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全口种植修复中数字印模扫描仪的精度与准确性

Precision and Accuracy of a Digital Impression Scanner in Full-Arch Implant Rehabilitation.

作者信息

Pesce Paolo, Pera Francesco, Setti Paolo, Menini Maria

出版信息

Int J Prosthodont. 2018 Mar/Apr;31(2):171-175. doi: 10.11607/ijp.5535.

Abstract

PURPOSE

To evaluate the accuracy and precision of a digital scanner used to scan four implants positioned according to an immediate loading implant protocol and to assess the accuracy of an aluminum framework fabricated from a digital impression.

MATERIALS AND METHODS

Five master casts reproducing different edentulous maxillae with four tilted implants were used. Four scan bodies were screwed onto the low-profile abutments, and a digital intraoral scanner was used to perform five digital impressions of each master cast. To assess trueness, a metal framework of the best digital impression was produced with computer-aided design/computer-assisted manufacture (CAD/CAM) technology and passive fit was assessed with the Sheffield test. Gaps between the frameworks and the implant analogs were measured with a stereomicroscope. To assess precision, three-dimensional (3D) point cloud processing software was used to measure the deviations between the five digital impressions of each cast by producing a color map. The deviation values were grouped in three classes, and differences were assessed between class 2 (representing lower discrepancies) and the assembled classes 1 and 3 (representing the higher negative and positive discrepancies, respectively).

RESULTS

The frameworks showed a mean gap of < 30 μm (range: 2 to 47 μm). A statistically significant difference was found between the two groups by the 3D point cloud software, with higher frequencies of points in class 2 than in grouped classes 1 and 3 (P < .001).

CONCLUSION

Within the limits of this in vitro study, it appears that a digital impression may represent a reliable method for fabricating full-arch implant frameworks with good passive fit when tilted implants are present.

摘要

目的

评估一台数字扫描仪的准确性和精确性,该扫描仪用于扫描按照即刻负重种植方案定位的四颗种植体,并评估由数字印模制作的铝制框架的准确性。

材料与方法

使用五个复制不同无牙上颌且带有四颗倾斜种植体的主模型。将四个扫描体拧到低轮廓基台上,并用数字口腔内扫描仪对每个主模型进行五次数字印模。为评估准确性,采用计算机辅助设计/计算机辅助制造(CAD/CAM)技术制作最佳数字印模的金属框架,并通过谢菲尔德测试评估被动适合性。用体视显微镜测量框架与种植体代型之间的间隙。为评估精确性,使用三维(3D)点云处理软件通过生成彩色图来测量每个模型的五次数字印模之间的偏差。偏差值分为三类,并评估第2类(代表较低差异)与组合的第1类和第3类(分别代表较高的负差异和正差异)之间的差异。

结果

框架显示平均间隙<30μm(范围:2至47μm)。3D点云软件在两组之间发现了统计学上的显著差异,第2类中的点频率高于组合的第1类和第3类(P<.001)。

结论

在本体外研究的范围内,当存在倾斜种植体时,数字印模似乎可能是一种制作具有良好被动适合性的全牙弓种植框架的可靠方法。

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