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增材制造和铣削制作的临时 3 单位固定牙科修复体的准确性。

Accuracy of Additively Manufactured and Milled Interim 3-Unit Fixed Dental Prostheses.

机构信息

Division of Fixed Prosthodontics and Biomaterials, University Clinics for Dental Medicine, University of Geneva, Geneva, Switzerland.

Prosthodontic Department, Faculty of Dentistry, Lille University, Lille University Medical Center, Lille, France.

出版信息

J Prosthodont. 2022 Mar;31(S1):58-69. doi: 10.1111/jopr.13454.

Abstract

PURPOSE

To investigate the accuracy of additive manufacturing (AM) by means of internal fit of fixed dental prostheses (FDPs) fabricated with two AM technologies using different resins and printing modes (validated vs nonvalidated) compared to milling and direct manual methods.

MATERIAL AND METHODS

Sixty 3-unit interim FDPs replacing the first mandibular molar were divided into 6 groups (n = 10): manual (Protemp 4), milled (Telio-CAD), and AM groups were subdivided based on AM technology (direct light processing (Rapidshape P30 [RS]) and stereolithography (FormLabs 2 [FL])) and the polymer type (P-Pro-C&B [St] and SHERAprint-cb [Sh]) (RS-St, RS-Sh, FL-St, FL-Sh). Validated (RS-Sh and RS-St) or nonvalidated (FL-St and FL-Sh) modes were adopted for AM. The specimens were scanned to 3D align (GOM inspect) according to the triple scan method. The internal space between the FDPs and preparation surfaces in four sites (marginal, axial, occlusal, and total) was measured using equidistant surface points (GOM Inspect). Statistical analysis was done using Kruskal Wallis and Dunn post-hoc tests. (α = 0.05).

RESULTS

One AM group (FL-Sh) and milling exhibited better adaptation compared to manual and RS-St at molar site (p < 0.05). FDPs with St resin (FL-St and RS-St) displayed bigger marginal space than milled, FL-Sh, and RS-Sh. The nonvalidated printing mode showed better mean space results (p < 0.05) with higher predictability and repeatability (p < 0.001).

CONCLUSIONS

The AM interim FDPs tested provided valid alternatives to the milled ones in regard to their accuracy results. The printing mode, resin, and the AM technology used significantly influenced the manufacturing accuracy of interim FDPs, particularly at the marginal area. The nonvalidated printing mode with lower-cost 3D printers is a promising solution for clinical applications.

摘要

目的

研究两种不同树脂和打印模式(已验证与未验证)的增材制造(AM)技术制造的固定义齿(FDP)的内适合精度,与铣削和直接手动方法相比。

材料和方法

将 60 个替代第一下颌磨牙的 3 单位临时 FDP 分为 6 组(n = 10):手动(Protemp 4)、铣削(Telio-CAD)和 AM 组根据 AM 技术(直接光处理(Rapidshape P30 [RS])和立体光刻(FormLabs 2 [FL])和聚合物类型(P-Pro-C&B [St] 和 SHERAprint-cb [Sh])(RS-St、RS-Sh、FL-St、FL-Sh)进行细分。采用已验证(RS-Sh 和 RS-St)或未验证(FL-St 和 FL-Sh)模式进行 AM。根据三扫描法对标本进行扫描以进行 3D 对齐(GOM inspect)。使用等距表面点(GOM Inspect)测量 FDP 与预备表面之间的四个部位(边缘、轴向、咬合和总)的内部空间。使用 Kruskal Wallis 和 Dunn 事后检验进行统计分析(α = 0.05)。

结果

与手动和 RS-St 相比,一个 AM 组(FL-Sh)和铣削在磨牙部位显示出更好的适应性(p < 0.05)。St 树脂 FDP(FL-St 和 RS-St)的边缘间隙大于铣削、FL-Sh 和 RS-Sh。未验证的打印模式显示出更好的平均空间结果(p < 0.05),具有更高的可预测性和可重复性(p < 0.001)。

结论

在所测试的 AM 临时 FDP 中,在精度结果方面,它们为铣削提供了有效的替代方案。打印模式、树脂和使用的 AM 技术显著影响临时 FDP 的制造精度,尤其是在边缘区域。具有低成本 3D 打印机的未验证打印模式是临床应用的有前途的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1da4/9313830/66d6adbec64d/JOPR-31-58-g001.jpg

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