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Optical Techniques to Understand Bio-Functional Adaptation in Human Dentine

机译:用于了解人牙本质中生物功能适应的光学技术

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摘要

Human tooth structure in the oral environment is subjected to mechanical forces and thermal fluctuations. Dentine, the major component of the tooth structure, is a bio-composite, mainly composed of a highly mineralized phase and a collagenous phase. When subjected to changes in load and/or temperature, dentine will experience stresses and strains distribution within their structure. Though such effects are found to cause deleterious effects on artificial dental restorations, biological structures such as dentine seem to posses an inherent ability to adapt to functional thermo-mechanical loads. Optical techniques enable visualization and quantification of deformation, strain and stress on dental structures and provide a better understanding on their thermo-mechanical response. In this study 2-dimenisonal and 3-dimenisonal digital photoelasticity, digital moire interferometry and Electronic Speckle Pattern Interferometry (ESPI) are all shown to be quite promising in this application. This paper will highlight these techniques and the corresponding applications. These experiments will aid in designing and development of better dental restorations and implants in clinical practice.
机译:口腔环境中的人牙结构受到机械力和热波动。牙齿,牙齿结构的主要成分,是生物复合材料,主要由高矿化相和胶原相组成。当受载荷和/或温度变化时,牙本质将在其结构内体验压力和菌株分布。虽然发现这种效果导致对人工牙齿修复物的有害影响,但牙本质等生物结构似乎具有适应功能热机械负载的固有能力。光学技术能够可视化和定量变形,应变和牙科结构的应力,并对它们的热机械反应提供更好的理解。在本研究中,2-DIMENISISONAL和3-DIMENISISONAL数字照片,数字莫尔干涉测量和电子斑点图案干涉测量(ESPI)都显示在本申请中非常有前途。本文将突出显示这些技术和相应的应用。这些实验将有助于在临床实践中设计和开发更好的牙科修复和植入物。

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