Lean mass and areal bone mineral density at the lumbar spine, femoral neck, and total forearm were measured in 215 volunteer female twin pairs (122 monozygotic, 93 dizygotic), aged 10-26 years, using dual energy X-ray absorptiometry. The study was conducted in Melbourne from 1990 to1994. Under the classic twin model, there was evidence for a genetic component of variation in bone mineral density, adjusted for age or for age and lean mass, at all sites. Adjusting for lean mass almost halved the genetic variances in the adolescent years of peak growth, during which genetic variances peaked. Genetic variances were reduced in the late teenage years and Increased in early adulthood. The latter may reflect gene-environment interactions or covaria...
Genetic factors play a key role in the pathogenesis of skeletal fragility and osteoporosis in both g...
All genetic and environmental factors contributing to differences in bone structure between individu...
Bone mineral density (BMD), a risk factor for osteoporosis, is believed to be under genetic control....
The contributions of genetic and environmental factors to the association among bone mineral density...
UNLABELLED: Differences in genetic control of BMD by skeletal sites and genders were examined by com...
Mammographic density and bone mineral density, risk factors for breast cancer and osteoporotic fract...
UNLABELLED: Differences in genetic control of BMD by skeletal sites and genders were examined by com...
Between 1990 and 1998, we conducted a longitudinal study of 286 female twins aged 8 to 25 years at b...
The purpose of this study was to investigate the relationship of fat mass (FM) and lean mass (LM) wi...
Differences in genetic control of BMD by skeletal sites and genders were examined by complex segrega...
Summary. The contributions of polygenic loci and environ-mental factors to femoral bone mineral dens...
Differences in genetic control of BMD by skeletal sites and genders were examined by complex segrega...
Heritability of bone mineral density (BMD) varies across skeletal sites, reflecting different relati...
Objective. Bone mineral density (BMD) in later life is a major determinant of osteoporotic fracture ...
The contributions of polygenic loci and environmental factors to femoral bone mineral density (BMD i...
Genetic factors play a key role in the pathogenesis of skeletal fragility and osteoporosis in both g...
All genetic and environmental factors contributing to differences in bone structure between individu...
Bone mineral density (BMD), a risk factor for osteoporosis, is believed to be under genetic control....
The contributions of genetic and environmental factors to the association among bone mineral density...
UNLABELLED: Differences in genetic control of BMD by skeletal sites and genders were examined by com...
Mammographic density and bone mineral density, risk factors for breast cancer and osteoporotic fract...
UNLABELLED: Differences in genetic control of BMD by skeletal sites and genders were examined by com...
Between 1990 and 1998, we conducted a longitudinal study of 286 female twins aged 8 to 25 years at b...
The purpose of this study was to investigate the relationship of fat mass (FM) and lean mass (LM) wi...
Differences in genetic control of BMD by skeletal sites and genders were examined by complex segrega...
Summary. The contributions of polygenic loci and environ-mental factors to femoral bone mineral dens...
Differences in genetic control of BMD by skeletal sites and genders were examined by complex segrega...
Heritability of bone mineral density (BMD) varies across skeletal sites, reflecting different relati...
Objective. Bone mineral density (BMD) in later life is a major determinant of osteoporotic fracture ...
The contributions of polygenic loci and environmental factors to femoral bone mineral density (BMD i...
Genetic factors play a key role in the pathogenesis of skeletal fragility and osteoporosis in both g...
All genetic and environmental factors contributing to differences in bone structure between individu...
Bone mineral density (BMD), a risk factor for osteoporosis, is believed to be under genetic control....