The incidence of fractures of the distal radius in Japanese persons under 20 years of age was determined, and the bone mineral density of the radius was measured in 236 healthy Japanese children. The peak incidence of fractures occurred at 13 years of age (807 per 100000) in boys and at 11 (300 per
Distal radius fractures: Mechanisms of injury and strength prediction by bone mineral assessment
✍ Scribed by Peter Augat; Hiroyuki Iida; Yebin Jiang; Edward Diao; Harry K. Genant
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 855 KB
- Volume
- 16
- Category
- Article
- ISSN
- 0736-0266
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✦ Synopsis
Abstract
The strength of the radius depends on the mechanical properties of cancellous and cortical bone. By assessing both compartments quantitatively with bone densitometry. we tried to identify the specificity of each in predicting the load at which the distal raius will fracture. Twenty human cadaver forearms were scanned for bone mineral and geometric properties with quantitative computed tomography and dual x‐ray absorptiometry. In both a neutral loading situation and one in which the wrist was extended 45°, the load distribution was determined with pressure‐sensitive films, and a fracture simulating a fall on the hand was produced with a material testing machine. Fractures that occur with the wrist in extension were produced by a central impact of the scaphoid onto the radiocarpal joint, and those that occur under neutral loading conditions were produced by a more commonly distributed loading pattern. The load at fracture was most specifically predicted (r^2^ = 0.74) by bone mineral and geometric measures of the cortex at the shaft of the radius. Bone mineral density measures of trabecular (r^2^ = 0.64) and total (r^2^ = 0.66) bone were less successful in predicting the fracture load. After adjustment for bone size, the geometric and density measures revealed similar specificity. Cortical bone, therefore, contributes significantly to the strength of the distal radius and may play an important role in the prediction of osteoporotic wrist fractures.
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