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体外耐磨性的自粘接修复材料。

In Vitro Wear Resistance of Self-Adhesive Restorative Materials.

出版信息

J Adhes Dent. 2020;22(1):59-64. doi: 10.3290/j.jad.a43998.

Abstract

PURPOSE

To investigate simulated localized and generalized wear of self-adhesive restorative materials.

MATERIALS AND METHODS

Three commercially available restorative materials and one experimental material with self-adhesive properties were evaluated. The experimental material was tested in both light-cured and self-cured conditions. Activa (A), Fuji II LC (F), and Equia Forte (E) and the experimental material ASAR-MP4 (S) were investigated. Two kinds of wear were simulated in an Alabama wear machine. Localized wear was simulated with a stainless-steel ball bearing antagonist and generalized with a flat-ended stainless-steel cylinder antagonist. The wear challenge was carried out in an aqueous slurry of polymethyl methacrylate beads. Material volume loss was measured on polyvinyl siloxane replicates of each worn surface using a Proscan 2100 noncontact profilometer in conjunction with Proscan and AnSur 3D software.

RESULTS

There were significant differences (p < 0.05) among the materials for both generalized and localized wear. The experimental material in both curing modes exhibited significantly less localized wear than F and A and significantly less generalized wear than F and E.

CONCLUSION

Self-adhesive materials offer unique handling properties for direct placement of posterior restorations in permanent teeth. The experimental material ASAR-MP4 generated similar wear values to the other self-adhesive materials tested.

摘要

目的

研究自粘接修复材料的模拟局部和整体磨损。

材料和方法

评估了三种市售的修复材料和一种具有自粘接性能的实验材料。实验材料在光固化和自固化条件下进行了测试。Activa(A)、富士 II LC(F)和 Equia Forte(E)以及实验材料 ASAR-MP4(S)被研究。在阿拉巴马磨损机中模拟了两种磨损类型。用不锈钢球轴承对材料进行局部磨损模拟,用平头不锈钢圆柱对材料进行整体磨损模拟。磨损试验在聚甲基丙烯酸甲酯珠的水性浆料中进行。使用 Proscan 2100 非接触式轮廓仪和 Proscan 和 AnSur 3D 软件,通过对每个磨损表面的聚氯乙烯硅氧烷复制品进行测量,得出材料体积损失的数据。

结果

对于整体和局部磨损,所有材料之间均存在显著差异(p<0.05)。在两种固化模式下,实验材料的局部磨损显著小于 F 和 A,整体磨损显著小于 F 和 E。

结论

自粘接材料为在恒牙中直接放置后牙修复体提供了独特的处理性能。实验材料 ASAR-MP4 的磨损值与其他测试的自粘接材料相似。

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