JOURNAL ARTICLE

<title>Laser Metrology In Biomechanics</title>

Ryszard J. Pryputniewicz

Year: 1983 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 0370 Pages: 106-106   Publisher: SPIE

Abstract

Modern treatment of sceletal disharmonies and malocclusions utilizes application of external forces. In order to effectively use these therapeutic forces, knowledge of three-dimensional displacements of bones with correlation to biological changes is required. In the past, this problem has been studied in a number of ways using, for example, strain gauges, brittle coatings, photoelasticity, as well as clinical observations and mathematical modeling. Becouse of their inherent limitations, these techniques did not always provide all the information necessary for development of meaningful relationships between the applied force system and the resulting biological remodeling. However, recent advances in the field of la-ser metrology allowed to overcome some of the dificulties found in the earlier methods and permitted development of new techniques for non-invasive measurements of bone motions in three-dimensional space. These laser techniques are particularly useful in biomechanics because they provide for rapid and accurate determination of displacements over the entire surface of the investigate object. In this paper, application of laser techniques for quantitative in-vivo and in-vitro measurements in biomechanics will be discussed and illustrated with representative examples.

Keywords:
Biomechanics Metrology Computer science Photoelasticity Strain gauge Field (mathematics) Mechanical engineering Biomedical engineering Engineering Physics Optics Structural engineering Mathematics Solid mechanics

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Topics

Laser Applications in Dentistry and Medicine
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging
Shoulder Injury and Treatment
Health Sciences →  Medicine →  Surgery

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