Adıgüzel Mehmet, Capar Ismail Davut
Department of Endodontics, Faculty of Dentistry, Mustafa Kemal University, Hatay, Turkey.
Private Practice, Istanbul, Turkey.
J Endod. 2017 Apr;43(4):623-627. doi: 10.1016/j.joen.2016.11.021. Epub 2017 Feb 16.
To compare the cyclic fatigue of resistance of WaveOne (WO; Dentsply Maillefer, Ballaigues, Switzerland) and WaveOne Gold (WOG, Dentsply Maillefer) small, primary, and large instruments in simulated root canals. Each instrument was rotated until fracture occurred.
One hundred twenty nickel-titanium endodontic instruments were tested in two different curved artificial canals with different angles and radii of curvatures. WO and WOG small, primary, and large instruments were evaluated (n = 10 for each curvature). Each instrument was rotated until fracture occurred. The time to failure was recorded, and the length of the fractured tip was measured. An independent Student't test was used to compare the means between the 2 groups. One-way analysis of variance and Tukey' post hoc tests were used for multiple comparisons (P < .05).
At all the sizes tested and both curvatures, the cyclic fatigue resistance of the WOG instruments was higher than that of the WO instruments of corresponding sizes (P < .001). The WOG instruments were approximately twice as resistant to failure as the WO instruments were at a 60° angle of curvature, whereas the WOG instruments were 3 times more resistant at a 90° angle of curvature. The length of the fractured part of the instruments was similar among all the groups (P > .05).
Within the limitations of this study, WOG instruments were more resistant to cyclic fatigue than WO instruments.
比较WaveOne(WO;登士柏迈丽菲,瑞士巴拉格)和WaveOne Gold(WOG,登士柏迈丽菲)小号、初尖锉和大号器械在模拟根管中的循环疲劳抗力。将每个器械旋转直至发生折断。
在两种具有不同角度和曲率半径的不同弯曲度人工根管中测试120根镍钛根管器械。对WO和WOG小号、初尖锉和大号器械进行评估(每种曲率下n = 10)。将每个器械旋转直至发生折断。记录折断时间,并测量折断尖端的长度。采用独立样本t检验比较两组之间的均值。使用单因素方差分析和Tukey事后检验进行多重比较(P <.05)。
在所有测试尺寸和两种曲率下,WOG器械的循环疲劳抗力均高于相应尺寸的WO器械(P <.001)。在60°曲率角度下,WOG器械的抗折断能力约为WO器械的两倍,而在90°曲率角度下,WOG器械的抗折断能力是WO器械的3倍。所有组中器械折断部分的长度相似(P >.05)。
在本研究的局限性范围内,WOG器械比WO器械更能抵抗循环疲劳。