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Computer-aided design of dental inlay restoration based on dual-factor constrained deformation

机译:基于双因素约束变形的牙镶修复体计算机辅助设计

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摘要

Computer-aided design technology has been applied extensively in the field of dental restoration. Inlay is a commonly used restoration type for reconstructing the partially destroyed teeth and restoring occlusal function. The designed occlusal surface should fit the anatomy of each defect region, and the modeling process should be efficient for clinical applications. This paper presents a robust dual-factor constrained deformation framework for dental inlay modeling, consisting of four necessary steps: cavity contour extraction using a heuristic search strategy, semi-automatic template tooth positioning through a four-step affine transformation involving "Translation-Rotation-Rotation-Scaling", tooth surface segmentation by means of sampling ray-tracing collisions, and occlusal surface reconstruction based on dual-factor constrained deformation, which was implemented by defining a segmentation constraint and cavity contour constraint. We demonstrate the effectiveness and robustness of the proposed method by presenting several clinical applications. The designed 3D inlay model can retain the morphological features of generic teeth and match well with the residual tooth surface.
机译:计算机辅助设计技术已广泛应用于牙齿修复领域。嵌体是用于修复部分受损的牙齿并恢复咬合功能的常用修复类型。设计的咬合面应适合每个缺损区域的解剖结构,并且建模过程应对临床应用有效。本文介绍了一种用于牙科镶嵌模型的健壮的双因素约束变形框架,该框架包括四个必要步骤:使用启发式搜索策略提取腔轮廓,通过四步仿射变换(包括“平移-旋转-旋转- “旋转缩放”,通过采样射线跟踪碰撞进行牙齿表面分割以及基于双因素约束变形的咬合面重建,这是通过定义分割约束和腔轮廓约束来实现的。通过展示几种临床应用,我们证明了该方法的有效性和鲁棒性。设计的3D镶嵌模型可以保留普通牙齿的形态特征,并与剩余牙齿表面很好地匹配。

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