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铣削和压制聚醚醚酮单冠的边缘和内部适合的微 CT 分析。

Micro-CT analysis of marginal and internal fit of milled and pressed polyetheretherketone single crowns.

机构信息

Associate Professor, Department of Fixed Prosthodontics, Faculty of Dentistry, Beni-Suef University, Beni-Suef, Egypt.

Professor, EPSRC Future Advanced Metrology Hub, University of Huddersfield, Huddersfield, United Kingdom.

出版信息

J Prosthet Dent. 2023 Jun;129(6):906.e1-906.e10. doi: 10.1016/j.prosdent.2023.03.018. Epub 2023 Apr 16.

Abstract

STATEMENT OF PROBLEM

Polyetheretherketone (PEEK) has been increasingly used as a framework material in prosthetic dentistry. However, data on the marginal and internal fit of PEEK restorations fabricated by using either the computer-aided design and computer-aided manufacturing (CAD-CAM) or heat-pressing technique are sparse.

PURPOSE

The aim of this in vitro study was to assess the marginal and internal fit of milled and pressed PEEK single crowns by using microcomputed tomography (μCT).

MATERIAL AND METHODS

A custom-made, single stainless-steel die was designed to replicate a maxillary first premolar prepared for a ceramic crown. PEEK copings (N=30) were fabricated and allocated to 3 groups (n=10) according to the fabrication technique: milled from a prefabricated PEEK blank, heat pressed from PEEK pellets, and heat pressed from PEEK granules. All copings were veneered with a composite resin material. The marginal fit was recorded at 4 predetermined points and the internal fit at 8 predetermined points on each crown by using μCT. Two-way ANOVA, pair-wise Tukey honestly significant difference (HSD), and simple main effect tests were used for statistical analysis of the data (α=.05).

RESULTS

Concerning marginal fit, the milled crowns demonstrated the best marginal fit overall (44 ±3 μm), followed by those pressed from pellets (92 ±3 μm), and finally by those pressed from granules (137 ±7 μm) (P<.001). The interaction between the effects of the fabrication technique and the measurement point on the marginal fit was not statistically significant (P=.142). The milled crowns demonstrated the lowest mean gap values overall, followed by those pressed from pellets and those pressed from granules (P<.001). The interaction between the effects of the fabrication technique and the measurement point on the internal fit was statistically significant (P<.001). Except for the distal occlusal gap and mesial occlusal gap, all tested groups showed a statistically significant difference (P<.001). In addition, statistically significant differences were observed among all measurement points in different fabrication techniques (P<.001).

CONCLUSIONS

The marginal and internal fit of milled PEEK crowns was significantly better than pressed crowns. However, both CAD-CAM and heat-pressing techniques produced PEEK crowns with a clinically acceptable marginal and internal fit. The mean marginal gap of the PEEK crowns pressed from granules was above the range of clinically acceptable value.

摘要

问题陈述

聚醚醚酮(PEEK)已越来越多地被用作义齿修复的框架材料。然而,关于通过计算机辅助设计和计算机辅助制造(CAD-CAM)或热压技术制造的 PEEK 修复体的边缘和内部适合性的数据很少。

目的

本体外研究的目的是使用微计算机断层扫描(μCT)评估铣削和热压 PEEK 单冠的边缘和内部适合性。

材料和方法

设计了一个定制的单个不锈钢模具,以复制用于陶瓷冠的上颌第一前磨牙。根据制造技术将 PEEK 牙冠(N=30)分为 3 组(n=10):由预制 PEEK 坯料铣削而成、由 PEEK 颗粒热压而成、由 PEEK 颗粒热压而成。所有牙冠均用复合树脂材料贴面。通过 μCT 在每个牙冠的 4 个预定点记录边缘适合性,在 8 个预定点记录内部适合性。使用双向方差分析、两两 Tukey Honestly 显著差异(HSD)和简单主效应检验对数据进行统计学分析(α=.05)。

结果

就边缘适合性而言,铣削冠总体上具有最佳的边缘适合性(44±3μm),其次是由颗粒热压而成的(92±3μm),最后是由颗粒热压而成的(137±7μm)(P<.001)。制造技术和测量点对边缘适合性的影响之间的相互作用没有统计学意义(P=.142)。铣削冠总体上显示出最低的平均间隙值,其次是由颗粒热压而成的,最后是由颗粒热压而成的(P<.001)。制造技术和测量点对内部适合性的影响之间的相互作用具有统计学意义(P<.001)。除了远中牙合间隙和近中牙合间隙外,所有测试组之间均存在统计学差异(P<.001)。此外,在不同制造技术中,所有测量点之间均存在统计学差异(P<.001)。

结论

铣削 PEEK 冠的边缘和内部适合性明显优于热压冠。然而,CAD-CAM 和热压技术都可以生产出具有临床可接受的边缘和内部适合性的 PEEK 冠。由颗粒热压而成的 PEEK 冠的平均边缘间隙超过了临床可接受值的范围。

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