Eğri kök kanallarında şekillendirme sırasında oluşan streslerin sonlu elemanlar yöntemi ile değerlendirilmesi

Dilek Türkaydın, M. Günday, B. Ekici
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Abstract

Objective:  The aim of this study is to determine stress evaluation of root canal wall during shaping curved canals with ProTaper and HeroShaper systems by using three-dimensional finite element universal.  Methods:  The geometries of the ProTaper Universal and HeroShaper Ni-Ti rotary systems’ selected files were created using three-dimensional finite element modelsThe three-dimensional FEA model within a curved canal was established by integrating a simulated canal and natural tooth. A micro-focus CT scanner was used to scan the models. After integration and modification a final three-dimensional model with a smooth surface and mostly centered canal was established. The stresses on the instrument during simulated shaping of a root canal were analyzed numerically by using a three-dimensional finite element package, LS-DYNA, taking into account the nonlinear mechanical behavior of the nickel-titanium material. Stress distribution in the instruments and the canal walls was recorded during simulated shaping.  Results:  With ProTaper file system, stress concentrations were determined towards the outer aspect of the curvature in the apical portion of the canal but in HeroShaper system stress was more concentrated in the middle portion of the canal and were less than ProTaper model.  Conclusion:  HeroShaper files cut more efficiently and generated less stress on the canal walls than ProTaper files because of their possitive rake angle. It was observed that there was stress concentration towards the outer aspect of the curvature in the apical portion of the canal with the ProTaper file system. This shows us that these files are more feasible for apical transportation. Key words:  Curved canals, HeroShaper, ProTaper, finite element analysis, stress
目的:采用三维有限元通用方法研究ProTaper和HeroShaper系统在弯曲根管成形过程中根管壁的应力评估。方法:采用三维有限元模型建立ProTaper Universal和HeroShaper镍钛旋转系统选择锉的几何形状,将模拟根管与自然牙结合,建立弯曲根管内的三维有限元模型。采用微聚焦CT扫描仪对模型进行扫描。经过整合和修正,最终建立了一个表面光滑、管道居中的三维模型。考虑镍钛材料的非线性力学行为,采用LS-DYNA三维有限元软件对模拟根管成形过程中器械上的应力进行了数值分析。在模拟成形过程中记录了仪器和管壁的应力分布。结果:在ProTaper文件系统中,应力集中在根管顶端曲率的外侧,而在HeroShaper文件系统中,应力更集中在根管中部,且小于ProTaper模型。结论:与ProTaper锉相比,HeroShaper锉由于其正前角,切割效率更高,对管壁产生的应力更小。我们观察到,在ProTaper文件系统的根管顶端部分,应力集中在曲率的外侧。这表明,这些文件是更可行的顶端运输。关键词:弯管,HeroShaper, ProTaper,有限元分析,应力
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