Department of Pulp Biology and Endodontics, Division of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU), 1-5-45 Yushima, Bunkyo-ku, Tokyo, 113-8549, Japan.
Odontology. 2020 Apr;108(2):188-193. doi: 10.1007/s10266-019-00455-1. Epub 2019 Sep 10.
This study aimed to analyze force/torque generation and canal volume changes of NiTi rotary glide path preparation using HyFlex EDM Glide Path File in comparison to manual stainless steel K-file instrumentation. Thirty extracted mandibular incisors with a minimally curved and narrow root canal were randomly divided into three groups (n = 10) according to the instrumentation kinematics: Optimum Glide Path motion (OGP) or continuous rotation (CR) with HyFlex EDM Glide Path Files using a custom-made automated-root-canal-preparation device and manual instrumentation with stainless steel K-files (SS) in watch-winding motion. Torque and force were monitored with a custom-made torque/force analyzing device. Canal volume changes and transportation values were measured on micro-computed tomographic images taken before and after the glide path preparation. The data were statistically evaluated using Kruskal-Wallis test and Mann-Whitney U test with Bonferroni correction, with a significance level set at 5%. Maximum upward apical force, representing the screw-in force, was lower in groups OGP and CR compared with that in group SS (P < 0.05). Group CR showed the highest maximum clockwise torque value and canal volume changes, followed by groups OGP and SS (P < 0.05). Canal transportation values at 1 and 3 mm from the apex were not significantly different among groups. Within the limitations of this study, rotary glide path preparation generated smaller screw-in force, larger torque and larger canal volume changes than manual preparation. OGP motion generated smaller torque and less canal volume changes than CR.
本研究旨在分析使用 HyFlex EDM 滑道法锉预备镍钛旋转器械时的力/扭矩产生和根管容积变化,并与手动不锈钢 K 锉比较。30 颗具有最小弯曲和狭窄根管的下颌切牙随机分为三组(n = 10),根据器械运动学:使用定制的自动化根管预备设备进行 Optimum Glide Path 运动(OGP)或连续旋转(CR)与 HyFlex EDM 滑道法锉,以及手动不锈钢 K 锉(SS)的钟表缠绕运动。使用定制的扭矩/力分析装置监测扭矩和力。在滑道法预备前后,通过 micro-CT 图像测量根管容积变化和运输值。使用 Kruskal-Wallis 检验和 Mann-Whitney U 检验进行统计学评估,采用 Bonferroni 校正,显著性水平设为 5%。代表旋入力的最大向上根尖力在 OGP 和 CR 组低于 SS 组(P < 0.05)。CR 组显示出最高的最大顺时针扭矩值和根管容积变化,其次是 OGP 组和 SS 组(P < 0.05)。从根尖 1 和 3 毫米处的根管运输值在各组之间无显著差异。在本研究的限制内,与手动预备相比,旋转滑道法预备产生的旋入力较小、扭矩较大、根管容积变化较大。OGP 运动产生的扭矩和根管容积变化较小。