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当代牙科复合树脂修复体的磨损:文献综述

Wear of contemporary dental composite resin restorations: a literature review.

作者信息

Dionysopoulos Dimitrios, Gerasimidou Olga

机构信息

Department of Operative Dentistry, Faculty of Dentistry, School of Health Sciences, Aristotle University of Thessaloniki, Thessaloniki, Greece.

出版信息

Restor Dent Endod. 2021 Feb 25;46(2):e18. doi: 10.5395/rde.2021.46.e18. eCollection 2021 May.

Abstract

Composite resins are the most commonly used dental restorative materials after minimally invasive dental procedures, and they offer an aesthetically pleasing appearance. An ideal composite restorative material should have wear properties similar to those of tooth tissues. Wear refers to the damaging, gradual loss or deformation of a material at solid surfaces. Depending on the mechanism of action, wear can be categorized as abrasive, adhesive, fatigue, or corrosive. Currently used composite resins cover a wide range of materials with diverse properties, offering dental clinicians multiple choices for anterior and posterior teeth. In order to improve the mechanical properties and the resistance to wear of composite materials, many types of monomers, silane coupling agents, and reinforcing fillers have been developed. Since resistance to wear is an important factor in determining the clinical success of composite resins, the purpose of this literature review was to define what constitutes wear. The discussion focuses on factors that contribute to the extent of wear as well as to the prevention of wear. Finally, the behavior of various types of existing composite materials such as nanohybrid, flowable, and computer-assisted design/computer-assisted manufacturing materials, was investigated, along with the factors that may cause or contribute to their wear.

摘要

复合树脂是微创牙科手术后最常用的牙齿修复材料,它们具有美观的外观。理想的复合树脂修复材料应具有与牙齿组织相似的磨损性能。磨损是指材料在固体表面的损坏、逐渐损失或变形。根据作用机制,磨损可分为磨蚀性、粘着性、疲劳性或腐蚀性。目前使用的复合树脂涵盖了具有不同性能的多种材料,为牙科临床医生提供了用于前牙和后牙的多种选择。为了提高复合材料的机械性能和耐磨性,已开发出多种类型的单体、硅烷偶联剂和增强填料。由于耐磨性是决定复合树脂临床成功的重要因素,本文献综述的目的是定义磨损的构成。讨论集中在导致磨损程度的因素以及磨损的预防。最后,研究了各种现有复合材料的行为,如纳米混合材料、可流动材料和计算机辅助设计/计算机辅助制造材料,以及可能导致或促成其磨损的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8773/8170387/473dd2c24cf7/rde-46-e18-g001.jpg

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