首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Quantitative Transportation Assessment in Simulated Curved Canals Prepared with an Adaptive Movement System
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Quantitative Transportation Assessment in Simulated Curved Canals Prepared with an Adaptive Movement System

机译:自适应运动系统在模拟弯道中定量运输评估

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Introduction: The aim of this study was to evaluate the ability of the Twisted File Adaptive (TF Adaptive; SybronEndo, Orange, CA) system in maintaining the original profile of root canal anatomy. The Pro Taper Universal (Dentsply Maillefer, Ballaigues, Switzerland) and Twisted File (TF) (SybronEndo) systems were used as reference techniques for comparison. Methods: Thirty simulated curved root canals manufactured in clear resin blocks were randomly assigned to 3 groups (n = 10) according to the instrumentation system: IF in rotary motion, TF in TF Adaptive motion, and Pro Taper Universal. Color stereomicroscopic images from each block were taken exactly at the same position before and after instrumentation. All image processing and data analysis were performed with an open-source program (Fiji). Evaluation of canal transportation was obtained for 2 independent canal regions: straight and curved levels. Univariate analysis of variance and Tukey Honestly Significant Difference were used, and a cutoff for significance was set at alpha = 5%. Results: Instrumentation systems significantly influenced canal transportation (P = .000). A significant interaction between instrumentation system and root canal level (P = .000) was also found as follows: at the straight part, TF and TF Adaptive systems produced similar canal transportation, which was significantly lower than for the ProTaper Universal system; at the curved part, TF resulted in the lowest canal transportation followed by TF Adaptive and ProTaper Universal systems. Canal transportation was higher at the curved canal parts (P = .00). Conclusions: The TF in rotary motion produced overall less canal transportation in the curved portion when compared with the others tested systems. The ProTaper Universal system showed the highest canal transportation.
机译:简介:这项研究的目的是评估Twisted File Adaptive(TF Adaptive; SybronEndo,Orange,CA)系统在维持根管解剖结构原始轮廓方面的能力。 Pro Taper Universal(Dentsply Maillefer,瑞士Ballaigues)和Twisted File(TF)(SybronEndo)系统用作比较的参考技术。方法:根据仪器系统,将透明树脂块中制造的30条模拟弯曲根管随机分为3组(n = 10):旋转运动IF,TF自适应运动TF和Pro Taper Universal。在仪器安装之前和之后,从每个模块获取彩色立体显微图像。所有图像处理和数据分析均使用开源程序(Fiji)进行。对两个独立的运河区域进行了运河运输评估:直线和弯曲水平面。使用方差和Tukey诚实显着差异的单变量分析,并将显着性的临界值设置为alpha = 5%。结果:仪器系统显着影响了运河运输(P = .000)。仪器系统和根管水平之间存在显着的相互作用(P = .000):在直线部分,TF和TF Adaptive系统产生相似的根管运输,这明显低于ProTaper Universal系统;在弯曲部分,TF造成的运河运输量最低,其次是TF Adaptive和ProTaper Universal系统。弯曲的运河部分的运河运输较高(P = .00)。结论:与其他测试系统相比,旋转运动的TF在弯曲部分产生的根管运输总体较少。 ProTaper Universal系统显示出最高的运河运输量。

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