Sem analysis of Mtwo instruments after instrumentation of root canals with different curvatures

Milica Jovanovic-Medojevic, Ivana Milanović, Alena Zdravković, D. Stratimirovic
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Abstract

Introduction. Deformations and fractures of Ni-Ti instruments during chemomechanical instrumentation of root canals occur due to the action of cyclic and torsional forces. The aim of this research was to analyze the surfaces of the working parts of Mtwo instruments after preparation of root canals with different curvatures using SEM and determine possible changes and deformations after instrumentation. Materials and methods. The study included 3 sets of Mtwo (VDW, Munich, Germany) instruments. Each set was used to instrument 10 canals in three experimental groups (straight, slightly curved, and highly curved canals). Instrumentation was carried out using crown-down technique with the following irrigation solutions, 2% NaOCl (CHLORAXID 2%, Cerkamed, Polska) and Distilled water (Iva, Serbia) in the amount of 5 cm3. The apical and middle third of the instruments were scanned in two directions using SEM at different magnifications (150-2000X). The SEM images were analyzed using qualitative analysis for the presence of different irregularities according to Eggert et al. Statistical analysis of obtained data was performed using Fisher test at a confidence level of 5% (? = 0.05). Results. Most defects (37.3%) were observed in instruments used in highly curved canals, followed by the instruments of the second group (35.6%), and the least defects were (27.1%) observed in the group with straight canals. Higher prevalence of defects was observed in the apical thirds of instruments (54.2%), especially in the experimental group of curved canals where the highest presence was observed (20.3%). The presence of production grooves was observed in all instruments, and the most common types of defects after instrumentation were the appearance of corrosion and changes in the cutting edges. In the group with extremely curved canals fractures were observed in two instruments (10/0.04 and 15/0.05). Conclusion. Root canal curvature significantly affects the occurrence of deformations and fractures of Ni-Ti rotating instruments. The most common types of defects were grooves, corrosion and changes in the blade edges. Mtwo instruments showed deformations in terms of thread changes, microfractures and two complete fractures.
不同曲率根管预备后Mtwo器械的Sem分析
介绍。在化学力学根管预备过程中,由于循环力和扭转力的作用,镍钛器械会发生变形和断裂。本研究的目的是利用扫描电镜分析不同曲率根管预备后Mtwo器械工作部件的表面,确定预备后可能发生的变化和变形。材料和方法。本研究使用了3套Mtwo (VDW, Munich, Germany)仪器。每一套用于测量三个实验组(直、微弯和高度弯曲)的10个根管。仪器使用冠状沉降技术,使用以下灌溉溶液,2% NaOCl (CHLORAXID 2%, Cerkamed,波兰)和蒸馏水(Iva,塞尔维亚),量为5 cm3。用不同倍率(150-2000X)的扫描电镜对器械的顶端和中间三分之一进行两个方向的扫描。根据Eggert等人的说法,对SEM图像进行定性分析,以确定是否存在不同的不规则性。对所得数据进行统计学分析,采用Fisher检验,置信水平为5% (?= 0.05)。结果。高弯曲根管组缺损最多(37.3%),第二组缺损次之(35.6%),直根管组缺损最少(27.1%)。在器械的顶端三分之一处观察到较高的缺陷发生率(54.2%),特别是在弯曲管的实验组中观察到最高的存在(20.3%)。在所有仪器中都观察到生产凹槽的存在,仪器使用后最常见的缺陷类型是腐蚀的外观和切割边缘的变化。在极弯曲管组中,有2个器械出现骨折(10/0.04和15/0.05)。结论。根管曲率对镍钛旋转器械变形和断裂的发生有显著影响。最常见的缺陷类型是沟槽、腐蚀和叶片边缘的变化。2个器械在螺纹变化、微断裂和2个完整断裂方面显示变形。
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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