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(树脂涂层)高黏度玻璃离聚物水门汀和玻璃混合修复系统的体外磨损。

In vitro wear of (resin-coated) high-viscosity glass ionomer cements and glass hybrid restorative systems.

机构信息

Department of Operative Dentistry, Periodontology, and Endodontology, University School of Dental Medicine and Oral Health, Danube Private University (DPU), Steiner Landstraße 124, 3500, Krems, Austria.

Department of Operative Dentistry, Periodontology, and Endodontology, University School of Dental Medicine and Oral Health, Danube Private University (DPU), Steiner Landstraße 124, 3500, Krems, Austria.

出版信息

J Dent. 2021 Feb;105:103554. doi: 10.1016/j.jdent.2020.103554. Epub 2020 Dec 9.

Abstract

OBJECTIVES

The aim of the present study was to investigate the volumetric abrasive wear of a high-viscosity glass ionomer cement (hvGIC; Equia Fil) and a glass hybrid restorative system (ghRS; Equia Forte), each being recommended as amalgam alternatives. Both materials were applied with or without their respective resinous coating, and were compared with a conventional GIC (Ketac Fil) and a hybrid composite resin (CR; G-ænial Posterior).

METHODS

78 standardized occlusal Class I cavities were restored with the various materials (n = 13 per group). Before and after chewing simulation (30,000 cycles at 40 N), each sample underwent optical scanning procedures (Omnicam). A comparison of the total wear using a fluorescence-aided identification technique (OraCheck) followed, and differences (α = 5%) between groups were compared by means of MANOVA.

RESULTS

Regarding the wear rates of hvGIC and ghRS, no differences could be observed (p > .050), and this was not affected by the resinous coating. All hvGIC and ghRS restorations showed significantly higher abrasive wear than CR (p < .001), while the conventional GIC displayed a significant underperformance compared with any other material (p < .001).

CONCLUSIONS

Resinous coating of hvGIC or ghRS does not appear to exert an effective long-term protection against advanced abrasive wear. Compared to the conventional GIC showing a considerable substance loss, both hvGIC and ghRS materials revealed an improved abrasion resistance, but clearly failed to meet the excellent values of the CR.

CLINICAL SIGNIFICANCE

Occlusal loading should be carefully considered when using hvGIC or ghRS as amalgam (or composite resin) alternatives for the restoration of posterior teeth.

摘要

目的

本研究旨在研究一种高粘度玻璃离子水门汀(hvGIC;Equia Fil)和一种玻璃混合修复系统(ghRS;Equia Forte)的体积磨蚀磨损,这两种材料都被推荐作为汞合金的替代品。两种材料均有或无各自的树脂涂层应用,并与传统的 GIC(Ketac Fil)和混合复合树脂(CR;G-ænial Posterior)进行比较。

方法

78 个标准化的 I 类咬合腔用各种材料(每组 13 个样本)进行修复。在咀嚼模拟(40N 下 30000 次循环)前后,每个样本都进行了光学扫描程序(Omnicam)。然后使用荧光辅助识别技术(OraCheck)比较总磨损量,并用 MANOVA 比较组间差异(α=5%)。

结果

关于 hvGIC 和 ghRS 的磨损率,没有观察到差异(p>0.050),而且树脂涂层没有影响。所有 hvGIC 和 ghRS 修复体的磨蚀磨损明显高于 CR(p<0.001),而传统的 GIC 与任何其他材料相比表现出明显的性能不足(p<0.001)。

结论

hvGIC 或 ghRS 的树脂涂层似乎不能对先进的磨蚀磨损提供有效的长期保护。与显示出相当大物质损失的传统 GIC 相比,hvGIC 和 ghRS 材料显示出了改善的耐磨性,但显然未能达到 CR 的优异值。

临床意义

在使用 hvGIC 或 ghRS 作为汞合金(或复合树脂)的替代品来修复后牙时,应仔细考虑咬合负荷。

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