首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Micro-Computed Tomographic Evaluation of 2 Nickel-Titanium Instrument Systems in Shaping Root Canals
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Micro-Computed Tomographic Evaluation of 2 Nickel-Titanium Instrument Systems in Shaping Root Canals

机译:根管成形中两种镍钛仪器系统的微计算机断层扫描评估

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Introduction: Cleaning and shaping without making procedural errors have always been a challenge in endodontics, particularly when the root canals are curved. Several rotary instruments have been developed to minimize such errors. The purpose of this study was to compare the shaping ability of 2 rotary file systems, BioRace (BR; FKG, La Chaux-de-Fonds, Switzerland) and ProTaper Next (PTN; Dentsply Maillefer, Ballaigues, Switzerland), during the preparation of curved root canals in extracted teeth using micro computed tomographic imaging. Methods: A total of 20 first and second human mandibular molars with 2 separate mesial canals were scanned before and after root canal preparations using the SkyScan 1176 X-ray microtomograph (Bruker microCT, Kontich, Belgium) at a resolution of 17.42 mu m. Canals were prepared using the BR and PTN systems. The percentage of dentin removed after preparation, root canal volume increase, untreated canal walls, structure model index, degree of canal transportation, and centering ability were also measured. Results: There were no significant differences between the 2 groups in the removed dentin after preparation and determination of the root canal volume, percentage of untreated canal walls, structure model index, degree of canal transportation, and centering ability (P > .05). Conclusions: In conclusion, within the limitations of this ex vivo study, instrumentation of moderately curved mesial roots with 2 independent root canals and foramina using the BR and PTN rotary file systems were equally effective. Both instrumentation systems caused negligible procedural errors with minimal apical transportation.
机译:简介:在进行牙髓治疗时,尤其是当根管弯曲时,在不造成程序错误的情况下进行清洁和整形一直是一项挑战。已经开发了几种旋转仪器以最小化这种误差。这项研究的目的是比较两种旋转锉系统的成形能力,它们分别是BioRace(BR; FKG,瑞士拉绍德封,瑞士)和ProTaper Next(PTN; Dentsply Maillefer,Ballaigues,瑞士)。使用微型计算机断层扫描成像在拔牙后弯曲的根管。方法:使用SkyScan 1176 X射线显微断层扫描仪(比利时布鲁克纳科鲁克(Bruker microCT),比利时Kontich),在分辨率为17.42微米的情况下,对根管准备前后的总共20条第一和第二个人下颌臼齿进行了扫描,扫描了2条独立的中颌管。使用BR和PTN系统准备运河。还测量了制备后去除的牙本质的百分比,根管体积增加,未处理的管壁,结构模型指数,管运度和对中能力。结果:在准备和确定根管体积,未处理的管壁百分比,结构模型指数,管运度和对中能力之后,两组在去除牙本质上没有显着差异。结论:总之,在这项离体研究的局限性内,使用BR和PTN旋转锉系统对具有2条独立牙根管和孔的中等弯曲的近中根进行器械治疗同样有效。两种仪器系统在极少的根尖运输情况下均导致可忽略的程序错误。

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