跳出(洞穴准备)框框的思维。

Q1 Medicine
V P Thompson, T F Watson, G W Marshall, B R K Blackman, J W Stansbury, L S Schadler, R A Pearson, R Libanori
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引用次数: 0

摘要

直接镶嵌修复材料必须与牙齿结构相接,而牙齿结构往往会受到龋齿或外伤的损害。材料必须在密封界面的同时提供足够的强度和耐磨性,以确保牙齿在理想情况下在患者的一生中都能发挥功能。与目前的树脂基复合材料系统相比,我们需要的直接修复材料对技术的敏感性更低,同时具有更好的性能。理想的材料可以在世界上基础设施有限的地区成功使用。我们对修复体粘接系统与龋坏牙本质阶段之间界面的进一步了解可用于促进再矿化。将断裂力学应用于牙齿与修复体界面的粘附,可以为改进工作提供启示。聚合物系统方面的研究提出了当前复合树脂基质系统的替代品,以克服技术敏感性,而复合材料系统中纳米和中微粒加固和排列方面的进步可以提高材料的强度、韧性和耐磨性,预示着牙科应用的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Outside-the-(cavity-prep)-box thinking.

Outside-the-(cavity-prep)-box thinking.

Outside-the-(cavity-prep)-box thinking.

Outside-the-(cavity-prep)-box thinking.

Direct placement restorative materials must interface with tooth structures that are often compromised by caries or trauma. The material must seal the interface while providing sufficient strength and wear resistance to assure function of the tooth for, ideally, the lifetime of the patient. Needed are direct restorative materials that are less technique-sensitive than current resin-based composite systems while having improved properties. The ideal material could be successfully used in areas of the world with limited infrastructure. Advances in our understanding of the interface between the restoration adhesive system and the stages of carious dentin can be used to promote remineralization. Application of fracture mechanics to adhesion at the tooth-restoration interface can provide insights for improvement. Research in polymer systems suggests alternatives to current composite resin matrix systems to overcome technique sensitivity, while advances in nano- and mesoparticle reinforcement and alignment in composite systems can increase material strength, toughness, and wear resistance, foreshadowing dental application.

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来源期刊
Advances in Dental Research
Advances in Dental Research Medicine-Medicine (all)
CiteScore
8.20
自引率
0.00%
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