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XP-endo Shaper、HyFlex CM、FlexMaster和Race器械循环疲劳抗力的比较。

Comparison of cyclic fatigue resistance of XP-endo Shaper, HyFlex CM, FlexMaster and Race instruments.

作者信息

Adiguzel Mehmet, Isken Ipek, Pamukcu Ismail Ilker

机构信息

Department of Endodontics, Faculty of Dentistry, Mustafa Kemal University, Hatay, Turkey.

出版信息

J Dent Res Dent Clin Dent Prospects. 2018 Summer;12(3):208-212. doi: 10.15171/joddd.2018.032. Epub 2018 Sep 18.

Abstract

The aim of this study was to compare the cyclic fatigue resistance of XP-endo Shaper, HyFlex CM, FlexMaster and Race rotary instruments at body temperature (37±1°C). Twenty XP-endo Shaper (#30/.01), 20 HyFlex CM (#30/.04), 20 FlexMaster (#30/.04) and 20 Race (#30/.04) instruments were tested at body temperature (n=20). The instruments were evaluated in artificial canals with a 3-mm radius of curvature and 60° angle of curvature to the center of the 1.5-mm-wide canal. Each instrument was rotated until fracture occurred and the number of cycles to failure (NCF) recorded. Data were analyzed using one-way ANOVA and Tukey HSD tests (P<0.05). The difference in the NCF of all the instruments was statistically significant (P<0.05). The order of the instruments from the highest to the lowest NCF was as follows: XP-endo Shaper (3064.0±248.1), HyFlex CM (1120.5±106.1), FlexMaster (569.8±48.4) and Race (445.5±53.5). Under the limitations of the present study, XP-endo Shaper instruments were more resistant to cyclic fatigue than the #30/.04 nickel-titanium rotary instruments immersed in water at simulated body temperature.

摘要

本研究的目的是比较XP-endo Shaper、HyFlex CM、FlexMaster和Race旋转器械在体温(37±1°C)下的抗循环疲劳性能。对20支XP-endo Shaper(#30/.01)、20支HyFlex CM(#30/.04)、20支FlexMaster(#30/.04)和20支Race(#30/.04)器械在体温下进行测试(n = 20)。这些器械在半径为3 mm、曲率角度为60°且与1.5 mm宽根管中心呈一定角度的人工根管中进行评估。每支器械旋转直至发生折断,并记录折断前的循环次数(NCF)。采用单因素方差分析和Tukey HSD检验对数据进行分析(P<0.05)。所有器械的NCF差异具有统计学意义(P<0.05)。器械的NCF从高到低顺序如下:XP-endo Shaper(3064.0±248.1)、HyFlex CM(1120.5±106.1)、FlexMaster(569.8±48.4)和Race(445.5±53.5)。在本研究的局限性下,XP-endo Shaper器械比浸泡在模拟体温水中的#30/.04镍钛旋转器械更抗循环疲劳。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b30a/6231151/23f3c376103a/joddd-12-208-g001.jpg

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