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用于机械应力分析的牙齿嵌体系统建模的微型计算机断层扫描成像与有限元模拟的整合:一项初步研究。

The Integration of Micro-CT Imaging and Finite Element Simulations for Modelling Tooth-Inlay Systems for Mechanical Stress Analysis: A Preliminary Study.

作者信息

Nikolova Nikoleta, Raykovska Miryana, Petkov Nikolay, Tsvetkov Martin, Georgiev Ivan, Koytchev Eugeni, Iankov Roumen, Dimova-Gabrovska Mariana, Gusiyska Angela

机构信息

Department of Conservative Dentistry, Faculty of Dental Medicine, Medical University Sofia, 1431 Sofia, Bulgaria.

Institute of Information and Communication Technologies, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.

出版信息

J Funct Biomater. 2025 Jul 21;16(7):267. doi: 10.3390/jfb16070267.

Abstract

This study presents a methodology for developing and validating digital models of tooth-inlay systems, aiming to trace the complete workflow from clinical procedures to simulation by involving dental professionals-dentists for manual cavity preparation and dental technicians for restoration modelling-while integrating micro-computed tomography (micro-CT) imaging with finite element analysis (FEA). The proposed workflow includes (1) the acquisition of high-resolution 3D micro-CT scans of a non-restored tooth, (2) image segmentation and reconstruction to create anatomically accurate digital twins and mesh generation, (3) the selection of proper resin and the 3D printing of four typodonts, (4) the manual preparation of cavities on the typodonts, (5) the acquisition of high-resolution 3D micro-CT scans of the typodonts, (6) mesh generation, digital inlay and onlay modelling and material property assignment, and (7) nonlinear FEA simulations under representative masticatory loading. The approach enables the visualisation of stress and deformation patterns, with preliminary results indicating stress concentrations at the tooth-restoration interface integrating different cavity alternatives and restorations on the same tooth. Quantitative outputs include von Mises stress, strain energy density, and displacement distribution. This study demonstrates the feasibility of using image-based, tooth-specific digital twins for biomechanical modelling in dentistry. The developed framework lays the groundwork for future investigations into the optimisation of restoration design and material selection in clinical applications.

摘要

本研究提出了一种开发和验证嵌体系统数字模型的方法,旨在通过让牙科专业人员(牙医进行手动窝洞预备,牙科技师进行修复体建模)参与,同时将微型计算机断层扫描(micro-CT)成像与有限元分析(FEA)相结合,追踪从临床程序到模拟的完整工作流程。所提出的工作流程包括:(1)获取未修复牙齿的高分辨率三维micro-CT扫描图像;(2)进行图像分割和重建以创建解剖学上精确的数字模型并生成网格;(3)选择合适的树脂并3D打印四个全口牙齿模型;(4)在全口牙齿模型上手动制备窝洞;(5)获取全口牙齿模型的高分辨率三维micro-CT扫描图像;(6)生成网格、进行数字嵌体和高嵌体建模并分配材料属性;(7)在代表性咀嚼负荷下进行非线性有限元分析模拟。该方法能够可视化应力和变形模式,初步结果表明在牙齿修复界面存在应力集中现象,该界面整合了同一颗牙齿上不同的窝洞选择和修复体。定量输出包括冯·米塞斯应力、应变能密度和位移分布。本研究证明了使用基于图像的、特定牙齿的数字模型进行牙科生物力学建模的可行性。所开发的框架为未来在临床应用中优化修复体设计和材料选择的研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7938/12295181/f0cfc9e7cfd6/jfb-16-00267-g001.jpg

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