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1. Novel Genetic Determinants of Dental Maturation in Children.

2. Novel Genetic Determinants of Dental Maturation in Children

3. sj-doc-1-jdr-10.1177_00220345221132268 – Supplemental material for Novel Genetic Determinants of Dental Maturation in Children

4. Genome Wide Association Metanalysis Of Skull Bone Mineral Density Identifies Loci Relevant For Osteoporosis And Craniosynostosis

5. Distinct Subsets of Noncoding RNAs Are Strongly Associated With BMD and Fracture, Studied in Weight-Bearing and Non–Weight-Bearing Human Bone

6. Distinct Subsets of Noncoding RNAs Are Strongly Associated With BMD and Fracture, Studied in Weight-Bearing and Non–Weight-Bearing Human Bone

7. Assessment of the genetic and clinical determinants of fracture risk : genome wide association and mendelian randomisation study

8. New genetic loci link adipose and insulin biology to body fat distribution

10. Bivariate genome-wide association meta-analysis of pediatric musculoskeletal traits reveals pleiotropic effects at the SREBF1/TOM1L2 locus

11. Bivariate genome-wide association meta-analysis of pediatric musculoskeletal traits reveals pleiotropic effects at the SREBF1/TOM1L2 locus

13. Functional characterization of GWAS loci associated with fracture risk

14. Genetic sharing with cardiovascular disease risk factors and diabetes reveals novel bone mineral density loci

15. Methylation of Bone SOST, Its mRNA, and Serum Sclerostin Levels Correlate Strongly With Fracture Risk in Postmenopausal Women

16. Genetic sharing with cardiovascular disease risk factors and diabetes reveals novel bone mineral density loci

19. New genetic loci link adipose and insulin biology to body fat distribution.

20. Genetic sharing with cardiovascular disease risk factors and diabetes reveals novel bone mineral density loci

21. Functional characterization of GWAS loci associated with fracture risk

22. Genome-wide meta-analysis identifies 56 bone mineral density loci and reveals 14 loci associated with risk of fracture

24. Phenotypic Dissection of Bone Mineral Density Reveals Skeletal Site Specificity and Facilitates the Identification of Novel Loci in the Genetic Regulation of Bone Mass Attainment

25. Phenotypic Dissection of Bone Mineral Density Reveals Skeletal Site Specificity and Facilitates the Identification of Novel Loci in the Genetic Regulation of Bone Mass Attainment

26. Osteoblast deficiency in sox4 heterozygous mice

28. Meta-analysis of genome-wide scans for total body BMD in children and adults reveals allelic heterogeneity and age-specific effects at the WNT16 locus

29. Genome-wide meta-analysis identifies 56 bone mineral density loci and reveals 14 loci associated with risk of fracture

30. Meta-Analysis of Genome-Wide Scans for Total Body BMD in Children and Adults Reveals Allelic Heterogeneity and Age-Specific Effects at the WNT16 Locus

31. Genome-wide association identifies a new susceptibility locus at 4q35 associated with clinical vertebral fractures in post-menopausal women: the GEFOS-GENOMOS consortium

32. Meta-analysis of genome-wide scans for total body BMD in children and adults reveals allelic heterogeneity, pleiotropy and age-specific effects at the WNT16 locus

40. New genetic loci link adipose and insulin biology to body fat distribution

42. Network Analysis of Brain and Bone Tissue Transcripts Reveals Shared Molecular Mechanisms Underlying Alzheimer's Disease and Related Dementias and Osteoporosis.

44. LINE-1 RNA triggers matrix formation in bone cells via a PKR-mediated inflammatory response.

45. A perspective on muscle phenotyping in musculoskeletal research.

46. Identification of Transcripts with Shared Roles in the Pathogenesis of Postmenopausal Osteoporosis and Cardiovascular Disease.

47. Heritability of tear fluid cytokines in healthy twins.

48. Tear cytokine levels are reduced in patients treated with intravitreal injections.

49. Ocular Surface Homeostasis After Scleral Lens Usage.

50. Lowering of Circulating Sclerostin May Increase Risk of Atherosclerosis and Its Risk Factors: Evidence From a Genome-Wide Association Meta-Analysis Followed by Mendelian Randomization.

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