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CAD-CAM 制作的种植体固定钛和氧化锆全口义齿修复体框架的变形。

Distortion of CAD-CAM-fabricated implant-fixed titanium and zirconia complete dental prosthesis frameworks.

机构信息

Prosthodontist, Division of Prosthetic Dentistry, Hamad Medical Corporation, Doha, Qatar.

Associate Professor, Division of Restorative and Prosthetic Dentistry, The Ohio State University College of Dentistry, Columbus, Ohio.

出版信息

J Prosthet Dent. 2018 Jan;119(1):116-123. doi: 10.1016/j.prosdent.2017.02.003. Epub 2017 May 3.

Abstract

STATEMENT OF PROBLEM

Computer-aided design and computer-aided manufacturing (CAD-CAM)-fabricated titanium and zirconia implant-supported fixed dental prostheses have become increasingly popular for restoring patients with complete edentulism. However, the distortion level of these frameworks is not well known.

PURPOSE

The purpose of this in vitro study was to compare the 3-dimensional (3D) distortion of CAD-CAM zirconia and titanium implant-fixed screw-retained complete dental prostheses.

MATERIAL AND METHODS

A master edentulous model with 4 implants at the positions of the maxillary first molars and canines was used. Multiunit abutments (Nobel Biocare) secured to the model were digitally scanned using scan bodies and a laboratory scanner (S600 ARTI; Zirkonzahn). Titanium (n=5) and zirconia (n=5) frameworks were milled using a CAD-CAM system (Zirkonzahn M1; Zirkonzahn). All frameworks were scanned using an industrial computed tomography (CT) scanner (Nikon/X-Tek XT H 225kV MCT Micro-Focus). The direct CT scans were reconstructed to generate standard tessellation language (STL) files. To calculate the 3D distortion of the frameworks, STL files of the CT scans were aligned to the CAD model using a sum of the least squares best-fit algorithm. Surface comparison points were placed on the CAD model on the midfacial aspect of all teeth. The 3D distortion of each direct scan to the CAD model was calculated. In addition, color maps of the scan-to-CAD comparison were constructed using a ±0.500 mm color scale range.

RESULTS

Both materials exhibited distortion; however, no significant difference was found in the amount of distortion from the CAD model between the materials (P=.747). Absolute values of deviations from the CAD model were evident in the x and y plane and less so in the z direction.

CONCLUSIONS

Zirconia and titanium frameworks showed similar 3D distortion compared with the CAD model for the tested CAD-CAM and implant systems. The distortion was more pronounced in the horizontal and sagittal plane than in the vertical plane.

摘要

问题陈述

计算机辅助设计和计算机辅助制造(CAD-CAM)制造的钛和氧化锆种植体支持的固定义齿已越来越多地用于修复完全无牙的患者。然而,这些支架的变形程度尚不清楚。

目的

本体外研究的目的是比较 CAD-CAM 氧化锆和钛种植体固定螺钉固位全口义齿的三维(3D)变形。

材料和方法

使用带有上颌第一磨牙和犬牙位置的 4 个种植体的上颌无牙模型。使用扫描体和实验室扫描仪(S600 ARTI;Zirkonzahn)对固定在模型上的多单位基台(Nobel Biocare)进行数字扫描。使用 CAD-CAM 系统(Zirkonzahn M1;Zirkonzahn)铣削钛(n=5)和氧化锆(n=5)支架。使用工业计算机断层扫描(CT)扫描仪(Nikon/X-Tek XT H 225kV MCT Micro-Focus)扫描所有支架。直接 CT 扫描被重建以生成标准 tessellation language(STL)文件。为了计算支架的 3D 变形,使用最小二乘最佳拟合算法将 CT 扫描的 STL 文件与 CAD 模型对齐。在所有牙齿的中面部将表面比较点放置在 CAD 模型上。计算每个直接扫描到 CAD 模型的 3D 变形。此外,使用±0.500mm 颜色标度范围构建扫描到 CAD 比较的彩色地图。

结果

两种材料都表现出变形;然而,两种材料与 CAD 模型之间的变形量没有显著差异(P=.747)。从 CAD 模型的偏差绝对值在 x 和 y 平面上明显,在 z 方向上则不明显。

结论

与测试的 CAD-CAM 和植入物系统相比,氧化锆和钛支架显示出与 CAD 模型相似的 3D 变形。变形在水平和矢状平面上更为明显,而在垂直平面上则不明显。

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