The effects of muscle-building exercise on bone mineral density of the radius, spine, and hip in young men
- 1 January 1989
- journal article
- research article
- Published by Springer Nature in Calcified Tissue International
- Vol. 45 (1), 12-14
- https://doi.org/10.1007/bf02556654
Abstract
We previously demonstrated that muscle-building exercise is associated with increases in serum Gla-protein, serum 1,25(OH)2D, and urinary cyclic AMP. These studies were interpreted to mean that this form of exercise increases bone formation and modifies the vitamin D-endocrine system to provide more calcium for bone. The present investigation was carried out in normal young adult white men to determine the effects of exercise on bone mineral density at weight-bearing and nonweight-bearing sites. Twelve men who had regularly engaged in muscle-building exercises (use of weights, exercise machines, or both) for at least 1 year and 50 age-matched controls (aged 19–40 years) were studied. The body weights of the two groups were not different from each other (78±2 vs. 74±1 kg, NS). Bone mineral density (BMD) of the lumbar spine, trochanter, and femoral neck was measured by dual-photon absorptiometry, and BMD of the midradius was measured by single-photon absorptiometry. It was found that muscle-building exercise was associated with increased BMD at the lumbar spine (1.35±0.03 vs. 1.22±0.02 g/cm2,P2,P2,P2, NS). These studies provide additional evidence that muscle-building exercise is associated with increases in BMD at weight-bearing sites but not at nonweight-bearing sites.This publication has 16 references indexed in Scilit:
- The effects of muscle-building exercise on Vitamin D and mineral metabolismJournal of Bone and Mineral Research, 1988
- The Effects of Race and Body Habitus on Bone Mineral Density of the Radius, Hip, and Spine in Premenopausal Women*Journal of Clinical Endocrinology & Metabolism, 1988
- Brisk walking does not stop bone loss in postmenopausal womenBone, 1988
- The Loads on the Lumbar Spine During Extreme Weight LiftingSpine, 1987
- Bone density in women: College athletes and older athletic womenJournal of Orthopaedic Research, 1984
- Physical Exercise as Prophylaxis against Involutional Vertebral Bone Loss: A Controlled TrialClinical Science, 1983
- Bone mass of the axial and the appendicular skeleton in women with Colles' fracture: its relation to physical activityClinical Physiology and Functional Imaging, 1982
- Differential changes in bone mineral density of the appendicular and axial skeleton with aging: relationship to spinal osteoporosis.Journal of Clinical Investigation, 1981
- Prevention of Involutional Bone Loss by ExerciseAnnals of Internal Medicine, 1978
- Measurement of Bone Mineral in vivo: An Improved MethodScience, 1963