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转速周期性变化对交替旋转技术的扭转应力和旋入力的影响。

Effect of Periodic Changes in Rotation Speed on Torsional Stress and Screw-in Force by Alternative Rotation Technique.

机构信息

Department of Conservative Dentistry, School of Dentistry, Kyungpook National University, Daegu, Korea.

Department of Conservative Dentistry, School of Dentistry, Dental Research Institute, Pusan National University, Yangsan, Korea.

出版信息

J Endod. 2023 Jan;49(1):77-82. doi: 10.1016/j.joen.2022.11.003. Epub 2022 Nov 12.

Abstract

INTRODUCTION

This study evaluated the effect of periodic changes in rotation speed on torsional stress and screw-in force using the dedicated alternative rotation technique (ART) motion of the EQ-M (Metabiomed, Cheongju, Korea) endodontic motor.

METHODS

Two ART modes of the EQ-M motor in 2 alternative techniques (ART30 and ART50) and continuous rotation were compared using ProTaper Next X2 (Dentsply Sirona, Charlotte, NC) files and simulated resin blocks (n = 12 per group). ART30 and ART50 were operated by continuous rotation of 350 rpm for 360° and then rotated at 30% increased speed from the base speed for 180° and at 50% increased speed for 180°, respectively. Before the test, the simulated resin blocks were pre-enlarged using ProTaper Gold S1 and S2 (Dentsply Sirona) and fixed on a metal stage connected to the force- and torque-measuring unit. During shaping the simulated canal in an automatic up-and-down manner, the parameters of maximum torque, sum of torque, maximum screw-in force, and maximum apical force were measured. The data were statistically analyzed using 1-way analysis of variance and the Tukey post hoc comparison test at the 95% significance level.

RESULTS

The ART30 and ART50 groups showed a lower maximum torque, sum of torques, screw-in force, and apical drive force than the continuous rotation group. There was no significant difference between the ART30 and ART50 groups (P > .05). When the screw-in force increased suddenly, the torque correspondently increased.

CONCLUSIONS

Under the limitations of this study, the ART mode could reduce the torsional stress and apical forces of the screw-in during instrumentation in comparison with continuous rotation.

摘要

简介

本研究通过使用 EQ-M(Metabiomed,韩国清州)根管马达的专用交替旋转技术(ART)运动,评估周期性转速变化对扭转应力和旋入力的影响。

方法

使用 ProTaper Next X2(登士柏西诺德,北卡罗来纳州夏洛特)锉和模拟树脂块,比较 EQ-M 马达的 2 种 ART 模式(ART30 和 ART50)和连续旋转(每组 n=12)。ART30 和 ART50 通过连续以 350rpm 旋转 360°,然后分别以基础速度的 30%增加速度旋转 180°,以 50%增加速度旋转 180°进行操作。在测试之前,使用 ProTaper Gold S1 和 S2(登士柏西诺德)预扩模拟树脂块,并将其固定在连接到力和扭矩测量单元的金属台上。在自动上下方式成形模拟根管时,测量最大扭矩、扭矩总和、最大旋入力和最大根尖力等参数。使用单向方差分析和 Tukey 事后比较检验,在 95%置信水平下对数据进行统计分析。

结果

ART30 和 ART50 组的最大扭矩、扭矩总和、旋入力和根尖驱动力均低于连续旋转组。ART30 和 ART50 组之间无显著差异(P>.05)。当旋入力突然增加时,扭矩相应增加。

结论

在本研究的限制范围内,与连续旋转相比,ART 模式可减少器械操作过程中的扭转应力和旋入根尖力。

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