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首页> 外文期刊>Brazilian Dental Journal >Efficacy of Electronic Foramen Locators in Controlling Root Canal Working Length during Rotary Instrumentation
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Efficacy of Electronic Foramen Locators in Controlling Root Canal Working Length during Rotary Instrumentation

机译:电子雕刻定位器在旋转仪器控制根管工作长度控制中的功效

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Abstract: The present study evaluated the efficacy of electronic foramen locators (EFLs) to control root canal working length during rotary instrumentation and to assess possible reliability variations of different working lengths. Forty-eight human mandibular bicuspids were randomly divided in 2 groups according to the used device, Root ZX II (RZX) and Propex II (PRO). They were further subdivided in 2 subgroups according to the root canal preparation level (0.0 and -1.0). Preparation was performed with the Protaper rotary system using a crown-down technique. RZX was employed on its automatic auto-reverse mode (AAR) and PRO was used with the MPAS-10R contra-angle to monitor the preparation. The last used file (F3) was fixed, and the apical portion of the teeth was worn buccolingually, allowing to measure the extent between the file tip and the apical foramen (AF). The precision values of 0.0 mm and -1.0 mm were 100% and 0.0% for RZX, and 100% and 66.7% for PRO, respectively, with a range of ±0.5 mm. Statistical analysis showed no differences between the groups at 0.0 mm. However, at -1.0 mm, RZX showed the poorest results (0.96±0.11 mm), followed by PRO (0.43±0.23 mm). The difference between RZX and PRO was statistically significant. The EFLs were precise in maintaining the working length during rotary preparation when reaching the AF, but when their penetration was limited, both devices showed decreased precision; the RZX AAR failed in all instances.
机译:摘要:本研究评估了电子孔选区定位器(EFL)在旋转仪器期间控制根管工作长度的功效,并评估不同工作长度的可能可靠性变化。根据二手装置,根Zx II(RZX)和ProPEX II(Pro)随机分为2组中的四十八个人下颌骨。根据根管准备水平(0.0和-1.0),它们进一步细分了2个亚组。使用冠状旋转技术用蛋白旋转系统进行制备。 RZX在其自动自动反向模式(AAR)上采用,Pro与MPAS-10R对比使用,以监测制剂。最后使用的文件(F3)是固定的,并且牙齿的顶端部分被佩戴了Bucloling,允许测量文件尖端和顶端孔的程度(AF)。对于Pro的RZX,0.0mm和-1.0mm的精度值为100%和0.0%,为100%和66.7%,范围为±0.5mm。统计学分析显示在0.0mm的基团之间没有差异。然而,在-1.0mm处,RZX显示出最糟糕的结果(0.96±0.11毫米),然后是Pro(0.43±0.23mm)。 RZX和Pro之间的差异是统计学意义的。在旋转制剂期间保持工作长度在到达AF时,EFL精确,但当它们的渗透是有限时,两种装置都显示出精度下降; RZX AAR在所有情况下都失败了。

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