首页> 美国卫生研究院文献>Journal of Dental Research Dental Clinics Dental Prospects >Comparison of stress in implant-supported monolithic zirconia fixed partial dentures between canine guidance and group function occlusal patterns: A finite element analysis
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Comparison of stress in implant-supported monolithic zirconia fixed partial dentures between canine guidance and group function occlusal patterns: A finite element analysis

机译:种植体支持的整体式氧化锆固定局部义齿在犬导向和群功能咬合模式之间的应力比较:有限元分析

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摘要

>Background. Monolithic zirconia is an emerging material for crowns and bridges. The possibility of full digital design has made it an attractive alternative material for implant-supported prostheses. A proper design is vital in the success of such a prosthesis like any other. This study, in the shortage of scientific evidence, has tried to assess the stress distribution of occlusal forces inside the implant-prosthesis system of a 3-unit bridge made of monolithic zirconia. >Methods. A 3-unit monolithic zirconia bridge supported by two implant fixtures placed on the teeth #13 and #15 was digitalized. It was converted to a mesh of 59000 nodes and 34000 elements. Five types of occlusal forces (one as vertical centric, two at 15º and 30º simulating canine pattern of lateral movement, and two at 15º and 30º simulating group function pattern) were applied. The stress distribution among all the components of the implant-bridge system was assessed using Ansys Workbench 14 software and finite element analysis. >Results. The maximum stress was between 286 and 546 MPa, which were found in either the fixture‒abutment screw area or in the upper part of the pontic connector between the canine and first premolar. The maximum pressure increased with an increase in the angle of occlusal force. Significantly higher stress was recorded in the group function occlusal pattern. >Conclusion. Monolithic zirconia can be promising in designing bridges in the canine‒premolar area. However, proper design is necessary with more attention to the connectors and types of occlusal forces.
机译:>背景。整体式氧化锆是一种用于冠和桥的新兴材料。全数字化设计的可能性使其成为用于植入物支持的假体的有吸引力的替代材料。像其他产品一样,正确的设计对于这种假体的成功至关重要。在缺乏科学证据的情况下,该研究试图评估由整体式氧化锆制成的三单元桥的植入物-假体系统内部咬合力的应力分布。 >方法。数字化了3个单元的整体氧化锆桥,该桥由放置在#13和#15牙齿上的两个植入物固定装置支撑。它已转换为59000个节点和34000个元素的网格。施加了五种类型的咬合力(一种为垂直中心力,两种为15º和30º模拟犬齿侧向运动模式,另外两种为15º和30º模拟群功能模式)。使用Ansys Workbench 14软件和有限元分析评估了种植体桥系统所有组件之间的应力分布。 >结果。最大应力在286和546 MPa之间,可以在固定器-基台螺钉区域或犬齿与第一前磨牙之间的桥状连接器的上部找到。最大压力随着咬合力角度的增加而增加。在组功能咬合模式中记录到明显更高的压力。 >结论。整体氧化锆在犬前磨牙区的桥梁设计中很有希望。但是,必须对连接器和咬合力的类型给予更多关注,以进行适当的设计。

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