CYCLIC AND TORSIONAL FATIGUE RESISTANCE OF THREE DIFFERENT THERMALLY TREATED NICKEL-TITANIUM ROTARY INSTRUMENTS

Rodrigo Ricci Vivan, Murilo Priori Alcalde, Thaine Oliveira Lima, Pedro Henrique De Souza Calefi, M. H. Hungaro Duarte
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引用次数: 1

Abstract

Background: The aim of this study was to evaluate the cyclic fatigue and torsional fatigue resistance of three thermally treated rotary instruments, such as: Logic 2 25.05 (LOG 25.05), Edge Taper Platinum 25.06 (EDT 25.06) and ProTaper Gold 25.08 (PTG 25.08).Methods: A total of 60 rotary instruments of LOG 25.05, EDT 25.06 and PTG 25.08 were used (n=20). Cyclic fatigue tests were performed at 36°C using an artificial stainless steel canal with a 60o angle and a 5-mm radius of curvature. The time (in seconds) and number of cycles to fracture (NCF) was recorded. The torsional test evaluated the torque and angle of rotation to failure at 3 mm from the tip according to ISO 3630-1. The fractured surface of each fragment was observed by using scanning electron microscopy (SEM). Data were analyzed using one-way ANOVA and Holm-Sidak’s tests for multiple comparison, the level of significance was set at 5%. Results: EDT 25.06 had highest cyclic fatigue resistance (time and NFC), followed by LOG 25.05 and PTG 25.08 (P<0.05). There were no significantly difference between LOG 25.05 and ETP 25.06 regarding the NCF (P>0.05). In relation the torsional test, the LOG 25.05 and ETP 25.06 presented similar torque (P>0.05). The PTG presented greater torque than the other groups (P<0.05). The PTG 25.08 presented the lowest angular rotation to fracture than the other groups (P<0.05). The SEM images demonstrated typical features of cyclic and torsional fracture.
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三种不同热处理镍钛旋转仪器的抗循环和抗扭转疲劳性能
背景:本研究的目的是评估三种热处理的旋转器械:Logic 2 25.05 (LOG 25.05), Edge锥Platinum 25.06 (EDT 25.06)和ProTaper Gold 25.08 (PTG 25.08)的循环疲劳和抗扭转疲劳性能。方法:采用LOG 25.05、EDT 25.06、PTG 25.08旋转器械60台(n=20)。在36°C下使用人造不锈钢管进行循环疲劳试验,管的角度为600°,曲率半径为5mm。记录断裂的时间(以秒为单位)和周期数(NCF)。根据ISO 3630-1,扭转测试评估了距尖端3mm处的扭矩和旋转角度。利用扫描电子显微镜(SEM)观察了每个碎片的断裂表面。数据分析采用单因素方差分析和多重比较的Holm-Sidak检验,显著性水平设为5%。结果:EDT 25.06的循环疲劳抗力(时间和NFC)最高,LOG 25.05和PTG 25.08次之(P0.05)。在扭转试验中,LOG 25.05与ETP 25.06扭矩相近(P>0.05)。PTG组扭矩大于其他各组(P<0.05)。PTG 25.08组骨折转角最低(P<0.05)。扫描电镜图像显示出典型的循环和扭转断裂特征。
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