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用于压模或铸造的冠修复体的添加或减法制造:准确性分析。

Additive or subtractive manufacturing of crown patterns used for pressing or casting: A trueness analysis.

机构信息

Department of Reconstructive Dentistry and Gerodontology, School of Dental Medicine, University of Bern, Freiburgstrasse 7, Bern 3007, Switzerland.

Department of Prosthodontics, Istinye University Faculty of Dentistry, Istanbul, Turkey; Department of Reconstructive Dentistry and Gerodontology, School of Dental Medicine, University of Bern, Bern, Switzerland.

出版信息

J Dent. 2022 Sep;124:104221. doi: 10.1016/j.jdent.2022.104221. Epub 2022 Jul 9.

Abstract

OBJECTIVES

To investigate the effect of subtractive and additive manufacturing techniques on the trueness of crown patterns used for pressing or casting.

MATERIAL AND METHODS

A complete-coverage mandibular right first molar crown was designed in standard tessellation language (STL) format. This STL served as the control (C-STL) and was used to fabricate 30 crown patterns in 3D-printed resin (PR, ProArt Print Wax), millable wax suitable for casting (BW, ProArt CAD Wax Blue), and millable wax suitable for pressing (YW, ProArt CAD Wax Yellow) (n = 10). Subtractively manufactured patterns were fabricated by using a 5-axis milling unit (PrograMill PM7), while 3D-printed patterns were fabricated by using a digital light processing-based 3D printer (PrograPrint PR5; Ivoclar Vivadent, Schaan, Liechtenstein). All fabricated patterns were digitized by using an intraoral scanner (CEREC Primescan SW 5.2) to generate test-STLs. C-STL and test-STLs were transferred into a 3D analysis software (Medit Link v 2.4.4). Trueness evaluation was performed at 4 different surfaces (external, intaglio with margin, marginal, and intaglio without margin) and for complete scan meshes (overall) by using the root mean square (RMS) method. Data were analyzed with Kruskal-Wallis and Mann-Whitney U tests (α = .05).

RESULTS

RMS values varied significantly at all surfaces (P < .001), except for marginal surface (P = .151). PR had the highest RMS values at external surface (P ≤ .007), intaglio surfaces (with (P ≤ .003) and without margin (P ≤ .005)), and overall (P ≤ .01). No significant differences were observed between YW and BW (P ≥ .223).

CONCLUSION

Patterns fabricated by using subtractive manufacturing exhibited high trueness. The deviation values, in general, were small, particularly at intaglio and marginal surfaces; thus, clinical difference in crown-fit may be negligible using additive or subtractive technique.

CLINICAL SIGNIFICANCE

The fit of definitive crowns may be similar when tested crown patterns are additively or subtractively manufactured. However, crowns fabricated by using tested 3D-printed resin patterns may require more chairside adjustments compared with those fabricated by using subtractively manufactured wax patterns.

摘要

目的

研究减法和加法制造技术对用于压制或铸造的冠模的准确性的影响。

材料和方法

设计了一个标准三角形语言(STL)格式的全覆盖下颌第一磨牙冠。该 STL 用作对照(C-STL),并用于制造 3D 打印树脂(PR,ProArt Print Wax)、适用于铸造的可铣削蜡(BW,ProArt CAD Wax Blue)和适用于压制的可铣削蜡(YW,ProArt CAD Wax Yellow)中的 30 个冠模(n=10)。通过使用五轴铣削单元(PrograMill PM7)制造减法制造的图案,而通过基于数字光处理的 3D 打印机(PrograPrint PR5;Ivoclar Vivadent,Schaan,列支敦士登)制造 3D 打印图案。通过口内扫描仪(CEREC Primescan SW 5.2)对所有制造的图案进行数字化,以生成测试-STL。将 C-STL 和测试-STL 转移到 3D 分析软件(Medit Link v 2.4.4)中。通过均方根(RMS)法在 4 个不同表面(外部、带边缘的凹面、边缘和无边缘的凹面)和完整扫描网格(整体)上进行准确性评估。使用 Kruskal-Wallis 和 Mann-Whitney U 检验(α=0.05)进行数据分析。

结果

除边缘表面外(P=0.151),所有表面的 RMS 值均差异显著(P<0.001)。PR 在外部表面(P≤0.007)、凹面(有(P≤0.003)和无边缘(P≤0.005))和整体(P≤0.01)上具有最高的 RMS 值。YW 和 BW 之间未观察到显着差异(P≥0.223)。

结论

使用减法制造制造的图案具有高精度。一般来说,偏差值很小,特别是在凹面和边缘表面;因此,使用添加剂或减法技术,冠吻合的临床差异可能可以忽略不计。

临床意义

测试的冠模采用添加剂或减法制造时,最终冠的吻合度可能相似。然而,与使用减法制造的蜡模相比,使用测试的 3D 打印树脂模制造的冠可能需要更多的椅旁调整。

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