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1. Résultats de phase 2 d’efficacité et de tolérance jusqu’à 52 semaines du ianalumab, anti-BAFF récepteur (BAFF-R), chez les patients atteints de lupus érythémateux systémique (LES)

2. POS0120 SAFETY AND EFFICACY OF SUBCUTANEOUS (S.C.) DOSE IANALUMAB (VAY736; ANTI-BAFFR mAb) ADMINISTERED MONTHLY OVER 28 WEEKS IN PATIENTS WITH SYSTEMIC LUPUS ERYTHEMATOSUS (SLE)

3. Examination of Wetting by Liquid Zinc of Steel Sheets Following Various Kinds of Abrasive Blasting

6. AB0198 EFFICACY AND SAFETY AFTER TRANSITION FROM REFERENCE ADALIMUMAB TO CT-P17 (ADALIMUMAB BIOSIMILAR: 100 MG/ML) IN COMPARISON WITH THE MAINTAINED TREATMENT (CT-P17 OR REFERENCE ADALIMUMAB) IN PATIENTS WITH MODERATE-TO-SEVERE ACTIVE RHEUMATOID ARTHRITIS: 1-YEAR RESULT

7. Meta-analysis of 542,934 subjects of European ancestry identifies new genes and mechanisms predisposing to refractive error and myopia

8. Multitrait analysis of glaucoma identifies new risk loci and enables polygenic prediction of disease susceptibility and progression

9. Genome-wide association meta-analysis of corneal curvature identifies novel loci and shared genetic influences across axial length and refractive error

10. Multitrait analysis of glaucoma identifies new risk loci and enables polygenic prediction of disease susceptibility and progression

11. Meta-analysis of 542,934 subjects of European ancestry identifies new genes and mechanisms predisposing to refractive error and myopia

15. Multi-trait genome-wide association study identifies new loci associated with optic disc parameters

16. IMI - Myopia Genetics Report

17. Multi-trait genome-wide association study identifies new loci associated with optic disc parameters

19. Genome-wide association meta-analysis highlights light-induced signaling as a driver for refractive error

21. Genome-wide association meta-analysis highlights light-induced signaling as a driver for refractive error

22. Genomic locus modulating corneal thickness in the mouse identifies POU6F2 as a potential risk of developing glaucoma

25. Fractional discrete model of an electrical drive with brushless micro-motor.

27. Genetically low vitamin D concentrations and myopic refractive error: A Mendelian randomization study

28. New insights into the genetics of primary open-angle glaucoma based on meta-analyses of intraocular pressure and optic disc characteristics.

29. New insights into the genetics of primary open-angle glaucoma based on meta-analyses of intraocular pressure and optic disc characteristics

30. Genetically low vitamin D concentrations and myopic refractive error: a Mendelian randomization study

31. New insights into the genetics of primary open-angle glaucoma based on meta-analyses of intraocular pressure and optic disc characteristics

33. Assessing the genetic predisposition of education on myopia: A mendelian randomization study

34. Childhood gene-environment interactions and age-dependent effects of genetic variants associated with refractive error and myopia: The CREAM Consortium

35. Childhood gene-environment interactions and age-dependent effects of genetic variants associated with refractive error and myopia: The CREAM Consortium

36. SAFETY AND EFFICACY OF SUBCUTANEOUS (S.C.) DOSE IANALUMAB (VAY736; ANTI-BAFFR mAb) ADMINISTERED MONTHLY OVER 28 WEEKS IN PATIENTS WITH SYSTEMIC LUPUS ERYTHEMATOSUS (SLE).

37. Meta-analysis of gene-environment-wide association scans accounting for education level identifies additional loci for refractive error

38. Meta-analysis of gene-environment-wide association scans accounting for education level identifies additional loci for refractive error

39. Childhood gene-environment interactions and age-dependent effects of genetic variants associated with refractive error and myopia: The CREAM Consortium

40. Meta-analysis of gene-environment-wide association scans accounting for education level identifies additional loci for refractive error

41. A genome-wide association study of intra-ocular pressure suggests a novel association in the gene FAM125B in the TwinsUK cohort

42. APLP2 Regulates Refractive Error and Myopia Development in Mice and Humans

43. Genome-wide association study for refractive astigmatism reveals genetic co-determination with spherical equivalent refractive error: the CREAM consortium

44. Genome-wide association study for refractive astigmatism reveals genetic co-determination with spherical equivalent refractive error: the CREAM consortium

45. APLP2 Regulates Refractive Error and Myopia Development in Mice and Humans

47. Genome-wide meta-analyses of multiancestry cohorts identify multiple new susceptibility loci for refractive error and myopia (vol 45, pg 314, 2013)

49. Genome-wide analysis of multi-ancestry cohorts identifies new loci influencing intraocular pressure and susceptibility to glaucoma

50. Genome-wide meta-analysis of myopia and hyperopia provides evidence for replication of 11 loci

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