Alfadley Abdulmohsen, Alrajhi Abdalrhman, Alissa Hamad, Alzeghaibi Faisal, Hamadah Lubna, Alfouzan Khalid, Jamleh Ahmed
Restorative and Prosthetic Dental Sciences, College of Dentistry, King Saud Bin Abdulaziz University for Health Sciences, National Guard Health Affairs, Riyadh, Saudi Arabia.
King Abdullah International Medical Research Centre, National Guard Health Affairs, Riyadh, Saudi Arabia.
Int J Dent. 2020 Feb 17;2020:4687045. doi: 10.1155/2020/4687045. eCollection 2020.
The aim of this study was to assess the shaping ability of the XP Shaper (XPS) file in severely curved canal models under simulated body temperature and compare it with that of the WaveOne Gold (WOG) file. Ninety-six simulated root canals were equally distributed into XPS and WOG systems to be shaped by eight files each. Files were assessed under a stereomicroscope prior to canal shaping to detect deformation if any. The canals were shaped at 35 ± 1°C using the X-Smart Plus motor. Images of the canals were obtained before and after instrumentation using a stereomicroscope to measure the amount of removed resin from both the inner and outer curvature sides at apex (0 mm) and 3 mm and 6 mm from the apex. The shaping time was calculated. The data were statistically analyzed by the independent -test at 5% significance level. The XPS and WOG systems shaped the canals in 37.0 ± 9.5 and 62.6 ± 11.3 seconds ( < 0.05), respectively. At the apex level, the amount of resin removal in both sides did not show a significant difference between the tested groups ( > 0.05). At 3 mm and 6 mm levels, the WOG removed more resin than XPS at both sides ( < 0.05). In XPS, deformation was observed in four files: one file after the first use, one file after the fourth use, and two files after the sixth use. In WOG, two files were deformed: one file after the fifth use and one file after the sixth use. One XPS file was fractured after the sixth use. In short, XPS and WOG files can be used in shaping severely curved canals as they showed the ability to maintain the original shape with minimal transportation. Both file systems showed signs of deformation after use with a lower number of deformed files observed in WOG throughout the experiment.
本研究的目的是评估XP Shaper(XPS)锉在模拟体温下对严重弯曲根管模型的塑形能力,并将其与WaveOne Gold(WOG)锉进行比较。96个模拟根管被平均分配到XPS和WOG系统中,每组用8根锉进行塑形。在根管塑形前,在体视显微镜下对锉进行评估,以检测是否有变形。使用X-Smart Plus马达在35±1°C下对根管进行塑形。在器械操作前后,使用体视显微镜获取根管图像,以测量根尖(0 mm)以及距根尖3 mm和6 mm处内外弯曲侧去除的树脂量。计算塑形时间。数据采用独立样本t检验进行统计学分析,显著性水平为5%。XPS和WOG系统分别在37.0±9.5秒和62.6±11.3秒内完成根管塑形(P<0.05)。在根尖水平,测试组两侧的树脂去除量没有显著差异(P>0.05)。在3 mm和6 mm水平,WOG在两侧去除的树脂比XPS多(P<0.05)。在XPS组中,观察到4根锉有变形:1根在首次使用后,1根在第四次使用后,2根在第六次使用后。在WOG组中,2根锉有变形:1根在第五次使用后,1根在第六次使用后。1根XPS锉在第六次使用后折断。简而言之,XPS和WOG锉可用于严重弯曲根管的塑形,因为它们能够以最小的偏移量保持原始形状。两种锉系统在使用后均出现变形迹象,在整个实验过程中,WOG组观察到的变形锉数量较少。