Laboratory of Biological Structure Mechanics, Department of Structural Engineering, Politecnico di Milano, 20133 Milan, Italy.
J Endod. 2010 Aug;36(8):1380-4. doi: 10.1016/j.joen.2010.03.026. Epub 2010 May 24.
A finite element model of two nickel-titanium (Ni-Ti) rotary endodontic instruments (ProTaper and SystemGT; Dentsply-Maillefer, Ballaigues, Switzerland) was developed to investigate the mechanical behavior of these devices and to identify the benefits/limitations of different geometries during instrumentation in various root canals.
Instrument shape, curved root canal geometry, and Ni-Ti alloy pseudo-elastic behavior were investigated in this study using computational techniques. Two different operating conditions were simulated: (1) the file insertion-removal cycle which resembles the standard working condition and (2) the file subjected to a torque in the counter-clockwise direction, which mimics the auto-reverse movement of the instrument when the tip is locked in the canal wall.
The simulations of standard and auto-reverse conditions produced bending and torsion loading conditions in the files, respectively. In the standard situation in which different canal shapes were considered, the strains in the SystemGT were generally lower than the strains in the ProTaper and always in the pseudo-elastic range; in only 1 case did the ProTaper overcame the pseudo-elastic range limit. In the auto-reverse situation, a better behavior of the ProTaper was detected.
The two simulated conditions highlighted the different mechanical properties of the files; the SystemGT showed slightly better performances under flexural solicitation, whereas the Protaper presented better behavior under torsion solicitations.
开发了两个镍钛(Ni-Ti)旋转根管器械(ProTaper 和 SystemGT;Dentsply-Maillefer,Ballaigues,瑞士)的有限元模型,以研究这些器械的力学行为,并确定在不同根管中进行器械操作时不同几何形状的优缺点。
本研究使用计算技术研究器械形状、弯曲根管几何形状和 Ni-Ti 合金伪弹性行为。模拟了两种不同的操作条件:(1)文件插入-移除循环,类似于标准工作条件;(2)文件受到逆时针方向的扭矩作用,模拟仪器尖端锁定在根管壁时的自动反转运动。
标准和自动反转条件的模拟分别在文件中产生弯曲和扭转加载条件。在考虑不同根管形状的标准情况下,SystemGT 的应变通常低于 ProTaper 的应变,并且始终处于伪弹性范围内;只有在 1 种情况下,ProTaper 超过了伪弹性范围限制。在自动反转情况下,检测到 ProTaper 的更好性能。
两种模拟条件突出了文件的不同力学性能;SystemGT 在弯曲受力下表现出稍好的性能,而 Protaper 在扭转受力下表现出更好的性能。