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在具有两种不同曲率半径的模拟弯曲根管中对热机械处理的镍钛旋转器械的循环疲劳抗性进行比较评估:一项研究。

Comparative evaluation of cyclic fatigue resistance of thermomechanically treated NiTi rotary instruments in simulated curved canals with two different radii of curvature: An Study.

作者信息

Hamid Tahira, Malik Azhar, Kumar Ajay, Anjum Shamim

机构信息

Department of Conservative Dentistry and Endodontics, Indira Gandhi Government Dental College, Jammu, Jammu and Kashmir, India.

出版信息

J Conserv Dent Endod. 2024 Apr;27(4):393-399. doi: 10.4103/JCDE.JCDE_32_24. Epub 2024 Apr 5.

Abstract

BACKGROUND

This study aimed to compare the effect of heat treatment on the cyclic fatigue resistance of three different nickel-titanium rotary file systems: TruNatomy, HyFlex CM, and NeoEndo flex in simulated curved canals at two different radii of curvatures.

MATERIALS AND METHODS

A total of 60 NiTi rotary files of three types were used, and the samples were divided into three groups TruNatomy, HyFlex CM, and NeoEndo flex. All the instruments were subjected to cyclic fatigue testing using a stainless steel custom-made canal model with a 60° angle of curvature and two radii of curvature 5 mm and 3 mm; the number of cycles to fracture and length of the fractured segment was measured. The separated instruments were subjected to fractographic analysis under scanning electron microscope.

RESULTS

The number of cycles to failure to fracture a file at a 3 mm radius of curvature is significantly less as compared to a 5 mm radius of curvature (HCM > TRN > NE).

CONCLUSION

Within the limitation of the present study, there was a positive correlation between the radius of curvature and fatigue life of NiTi files.

摘要

背景

本研究旨在比较热处理对三种不同镍钛旋转锉系统(TruNatomy、HyFlex CM和NeoEndo flex)在两种不同曲率半径的模拟弯曲根管中循环疲劳抗力的影响。

材料与方法

共使用60支三种类型的镍钛旋转锉,样本分为三组:TruNatomy组、HyFlex CM组和NeoEndo flex组。所有器械均使用定制的不锈钢根管模型进行循环疲劳测试,该模型曲率为60°,曲率半径分别为5mm和3mm;测量折断时的循环次数和折断段的长度。将分离的器械在扫描电子显微镜下进行断口分析。

结果

与5mm曲率半径相比,在3mm曲率半径下锉折断时的循环次数显著减少(HyFlex CM组>TruNatomy组>NeoEndo flex组)。

结论

在本研究的局限性内,镍钛锉的曲率半径与疲劳寿命之间存在正相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59e2/11108414/9abc42c9d8c3/JCDE-27-393-g001.jpg

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