新型旋转镍钛仪器表面特性评价——SEM-EDS分析

Milica Jovanovic-Medojevic, Alena Zdravković, Mina Medojevic, D. Stratimirovic
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引用次数: 0

摘要

介绍。现代根管治疗过程意味着在根管化学机械治疗过程中使用旋转镍钛器械。本研究的目的是使用SEM-EDS方法分析新的(未使用的)旋转根管器械的表面,并确定其工作表面出现制造缺陷或杂质的频率。材料和方法。本研究纳入了K3、Mtwo、ProTaper Universal、HyFlex和BioRaCe五套不同的旋转牙髓镍钛器械。采用SEMEDS(放大倍数150 ~ 2000)对根管器械的工作部位进行分析,确定了器械表面的形态特征和发现杂质的化学成分。采用Fisher?S检验(p < 0.05)。结果。SEM-EDS分析结果表明,没有一种新的仪器表面没有缺陷。K3组和ProTaper Universal组缺损发生率最高(27.43%),BioRaCe组缺损发生率最低(7.67%)。测试仪器中最常见的缺陷类型是微动。此外,在所有仪器上都发现了碎片和金属条的存在,而工作部分的腐蚀仅在K3, ProTaper Universal和Mtwo系统中观察到一小部分。结论。根据本研究的结果,可以得出结论,在所有被检测的仪器中都注意到了制造缺陷。最常见的缺陷是点蚀。杂物和金属条等杂质也已登记。在BioRaCe仪器的电抛光表面未观察到有机碎屑,但记录了一小部分其他类型的缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of surface characteristics of new rotary nickel-titanium instruments - SEM-EDS analysis
Introduction. Modern endodontic procedure implies the use of rotary Ni-Ti instruments during chemomechanical treatment of root canals. The aim of this study is to analyze the surfaces of new (unused) rotary endodontic instruments using the SEM-EDS method and determine how frequently manufacture defects or impurities appear on their working surfaces. Material and method. Five new different sets of rotary endodontic Ni-Ti instruments were included in this study: K3, Mtwo, ProTaper Universal, HyFlex and BioRaCe. The working part of endodontic instrument was analyzed using SEMEDS method (magnifications ?150 to ?2000), which determined the morphological characteristics of the instrument surface and chemical composition of the found impurities. Statistical analysis was performed using the Fisher?s test (p < 0.05). Results. The results of SEM-EDS analysis showed that there is no new instrument without defects on its surface. The most common defects were observed in K3 (27.43%) and ProTaper Universal group (27.21%) and the least were in BioRaCe instruments (7.67%). The most common type of defect in tested instruments was fretting. In addition, the presence of debris and metal strips was found on all instruments, while corrosion of the working part was observed only in K3, ProTaper Universal and Mtwo systems in a small percentage. Conclusion. Based on the results of this research, it can be concluded that manufacturing defects were noticed in all examined instruments. The most common defect is pitting. Impurities such as debris and metal strips have also been registered. No organic debris was observed on electropolished surface of BioRaCe instruments, but a small percentage of other types of defects were registered.
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