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扫描体材料、长度和顶部设计对数字化种植体印模准确性和可用性的影响:一项研究。

Effects of scan body material, length and top design on digital implant impression accuracy and usability: an study.

作者信息

Baranowski Julian Hessel, Stenport Victoria Franke, Braian Michael, Wennerberg Ann

机构信息

Department of Prosthodontics/Dental Materials Science, The Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

Swedish Organisation for Computer Aided Digital Dentistry, SWECADD, Malmö, Sweden.

出版信息

J Adv Prosthodont. 2025 Jun;17(3):125-136. doi: 10.4047/jap.2025.17.3.125. Epub 2025 Jun 25.

Abstract

PURPOSE

This study evaluated how implant scan body (ISB) design affects trueness and operator convenience of digital implant impressions. The null hypothesis stated no significant differences in trueness or usability between ISB designs.

MATERIALS AND METHODS

A cast metal model with nine implants and silicone mucosal masks (1 mm and 3 mm thickness) were used. Seven ISB prototypes were developed by modifying a commercial ISB (ELOS Accurate IO2A-B, ELOS Medtech) in four aspects: length (30% shorter and 50% longer), material (polyetheretherketone (PEEK) or titanium), surface reflectance (polished or aluminium oxide-blasted titanium), and top surface (concave top and screw holes enlarged by 100% and 200%). Each prototype was scanned ten times using an intraoral scanner (NeoScan1000, Neoss), with a desktop scanner (E3, 3Shape) providing reference scans. Deviations in depth, angulation, and rotation were analyzed in CAD software (GOM Inspect, Zeiss). Statistical analysis included the Welch test ( < .05) and Games-Howell post hoc test ( < .007).

RESULTS

Material affected depth accuracy; blasted titanium (89 ± 86 µm) and polished titanium (80 ± 72 µm) outperformed PEEK (149 ± 131 µm). Shorter ISBs showed greater angular deviations (0.64 ± 0.70°) compared to control (0.31 ± 0.21°). Rotational deviations were not significant. Scanning times increased for reflective, longer ISBs with reduced top areas, while shorter ISBs improved usability.

CONCLUSION

ISB design influences digital impression accuracy. Titanium ISBs with reduced reflectivity improve trueness, and larger screw holes enhance usability. Shorter ISBs reduce scanning time but compromise angular trueness. Stitching errors remain the primary source of depth inaccuracies.

摘要

目的

本研究评估种植体扫描体(ISB)设计如何影响数字化种植体印模的准确性和操作者的便利性。无效假设表明,ISB设计在准确性或可用性方面无显著差异。

材料与方法

使用带有9个种植体的铸造金属模型和硅橡胶黏膜面罩(厚度为1mm和3mm)。通过在四个方面对商用ISB(ELOS Accurate IO2A - B,ELOS Medtech)进行修改,开发了7种ISB原型:长度(缩短30%和延长50%)、材料(聚醚醚酮(PEEK)或钛)、表面反射率(抛光或氧化铝喷砂处理的钛)以及顶面(凹面顶部和螺孔扩大100%和200%)。使用口腔内扫描仪(NeoScan1000,Neoss)对每个原型进行10次扫描,同时使用桌面扫描仪(E3,3Shape)提供参考扫描。在CAD软件(GOM Inspect,蔡司)中分析深度、角度和旋转偏差。统计分析包括韦尔奇检验(<0.05)和Games - Howell事后检验(<0.007)。

结果

材料影响深度准确性;喷砂处理的钛(89±86μm)和抛光钛(80±72μm)的表现优于PEEK(149±131μm)。与对照(0.31±0.21°)相比,较短的ISB显示出更大的角度偏差(0.64±0.70°)。旋转偏差不显著。对于反射性更强、顶部面积减小的较长ISB,扫描时间增加,而较短的ISB提高了可用性。

结论

ISB设计影响数字化印模的准确性。反射率降低的钛制ISB可提高准确性,更大的螺孔可提高可用性。较短的ISB减少了扫描时间,但牺牲了角度准确性。拼接误差仍然是深度不准确的主要来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4de/12270716/d885e4360bfa/jap-17-125-g001.jpg

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