Wear behaviour of different bioactive restorative materials.

IF 2.2 2区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
A V Brescia, A Mastroianni, L Montesani, M D Anastasio, G Baiocco, N Ucciardello, R Docimo
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引用次数: 0

Abstract

Aim: Dental wear is one of the most common causes of dental tissue deterioration and loss, especially in the posterior sectors restoration where the masticatory loads are higher. The tribology of dental materials is of great importance in the choice of restorative materials, especially in paediatric dentistry. Activa BioActive-Restorative (Pulpdent Corporation, Watertown, USA) is a recent bioactive ionic resin created with the aim of combining the mechanical and physical properties of composite materials with the chemical and biological advantages of glass ionomer cements. The aim of the present study was to test the wear resistance of Activa Bioactive Restorative in vitro by comparing it with two other bioactive materials, a compomer (Dyract eXtra, Dentsply Sirona, USA) and a giomer (Beautifil II LS, Shofu Dental Corporation, Japan).

Materials: Wear tests carried out on three bioactive materials were performed using the CSM Tribometer. Wear was evaluated using 3D topographies from which the wear volumes were contextually obtained. Finally, a gravimetric investigation was performed to evaluate the loss of mass suffered by the three bioactive materials following the wear test.

Conclusion: Activa Bioactive Restorative can be considered satisfactory in terms of wear resistance compared to the other materials. It could also be suggested for use in paediatric patients for its ease and speed of application, biocompatibility, safety and durability of the restoration.

不同生物活性修复材料的磨损行为。
目的:牙磨损是牙组织退化和损失的最常见原因之一,特别是在咀嚼负荷较高的后段修复中。牙科材料的摩擦学在修复材料的选择中非常重要,特别是在儿科牙科中。Activa bioactive - restorative (Pulpdent Corporation, Watertown, USA)是一种最新的生物活性离子树脂,其目的是将复合材料的机械和物理性能与玻璃离子聚合物水泥的化学和生物优势结合起来。本研究的目的是通过将Activa Bioactive Restorative与另外两种生物活性材料——复合物(Dyract eXtra, Dentsply Sirona,美国)和异构体(Beautifil II LS, Shofu Dental Corporation,日本)进行比较,来测试其体外耐磨性。材料:使用CSM摩擦计对三种生物活性材料进行磨损试验。使用3D地形来评估磨损情况,从中获得磨损量。最后,进行了重量调查,以评估磨损试验后三种生物活性材料所遭受的质量损失。结论:活动性生物活性修复体与其他材料相比,具有良好的耐磨性。由于其易于应用和应用速度、生物相容性、安全性和修复耐久性,也可建议用于儿科患者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European journal of paediatric dentistry
European journal of paediatric dentistry DENTISTRY, ORAL SURGERY & MEDICINE-PEDIATRICS
CiteScore
4.60
自引率
19.40%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The aim and scope of the European Journal of Paediatric Dentistry is to promote research in all aspects of dentistry related to children, including interceptive orthodontics and studies on children and young adults with special needs.
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