Longitudinal study on aging.

8. Associations between residential environments and late-onset schizophrenia in UK Biobank: Interaction with genetic risk factor.

9. Cancer Diagnosis by Gene-Environment Interactions via Combination of SMOTE-Tomek and Overlapped Group Screening Approaches with Application to Imbalanced TCGA Clinical and Genomic Data.

10. LDER-GE estimates phenotypic variance component of gene–environment interactions in human complex traits accurately with GE interaction summary statistics and full LD information.

11. AKR1C2 genetic variants mediate tobacco carcinogens metabolism involving bladder cancer susceptibility.

12. Alcohol use polygenic risk score, social support, and alcohol use among European American and African American adults.

13. Exposure-associated DNA methylation among people exposed to multiple industrial pollutants

14. QTL mapping for heading date and plant height using a RIL population in rice in different photoperiod environments

15. Research Progress on the Association between Obesity and Prostate Cancer

16. Targeting Homocysteine and Hydrogen Sulfide Balance as Future Therapeutics in Cancer Treatment.

17. Gene-environment interactions increase the risk of paediatric-onset multiple sclerosis associated with household chemical exposures.

18. Lesson from the MIC Accident May Guide for Alternative Approaches to Minimize Environmental Pollution

19. GWAS of Folate Metabolism With Gene–environment Interaction Analysis Revealed the Possible Role of Lifestyles in the Control of Blood Folate Metabolites in Japanese: The J-MICC Study

20. Interaction between HTR2A rs3125 and negative life events in suicide attempts among patients with major depressive disorder: a cross-sectional study

21. Molecular Profiling and the Interaction of Somatic Mutations with Transcriptomic Profiles in Non-Melanoma Skin Cancer (NMSC) in a Population Exposed to Arsenic.

22. Where you live matters: visualizing environmental effects on reading attainment.

23. Interaction between Risk Single-Nucleotide Polymorphisms of Developmental Dyslexia and Parental Education on Reading Ability: Evidence for Differential Susceptibility Theory.

24. Interaction of Th17 differentiations‐related gene polymorphisms and environmental factors contributing to the disease classification, complications, and surgical risks of Crohn's disease in the Chinese Han population.

25. Gene-environmental regulation of the postnatal post-mitotic neuronal maturation.

26. Unveiling the Influence of Copy Number Variations on Genetic Diversity and Adaptive Evolution in China's Native Pig Breeds via Whole-Genome Resequencing.

27. Reflections on assortative mating, social stratification, and genetics.

28. Analysis of exposome and genetic variability suggests stress as a major contributor for development of pancreatic ductal adenocarcinoma.

29. Majör Depresif Bozuklukta Gen-Çevre Etkileşimi.

30. Matrix regression heterogeneity analysis.

31. Cumulative Genetic Scores Interact with Maternal and Paternal Parenting in Predicting Parent-Adolescent Cohesion and Conflict.

32. Are Genetic and Environmental Risk Factors for Psychopathology Amplified in Children with Below-Average Intelligence? A Population-Based Twin Study.

33. Association of MTHFR (C677T, A1298C) and MTRR A66G polymorphisms with fatty acids profile and risk of neural tube defects.

34. No gene by stressful life events interaction on individual differences in adults' self-control.

35. Integrative Bioinformatics–Gene Network Approach Reveals Linkage between Estrogenic Endocrine Disruptors and Vascular Remodeling in Peripheral Arterial Disease.

36. Interaction between HTR2A rs3125 and negative life events in suicide attempts among patients with major depressive disorder: a cross-sectional study.

37. Interplay between polygenic risk for mood disorders and stressful life events in bipolar disorder.

38. Associations of Duration of Preadoption Out-of-home Care, Genetic Risk for Schizophrenia Spectrum Disorders and Adoptive Family Functioning with Later Psychiatric Disorders of Adoptees.

40. Effect modification by sex of genetic associations of vitamin C related metabolites in the Canadian Longitudinal study on aging

41. A genome-wide gene-environment interaction study of breast cancer risk for women of European ancestry

42. Educational Tracking and the Polygenic Prediction of Education

43. Interaction of Vitamin D Receptor Gene FokI Variants and Omega-3 Fatty Acids on Perceived Stress Score and Serum Cortisol Levels in Nurses: A Cross-Sectional Study

44. CFTR gene variants, air pollution, and childhood asthma in a California Medicaid population

45. Gene–environment interactions: Epstein–Barr virus infection and risk of pediatric-onset multiple sclerosis.

46. Genetic and environmental factors driving congenital solitary functioning kidney.

47. Genome-Wide Interaction Analysis With DASH Diet Score Identified Novel Loci for Systolic Blood Pressure.

48. Gene-environment interaction effect of hypothalamic-pituitary-adrenal axis gene polymorphisms and job stress on the risk of sleep disturbances.

49. Gene-environment interaction in the pathophysiology of type 1 diabetes.

50. Socioeconomic status and risk for child psychopathology: exploring gene–environment interaction in the presence of gene–environment correlation using extended families in the Norwegian Mother, Father and Child Birth Cohort Study.

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