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数字图像相关技术在牙科材料及相关研究中的应用:综述。

Digital image correlation in dental materials and related research: A review.

机构信息

Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

出版信息

Dent Mater. 2021 May;37(5):758-771. doi: 10.1016/j.dental.2021.02.024. Epub 2021 Mar 11.

Abstract

OBJECTIVE

Digital image correlation (DIC) is a non-contact image processing technique for full-field strain measurement. Although DIC has been widely used in engineering and biomechanical fields, it is in the spotlight only recently in dental materials. Therefore, the purpose of this review paper is introducing the working principle of the DIC technique with some modifications and providing further potential applications in various dental materials and related fields.

METHODS

The accuracy of the algorithm depending on the environmental characteristics of the DIC technique, as well as the advantages and disadvantages of strain measurement using optical measurements, have been elaborated in dental materials and related fields. Applications to those researches have been classified into the following categories: shrinkage behavior of light-cured resin composite, resin-tooth interface, mechanical properties of tooth structure, crack extension and elastic properties of dental materials, and deformation of dental restoration and prosthesis. This classification and discussion were performed using literature survey and review based on numerous papers in the international journals published over the past 20 years. The future directions for predicting the precise deformation of dental materials under various environments, as well as limitations of the DIC technique, was presented in this review.

RESULTS

The DIC technique was demonstrated as a more effective tool to measure full-field polymerization shrinkage of composite resin, even in a simulated clinical condition over the existing methods. Moreover, the DIC combined with other technologies can be useful to evaluate the mechanical behavior of material-tooth interface, dentine structure and restorative and prosthetic materials with high accuracy. Three-dimensional DIC using two cameras extended the measurement range in-plane to out-of-plane, enabling measure of the strain directly on the surface of dental restorations or prosthesis.

SIGNIFICANCE

DIC technique is a potential tool for measuring and predicting the full-field deformation/strain of dental materials and actual prostheses in diverse clinical conditions. The versatility of DIC can replace the existing complex sensor devices in those studies.

摘要

目的

数字图像相关(DIC)是一种用于全场应变测量的非接触图像处理技术。尽管 DIC 已在工程和生物力学领域得到广泛应用,但最近才在牙科材料领域受到关注。因此,本文的目的是介绍 DIC 技术的工作原理,并对其进行一些修改,同时为其在各种牙科材料及相关领域的潜在应用提供进一步的介绍。

方法

本文详细阐述了 DIC 技术的算法精度取决于其环境特征,以及光学测量在测量应变方面的优缺点,这些都在牙科材料和相关领域得到了应用。这些应用被分为以下几类:光固化树脂复合材料的收缩行为、树脂-牙体界面、牙体结构的机械性能、裂纹扩展和牙科材料的弹性性能以及牙科修复体和义齿的变形。本文基于过去 20 年来国际期刊上发表的大量论文,通过文献调查和综述对这些研究进行了分类和讨论。本文还提出了在各种环境下预测牙科材料精确变形的未来方向,以及 DIC 技术的局限性。

结果

DIC 技术被证明是一种更有效的测量复合材料聚合收缩的全场测量工具,甚至比现有方法在模拟临床条件下更有效。此外,DIC 与其他技术结合使用可以更精确地评估材料-牙体界面、牙本质结构以及修复体和义齿材料的机械性能。使用两台相机的三维 DIC 将测量范围从平面扩展到了平面外,能够直接在牙科修复体或义齿表面测量应变。

意义

DIC 技术是一种在各种临床条件下测量和预测牙科材料和实际义齿全场变形/应变的潜在工具。DIC 的多功能性可以替代这些研究中现有的复杂传感器设备。

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