Osteoporosis Clinical Trial
Official title:
The Effects of Jumping on Growing Bones
| Verified date | June 2016 |
| Source | Oregon State University |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | United States: Federal Government |
| Study type | Interventional |
In this study we will investigate the effects of a high-impact exercise program involving
jumping on bone mass (the amount of bone) of the hip and backbone in the growing skeleton.
We will also look at the effects of gradually stopping the jumping program on bone mass in
the growing skeleton. A high-impact exercise program may build more bone during childhood,
while the skeleton is still growing. This may help prevent broken bones due to loss of bone
mass later in life.
We will recruit 200 children aged 5-10 to participate in the study. For 6 months we will
train the children in either a jumping or stretching program. We will then gradually reduce
the amount of exercise over 6 months. We will measure bone mass in the hip and backbone at
the start of the study, after jumping, and 6 months after the jumping program is stopped. We
will compare the results in the jumping and stretching groups.
| Status | Completed |
| Enrollment | 200 |
| Est. completion date | November 2008 |
| Est. primary completion date | June 2008 |
| Accepts healthy volunteers | Accepts Healthy Volunteers |
| Gender | Both |
| Age group | 5 Years to 10 Years |
| Eligibility |
Inclusion Criteria: - Apparently healthy boys and girls - BMI < 30kg/m2 Exclusion Criteria: - BMI < 30kg/m2 - Orthopedic problems that would limit physical participation - Metabolic diseases that would influence bone metabolism |
Allocation: Randomized, Endpoint Classification: Efficacy Study, Intervention Model: Factorial Assignment, Masking: Open Label, Primary Purpose: Prevention
| Country | Name | City | State |
|---|---|---|---|
| United States | Oregon State University | Corvallis | Oregon |
| Lead Sponsor | Collaborator |
|---|---|
| Oregon State University | National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS) |
United States,
Bauer J, Smith G, Snow CM. Quantifying force magnitude and loading rate from drop landings that induce osteogenesis. J Appl Biomech, 17(2):142-152, 2001
Fuchs RK, Bauer JJ, Snow CM. Jumping improves hip and lumbar spine bone mass in prepubescent children: a randomized controlled trial. J Bone Miner Res. 2001 Jan;16(1):148-56. — View Citation
Fuchs RK, Snow CM. Gains in hip bone mass from high-impact training are maintained: a randomized controlled trial in children. J Pediatr. 2002 Sep;141(3):357-62. — View Citation
McKay HA, Petit MA, Bailey DA, Wallace WM, Schutz RW, Khan KM. Analysis of proximal femur DXA scans in growing children: comparisons of different protocols for cross-sectional 8-month and 7-year longitudinal data. J Bone Miner Res. 2000 Jun;15(6):1181-8. — View Citation
McKay HA, Petit MA, Khan KM, Schutz RW. Lifestyle determinants of bone mineral: a comparison between prepubertal Asian- and Caucasian-Canadian boys and girls. Calcif Tissue Int. 2000 May;66(5):320-4. — View Citation
McKay HA, Petit MA, Schutz RW, Prior JC, Barr SI, Khan KM. Augmented trochanteric bone mineral density after modified physical education classes: a randomized school-based exercise intervention study in prepubescent and early pubescent children. J Pediatr. 2000 Feb;136(2):156-62. — View Citation
Slemenda CW, Miller JZ, Hui SL, Reister TK, Johnston CC Jr. Role of physical activity in the development of skeletal mass in children. J Bone Miner Res. 1991 Nov;6(11):1227-33. — View Citation
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