首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >In vitro assessment of torque and force generated by novel protaper next instruments during simulated canal preparation
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In vitro assessment of torque and force generated by novel protaper next instruments during simulated canal preparation

机译:新型Protaper Next器械在模拟运河准备过程中产生的扭矩和力的体外评估

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Introduction The purpose of this study was to assess torque and force for simulated canal preparation with a new root canal instrument, ProTaper Next. Methods Six sets of ProTaper Next Instruments (X1-X5) were used to prepare 36 artificial canals. Files were divided into 6 groups. Different settings of rotations per minute (250, 300, and 350 rpm) and numbers of in-and-out movements to reach working length (3 or 4 insertions [ins]) were applied in each group (250 rpm/3 ins, 250 rpm/4 ins, 300 rpm/3 ins, 300 rpm/4 ins, 350 rpm/3 ins, and 350 rpm/4 ins) by using an automated torque bench. Peak torques (Ncm) as well as positive and negative forces (N) were registered. Analysis of variance and Tukey post hoc tests were applied. Preliminary data for angle and stationary torque at failure were also obtained and compared with peak torque for each instrument. Results Significant differences in peak torque (P <.0001), positive force (P <.002), and negative force (P <.0001) were found for ProTaper Next instruments overall. X2 showed the highest torque with all settings. X5 showed the highest positive force in all groups. X1 and X2 showed the highest negative forces for all groups except for 350 rpm/4 ins. Significantly lower torque (P <.0001) and positive force (P <.007) were measured in the group 350 rpm/4 ins for all instruments except for X4. In contrast, X1 showed a significantly lower negative force for 350 rpm/4 ins. Torque at failure according to American Dental Association no. 28/ISO 36030-1 was lower for X1, X2, and X3 than torque during simulated canal preparation (P <.0001). Conclusions Under the conditions of this study, using ProTaper Next at 350 rpm and with 4 in-and-out movements resulted in lowest levels of peak torque as well as positive and negative forces.
机译:引言这项研究的目的是评估使用新型根管器械ProTaper Next进行模拟根管准备的扭矩和力。方法使用六套ProTaper Next Instruments(X1-X5)制备36条人工运河。文件分为6组。每组(250 rpm / 3 ins,250)分别采用每分钟转数(250、300和350 rpm)的不同设置以及达到工作长度的进出运动次数(3或4插入[in])。 rpm / 4英寸,300 rpm / 3英寸,300 rpm / 4英寸,350 rpm / 3英寸和350 rpm / 4英寸)。记录了峰值扭矩(Ncm)以及正和负力(N)。应用方差分析和Tukey事后检验。还获得了故障时角度和固定扭矩的初步数据,并将其与每种仪器的峰值扭矩进行了比较。结果总体上,ProTaper Next仪器在峰值扭矩(P <.0001),正向力(P <.002)和负向力(P <.0001)上存在显着差异。 X2在所有设置下均显示出最高扭矩。 X5在所有组中显示出最高的正向力。 X1和X2对所有组显示最高的负力,除了350 rpm / 4 ins。在除X4以外的所有仪器的350 rpm / 4 ins组中,测得的扭矩(P <.0001)和正向力(P <.007)均明显较低。相反,X1在350 rpm / 4 ins时显示出明显更低的负力。根据美国牙科协会编号No.1的扭矩。 X1,X2和X3的28 / ISO 36030-1低于模拟运河准备过程中的扭矩(P <.0001)。结论在本研究的条件下,以350 rpm的速度使用ProTaper Next并进行4次进出运动可产生最低水平的峰值扭矩以及正向和负向力。

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