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首页> 外文期刊>International Journal of Dentistry >Shaping Ability of XP Endo Shaper File in Curved Root Canal Models
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Shaping Ability of XP Endo Shaper File in Curved Root Canal Models

机译:XP Endo Shaper文件在弯曲根管模型中的塑造能力

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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 t-test at 5% significance level. The XPS and WOG systems shaped the canals in 37.0?±?9.5 and 62.6?±?11.3 seconds (P0.05), respectively. At the apex level, the amount of resin removal in both sides did not show a significant difference between the tested groups (P0.05). At 3?mm and 6?mm levels, the WOG removed more resin than XPS at both sides (P0.05). 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.
机译:本研究的目的是在模拟体温下评估XP Shaper(XPS)文件在严重弯曲的运河模型中的成型能力,并将其与WaveOne Gold(Wog)文件的模型进行比较。九十六个模拟根部运河被同等地分布到XPS和WOG系统中,以占八个文件。在运河塑造之前在立体显微镜下评估文件以检测变形,如果有的话。使用X-Smart Plus电机,运河以35°±1°C形状。在使用立体显微镜之前和之后获得运河的图像,以测量从顶点(0≤mm)的内和外曲率和外曲率侧的除去树脂的量和3Ωmm和6Ωmm。计算成形时间。通过5%显着性水平的独立T检验进行统计分析数据。 XPS和浪潮系统分别以37.0α±9.5和62.6°(P <0.05)形状为37.0°(±9.5和62.6)。在APEX水平下,两侧的树脂去除量没有显示出测试基团(P> 0.05)之间的显着差异。在3?mm和6?mm水平下,两侧的树脂比xps除去更多的树脂(p <0.05)。在XPS中,在四个文件中观察到变形:第一次使用后一个文件,第四个使用之后的一个文件,以及第六个使用后的两个文件。在WOG中,两个文件变形:第五个使用后的一个文件和第六次使用后的一个文件。在第六次使用后,一个XPS文件在裂缝。简而言之,XPS和Wog文件可用于塑造严重弯曲的运河,因为它们显示了保持原始形状的能力,最小的运输。在整个实验过程中,在沃技中观察到的较低的变形文件,两个文件系统都显示出变形的迹象。

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