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Does the transversal screw design increase the risk of mechanical complications in dental implants? A finite elements analysis

机译:横向螺钉设计是否会增加牙科植入物机械并发症的风险?有限元分析

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The transversal screw was introduced in order to overcome some disadvantages of the transocclusal screw. However, its mechanical risk has not been studied sufficiently. The main purpose of this research was to assess and compare stress distribution in the screws and abutment of a single-crown implant with transversal and transocclusal screw models. Two 3D models were assembled to analyse a single-implant-supported prosthesis with transversal and transocclusal screws embedded in the jawbone. The crown was subjected to a static load of value 300 N with different levels of inclination. The transversal screw model, with an axial load of 15 degrees, was the one with lowest stress values in all its components. However, the stress was greater with more inclined loads when compared with the transocclusal model. The prosthetic transversal screw showed much less stress than the rest of the components for any load inclination. The transversal screw design is the option with the lowest risk of mechanical complications, both in the prosthetic screw and in the abutment screw, when applying forces of lower inclination. The more oblique forces favoured a better biomechanical environment in the abutment and its screw in the transocclusal screw model.
机译:引入横向螺钉是为了克服横向咬合螺钉的一些缺点。但是,尚未对其机械风险进行充分研究。这项研究的主要目的是评估和比较具有横向和跨咬合螺钉模型的单冠种植体的螺钉和基台中的应力分布。组装了两个3D模型以分析单个植入物支持的假体,并在颌骨中嵌入横向和经咬合螺钉。柄头承受的静载荷为300 N,倾角不同。横向螺钉模型的轴向载荷为15度,是所有组件中应力值最低的模型。但是,与经咬合模型相比,倾斜载荷更大时应力更大。在任何负载倾斜情况下,假体横向螺钉所承受的应力均比其余组件小得多。当施加较小倾斜力时,无论是在人工螺钉还是在基台螺钉中,均采用横向螺钉设计,机械并发症风险最低。在经咬合螺钉模型中,更倾斜的力有利于基台及其螺钉的生物力学环境更好。

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