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Nonthermal Atmospheric Plasmas in Dental Restoration

机译:牙科修复中的非热大气血浆

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摘要

It is well known that the service life of contemporary composite restoration is unsatisfactory, and longevity of dentin bonding is one of the major culprits. Bonding is essentially a hybridization process in which dental substrate and adhesive resin interact with each other through an exchange process. Thus, the longevity of dentin bonding can only be improved with enhanced qualities in substrate, adhesive resin, and their interaction within the hybridization zone. This review aims to collect and summarize recent advances in utilizing nonthermal atmospheric plasmas (NTAPs)—a novel technology that delivers highly reactive species in a gaseous medium at or below physiologic temperature—to improve the durability of dentin bonding by addressing these 3 issues simultaneously. Overall, NTAP has demonstrated efficacies in improving a number of critical properties for dentin bonding, including deactivation of oral pathogens, modification of surface chemistry/properties, resin polymerization, improvement in adhesive-dentin interactions, and establishment of auxiliary bonding mechanism. While a few preliminary studies have indicated the benefit of NTAP to bond strength and stability, additional researches are warranted to employ knowledge acquired so far and to evaluate these properties in a systematic way.
机译:众所周知,当代复合修复的使用寿命不能令人满意,并且牙本质粘结的寿命是主要的元凶之一。粘接本质上是一种杂交过程,其中牙科基材和粘性树脂通过交换过程相互相互作用。因此,只有提高底物,粘合树脂的质量以及它们在杂交区内的相互作用,才能改善牙本质粘合的寿命。这篇综述旨在收集和总结利用非热大气等离子体(NTAPs)的最新进展,该技术是在同时或低于生理温度的情况下在气态介质中传递高反应性物种的一种新技术,旨在通过同时解决这三个问题来提高牙本质粘合的持久性。总体而言,NTAP已显示出改善牙本质粘合的许多关键特性的功效,包括使口腔病原体失活,改变表面化学/特性,树脂聚合,改善粘合剂与牙本质的相互作用以及建立辅助粘合机制。虽然一些初步研究表明NTAP可以提高粘结强度和稳定性,但仍需进行其他研究,以利用迄今获得的知识并以系统的方式评估这些性能。

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