The theme of the conference will be "Ergonomics and energy". Offers of papers, posters, symposia and workshops are invited. The closing date for receipt of abstracts is 2 October 1992, and for receipt of camera-ready copy is 4 January 1993.
HUMAN RESPONSE TO VIBRATION
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 107 KB
- Volume
- 206
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
In vivo assessment of bone mechanical properties by vibration and ultrasonic wave propagation analysis.
(5 pages, 2 figures, 4 tables, 27 references) (in English) Authors' Abstract. Vibration analysis and ultrasonic wave propagation analysis were evaluated as non-invasive techniques for in vivo assessment of bone mechanical properties. The relation between the resonant frequencies, obtained by vibration analysis, and geometrical and material properties of long bones, is explained using a simple beam model. This simple beam model was validated experimentally in previous work on excised animal bones. In vitro measurements were performed on human and animal excised bones from specific osteopenic cases and control groups. Using specific protocols for in vivo vibration and ultrasound measurements of the tibia, a population of osteoporotic patients and age-matched controls were tested. From these measurements, it was concluded that the bending rigidity, calculated from the resonant frequencies, in osteoporotic tibiae had decreased as compared to the control group. Also, the ultrasound velocity in the tibial cortex was lower in the osteoporotic group. The latter indicates a change in the bone tissue material properties. On the other hand, immobilization osteoporosis appeared to lead to a decrease in bending rigidity without an observable change in bone tissue material properties. By the combination of vibration analysis and ultrasound velocity measurements, the whole bone's mechanical characteristics as well as the bone tissue properties can be assessed in vivo. Since both techniques are non-invasive, they can be used in longitudinal studies for the assessment of bone response on physical loading.
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S Prepared by M. J. Griffin and J. Griffin, Human Factors Research Unit, Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, England
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