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4. Genetic determinants of heel bone properties: genome-wide association meta-analysis and replication in the GEFOS/GENOMOS consortium.

5. Gene set analysis of transcriptomics data identifies new biological processes associated with early markers of atherosclerosis but not with those of osteoporosis: Atherosclerosis-osteoporosis co/multimorbidity study in the Young Finns Study

13. Modular genome-wide gene expression architecture shared by early traits of osteoporosis and atherosclerosis: The Young Finns Study

17. Opettajien työhyvinvointi Uuden opetussuunnitelman yhteys koettuun työhyvinvointiin

18. The effects of adult-type hypolactasia on body height growth and dietary calcium intake from childhood into young adulthood: a 21-year follow-up study--the cardiovascular risk in Young Finns Study

22. The effects of a brain-friendly diet on metabolic and physiological parameters and cognitive performance (Brave study)

23. Supplementary Appendix for the article Childhood exposure to passive smoking and bone health in adulthood. The Cardiovascular Risk in Young Finns Study

25. Childhood Exposure to Passive Smoking and Bone Health in Adulthood: The Cardiovascular Risk in Young Finns Study

26. P2-26-02 - The effects of brain-friendly diet on cognitive performance (Brave study)

27. Does Bone Resorption Stimulate Periosteal Expansion? A Cross‐Sectional Analysis of β‐C‐telopeptides of Type I Collagen (CTX), Genetic Markers of the RANKL Pathway, and Periosteal Circumference as Measured by pQCT

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

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

30. Does bone resorption stimulate periosteal expansion? A cross-sectional analysis of β-C-telopeptides of type i collagen (CTX), genetic markers of the RANKL pathway, and periosteal circumference as measured by pQCT

31. Does Bone Resorption Stimulate Periosteal Expansion? A Cross-Sectional Analysis of b-C-telopeptides of Type I Collagen ( CTX),Genetic Markers of the RANKL Pathway, and Periosteal Circumference as Measured by

32. Associations of gene polymorphisms and nutrition with calcium homeostasis and bone mineral density : Studies on skeletal nutrigenetics

33. Genetic Determinants of Trabecular and Cortical Volumetric Bone Mineral Densities and Bone Microstructure

34. WNT16 Influences Bone Mineral Density, Cortical Bone Thickness, Bone Strength, and Osteoporotic Fracture Risk

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

40. Adult-type hypolactasia is not a predisposing factor for the early functional and structural changes of atherosclerosis: the Cardiovascular Risk in Young Finns Study

43. WNT16 Influences Bone Mineral Density, Cortical Bone Thickness, Bone Strength, and Osteoporotic Fracture Risk.

44. Lactase gene c/t(-13910) polymorphism, calcium intake, and pQCT bone traits in Finnish adults.

46. Modular genome-wide gene expression architecture shared by early traits of osteoporosis and atherosclerosis in the Young Finns Study

47. Low calcium:phosphorus ratio in habitual diets affects serum parathyroid hormone concentration and calcium metabolism in healthy women with adequate calcium intake.

48. Genetic lactase non-persistence, consumption of milk products and intakes of milk nutrients in Finns from childhood to young adulthood.

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