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新型记忆镍钛根管预备器械的循环疲劳性能与 M 型镍钛器械的比较

Cyclic fatigue resistance of a novel rotary file manufactured using controlled memory Ni-Ti technology compared to a file made from M-wire file.

机构信息

Endodontic Division, Restorative Dental Sciences Department, College of Dentistry, University of Dammam, Dammam, Saudi Arabia.

出版信息

Int Endod J. 2018 Jan;51(1):112-117. doi: 10.1111/iej.12756. Epub 2017 Mar 22.

Abstract

AIM

To compare the cyclic fatigue properties of a novel file made using controlled memory Ni-Ti technology with those of files made from M-wire.

METHODOLOGY

Twelve files with similar cross-sectional geometry and tip size from each of the following groups were tested: Proflexendo made from CMT (PE; size 30 0.04; Nexden, Houston, Tx, USA), ProFile Vortex made from M-wire (PV; size 30 0.04; Dentsply Tulsa Dental, Tulsa, OK, USA) and ProTaper Universal made from regular alloy (PU; F3; Dentsply Tulsa Dental). A custom-made cyclic fatigue device was made to evaluate the total number of cycles to failure for each system. A scanning electron microscope (SEM) was used to examine the fractured surfaces of the fragments. The arithmetic means and standard deviations were calculated for the total number of cycles to failure. One-way analysis of variance was used to compare the mean cyclic failure amongst the three groups. Post hoc Tukey's test was performed to compare the difference of the means between the groups at a significance level of P < 0.05.

RESULTS

Proflexendo had a significantly greater resistance to cyclic fatigue compared to other systems (P < 0.001). Proflexendo files were able to withstand 500% more cycles to fracture when compared to ProFile Vortex files.

CONCLUSIONS

Manufacturing technique had a significant impact on the resistance to cyclic fatigue. Proflexendo files made from controlled memory Ni-Ti technology had the highest number of cycles to failure compared to ProFile Vortex made from M-wire files with similar taper and tip size.

摘要

目的

比较使用控记忆镍钛技术制造的新型锉和 M 型丝制造的锉的循环疲劳性能。

方法

从以下各组中测试了具有相似横截面几何形状和尖端尺寸的 12 个锉:CMT 制造的 ProFlexendo(PE;尺寸 30 0.04;美国休斯顿 Nexden)、M 型丝制造的 ProFile Vortex(PV;尺寸 30 0.04;美国俄克拉荷马州塔尔萨 Dentsply Tulsa Dental)和常规合金制造的 ProTaper Universal(PU;F3;美国俄克拉荷马州塔尔萨 Dentsply Tulsa Dental)。制作了一种定制的循环疲劳装置,以评估每个系统失效的总循环数。使用扫描电子显微镜(SEM)检查碎片的断裂表面。计算失效总循环数的平均值和标准差。使用单向方差分析比较三组之间平均循环失效的差异。使用 Tukey 事后检验在 P < 0.05 的显著性水平上比较组间均值的差异。

结果

ProFlexendo 与其他系统相比具有显著更高的抗循环疲劳性(P < 0.001)。与 ProFile Vortex 锉相比,ProFlexendo 锉能够承受 500%更多的断裂循环。

结论

制造技术对循环疲劳阻力有重大影响。与具有相似锥度和尖端尺寸的 M 型丝制造的 ProFile Vortex 锉相比,使用控记忆镍钛技术制造的 ProFlexendo 锉具有更高的失效循环数。

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