Drukteinis Saulius, Peciuliene Vytaute, Bendinskaite Ruta, Brukiene Vilma, Maneliene Rasmute, Rutkunas Vygandas
Institute of Dentistry, Faculty of Medicine, Vilnius University, Zalgirio 115, LT-08217 Vilnius, Lithuania.
Materials (Basel). 2020 Dec 21;13(24):5823. doi: 10.3390/ma13245823.
The better understanding of the clinically important behavioral features of new instrument systems has an important significance for the clinical endodontics. This study aimed to investigate the shaping and centering ability as well as cyclic fatigue resistance of HyFlex CM (CM), HyFlex EDM (EDM) and EdgeFile (EF) thermally treated nickel-titanium (NiTi) endodontic instrument systems. Sixty curved root canals of the mesial roots of mandibular molars were randomly assigned into three groups ( = 20) and shaped using CM, EDM and EF files up to the size 40 and taper 04 of the instruments. µCT scanning of the specimens before and after preparation was performed and the morphometric 2D and 3D parameters were evaluated in the apical, middle and coronal thirds of root canals. In each group, 40.04 instruments ( = 20) were subjected to the cyclic fatigue resistance test in artificial root canals at 37 °C temperature until fractures occurred, and the number of cycles to failure (NCF) was calculated. The fractographic analysis was performed using a scanning electron microscope, evaluating topographic features and surface profiles of the separated instruments. The one-way analysis of variance with post hoc Tuckey's test was used for statistical analysis of the data; the significance level was set at 5%. All systems prepared the comparable percentage of root canal surface with the similar magnitude of canal transportation in all root thirds ( > 0.05), but demonstrated significantly different resistance to cyclic fatigue ( < 0.05). The most resistant to fracture was EF, followed by EDM and CM. The length of the fractured fragments was not significantly different between the groups, and fractographic analysis by SEM detected the typical topographic features of separated thermally treated NiTi instrument surfaces.
更好地了解新型器械系统的临床重要行为特征对临床牙髓病学具有重要意义。本研究旨在调查HyFlex CM(CM)、HyFlex EDM(EDM)和EdgeFile(EF)热处理镍钛(NiTi)根管器械系统的成形和定心能力以及抗循环疲劳性能。将60个下颌磨牙近中根的弯曲根管随机分为三组(每组n = 20),使用CM、EDM和EF锉将根管预备至器械尺寸40、锥度04。对预备前后的标本进行µCT扫描,并在根管的根尖、中部和冠部三分之一处评估形态学二维和三维参数。在每组中,40支0.04器械(n = 20)在37℃温度的人工根管中进行抗循环疲劳试验,直至发生折断,并计算折断循环次数(NCF)。使用扫描电子显微镜进行断口分析,评估分离器械的形貌特征和表面轮廓。数据的统计分析采用单因素方差分析和事后Tuckey检验;显著性水平设定为5%。所有系统在所有根管三分之一处预备的根管表面百分比相当,根管偏移量相似(P > 0.05),但抗循环疲劳性能存在显著差异(P < 0.05)。最抗折断的是EF,其次是EDM和CM。各组折断碎片的长度无显著差异,扫描电子显微镜的断口分析检测到了分离的热处理NiTi器械表面的典型形貌特征。