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两种临时复合桥材料的纤维增强——对弯曲性能的影响。

Fibre reinforcement of two temporary composite bridge materials--effect upon flexural properties.

机构信息

Jordan University of Science and Technology (JUST), Faculty of Applied Medical Sciences - Department of Applied Dental Sciences, Jordan.

出版信息

J Dent. 2012 Dec;40(12):1044-51. doi: 10.1016/j.jdent.2012.08.012. Epub 2012 Aug 24.

DOI:10.1016/j.jdent.2012.08.012
PMID:22925923
Abstract

OBJECTIVES

Temporary bridges must survive for their anticipated time in clinical service. Fibre reinforcement offers a potential means of increasing the chances of achieving this. This study sought to investigate this.

METHODS

This in vitro study determined the three point flexural strength and flexural fatigue characteristics of beam specimens (25 mm long × 3 mm wide × 2 mm deep) of a chairside temporary crown and bridge material (Protemp 4, 3M ESPE) and a laboratory resin composite (Ceramage, Shofu Inc.) in unreinforced and reinforced states. Reinforcement was provided by Everstick Crown and Bridge (Stick Tech Ltd.) and Ribbond THM (Ribbond Inc.). All testing was performed using an Instron Universal testing machine following one week of storage in distilled water at 37 °C.

RESULTS

Fibre reinforcement with Everstick C&B significantly (P < 0.001) increased the mean flexural strengths of both materials. The flexural fatigue limits of both Protemp 4 and Ceramage were significantly (P < 0.001) increased by fibre incorporation.

CONCLUSIONS

The observed fibre resin coupling (where Everstick C&B was used) and knitting together of fractured specimen fragments to restore specimen function (specimens where Ribbond THM was used) demonstrated the potential to enhance the durability of temporary bridges made of the materials studied here.

CLINICAL SIGNIFICANCE

The incorporation of fibre reinforcement in temporary bridge materials has the potential to enhance the longevity of temporary bridges and thus reduce the need for emergency treatment.

摘要

目的

临时桥必须在其预期的临床使用时间内保持稳定。纤维增强提供了一种增加实现这一目标的机会的潜在方法。本研究旨在对此进行调查。

方法

本体外研究确定了椅旁临时冠桥材料(Protemp 4,3M ESPE)和实验室树脂复合材料(Ceramage,Shofu Inc.)的梁试件(25mm 长×3mm 宽×2mm 深)的三点弯曲强度和弯曲疲劳特性,在增强和未增强状态下。增强材料为 Everstick Crown and Bridge(StickTech Ltd.)和 Ribbond THM(Ribbond Inc.)。所有测试均在 Instron 万能试验机上进行,试件在 37°C 的蒸馏水中储存一周后进行测试。

结果

Everstick C&B 纤维增强显著(P<0.001)提高了两种材料的平均弯曲强度。纤维的加入显著(P<0.001)提高了 Protemp 4 和 Ceramage 的弯曲疲劳极限。

结论

观察到纤维树脂结合(使用 Everstick C&B 时)和断裂试件碎片的编织以恢复试件功能(使用 Ribbond THM 时),这表明有可能增强所研究材料制成的临时桥的耐用性。

临床意义

在临时桥材料中加入纤维增强材料有可能延长临时桥的使用寿命,从而减少急诊治疗的需要。

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