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三维静态模型吻合精度——第二部分:模型扫描-CAD 系统和吻合方法的影响。

Three-Dimensional Static Articulation Accuracy of Virtual Models-Part II: Effect of Model Scanner-CAD Systems and Articulation Method.

机构信息

Department of Dental Surgery, Khoo Teck Puat Hospital, Singapore, Republic of Singapore.

Private Practice, Denver, CO.

出版信息

J Prosthodont. 2018 Feb;27(2):137-144. doi: 10.1111/jopr.12725. Epub 2017 Dec 6.

Abstract

PURPOSE

Accurate maxillomandibular relationship transfer is important for CAD/CAM prostheses. This study compared the 3D-accuracy of virtual model static articulation in three laboratory scanner-CAD systems (Ceramill Map400 [AG], inEos X5 [SIR], Scanner S600 Arti [ZKN]) using two virtual articulation methods: mounted models (MO), interocclusal record (IR).

MATERIALS AND METHODS

The master model simulated a single crown opposing a 3-unit fixed partial denture. Reference values were obtained by measuring interarch and interocclusal reference features with a coordinate measuring machine (CMM). MO group stone casts were articulator-mounted with acrylic resin bite registrations while IR group casts were hand-articulated with poly(vinyl siloxane) bite registrations. Five test model sets were scanned and articulated virtually with each system (6 test groups, 15 data sets). STL files of the virtual models were measured with CMM software. dR , dR , and dR , represented interarch global distortions at right, central, and left sides, respectively, while dR , dX , dY , and dZ represented interocclusal global and linear distortions between preparations.

RESULTS

Mean interarch 3D distortion ranged from -348.7 to 192.2 μm for dR , -86.3 to 44.1 μm for dR , and -168.1 to 4.4 μm for dR . Mean interocclusal distortion ranged from -257.2 to -85.2 μm for dR , -285.7 to 183.9 μm for dX , -100.5 to 114.8 μm for dY , and -269.1 to -50.6 μm for dZ . ANOVA showed that articulation method had significant effect on dR and dX , while system had a significant effect on dR , dR , dR , dR , and dZ . There were significant differences between 6 test groups for dR dR dX , and dZ . dR and dX were significantly greater in AG-IR, and this was significantly different from SIR-IR, ZKN-IR, and all MO groups.

CONCLUSIONS

Interarch and interocclusal distances increased in MO groups, while they decreased in IR groups. AG-IR had the greatest interarch distortion as well as interocclusal superior-inferior distortion. The other groups performed similarly to each other, and the overall interarch distortion did not exceed 0.7%. In these systems and articulation methods, interocclusal distortions may result in hyper- or infra-occluded prostheses.

摘要

目的

精确的上下颌关系转移对于 CAD/CAM 修复体非常重要。本研究比较了三种实验室扫描仪-CAD 系统(Ceramill Map400 [AG]、inEos X5 [SIR]、Scanner S600 Arti [ZKN])中使用两种虚拟咬合方法(模型固位 [MO]、咬合记录 [IR])的虚拟模型静态咬合的 3D 精度。

材料和方法

主模型模拟了单个牙冠与 3 单位固定局部义齿相对。通过坐标测量机(CMM)测量牙弓间和牙合间参考特征获得参考值。MO 组的石模型用丙烯酸树脂咬合记录器在牙合架上固位,而 IR 组的模型则用聚硅氧烷咬合记录器手动咬合。每个系统扫描和虚拟咬合五个测试模型组(6 个测试组,15 个数据集)。用 CMM 软件测量虚拟模型的 STL 文件。dR、dR和 dR分别表示右侧、中央和左侧的牙弓整体变形,而 dR、dX、dY 和 dZ 表示预备体之间的牙合间整体和线性变形。

结果

dR的牙弓 3D 平均变形范围为-348.7 至 192.2μm,dR为-86.3 至 44.1μm,dR为-168.1 至 4.4μm。dR的牙合间平均变形范围为-257.2 至-85.2μm,dX为-285.7 至 183.9μm,dY为-100.5 至 114.8μm,dZ为-269.1 至-50.6μm。方差分析表明,咬合方法对 dR 和 dX 有显著影响,而系统对 dR、dR、dR、dR 和 dZ 有显著影响。6 个测试组之间的 dR、dR、dX 和 dZ 有显著差异。AG-IR 的 dR 和 dX 明显大于 SIR-IR、ZKN-IR 和所有 MO 组。

结论

MO 组的牙弓和牙合间距离增加,而 IR 组的距离减小。AG-IR 的牙弓变形以及牙合间上下方向变形最大。其他组的表现相似,整体牙弓变形不超过 0.7%。在这些系统和咬合方法中,牙合间的变形可能导致修复体超覆盖或覆盖不足。

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