Asundi A, Kishen A
Nanyang Technological University, School of Mechanical and Production Engineering, Singapore.
J Biomed Opt. 2001 Apr;6(2):224-30. doi: 10.1117/1.1344587.
The purpose of this study was to investigate the behavior of the tooth-bone interface on the nature of stress distribution in the tooth and its supporting alveolar bone for various occlusal loads using an advanced digital photoelastic technique. A digital image processing system coupled with a circular polariscope was used for the stress analysis. The phase shift technique and a phase unwrapping algorithm was utilized for fringe processing. This aids in obtaining qualitative and quantitative information on the nature of stress distribution within the dento-osseous structures. The experiments revealed bending stresses within dento-osseous structures. However, the compressive stress magnitude was larger than the tensile stress. Zero stress regions were also identified within the dento-osseous structures. The results suggest that the geometry of the dento-osseous structures and the structural gradients at the tooth-bone interface play a significant role in the distribution of stresses without stress concentrations. Further, the application of an advanced image-processing system with the circular polariscope showed notable advantages and could be applied in other biomechanical investigations.
本研究的目的是使用先进的数字光弹性技术,研究在各种咬合负荷下,牙齿 - 骨界面的行为对牙齿及其支持性牙槽骨中应力分布性质的影响。使用与圆偏振光镜耦合的数字图像处理系统进行应力分析。采用相移技术和相位展开算法进行条纹处理。这有助于获取关于牙骨结构内应力分布性质的定性和定量信息。实验揭示了牙骨结构内的弯曲应力。然而,压应力大小大于拉应力。在牙骨结构内也识别出零应力区域。结果表明,牙骨结构的几何形状以及牙齿 - 骨界面处的结构梯度在无应力集中的应力分布中起重要作用。此外,将先进的图像处理系统与圆偏振光镜结合使用显示出显著优势,可应用于其他生物力学研究。