首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Effect of different implant configurations on biomechanical behavior of full-arch implant-supported mandibular monolithic zirconia fixed prostheses
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Effect of different implant configurations on biomechanical behavior of full-arch implant-supported mandibular monolithic zirconia fixed prostheses

机译:不同植入物配置对全拱形植入颌骨整体氧化锆固定假体的生物力学行为

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摘要

Mechanical failure of zirconia-based full-arch implant-supported fixed dental prostheses (FAFDPs) remains a critical issue in prosthetic dentistry. The option of full-arch implant treatment and the biomechanical behaviour within a sophisticated screw-retained prosthetic structure have stimulated considerable interest in fundamental and clinical research. This study aimed to analyse the biomechanical responses of zirconia-based FAFDPs with different implant configurations (numbers and distributions), thereby predicting the possible failure sites and the optimum configuration from biomechanical aspect by using finite element method (FEM). Five 3D finite element (FE) models were constructed with patient-specific heterogeneous material properties of mandibular bone. The results were reported using volume-averaged von-Mises stresses (sigma(VA)(VM)) to eliminate numerical singularities. It was found that wider placement of multi-unit copings was preferred as it reduces the cantilever effect on denture. Within the limited areas of implant insertion, the adoption of angled multi-unit abutments allowed the insertion of oblique implants in the bone and wider distribution of the multi-unit copings in the prosthesis, leading to lower stress concentration on both mandibular bone and prosthetic components. Increasing the number of supporting implants in a FAFDPs reduced loading on each implant, although it may not necessarily reduce the stress concentration in the most posterior locations significantly. Overall, the 6-implant configuration was a preferable configuration as it provided the most balanced mechanical performance in this patient-specific case.
机译:基于氧化锆的全拱形植入式固定牙科假肢(FAFDPS)的机械故障仍然是假肢牙科的关键问题。全拱植入治疗的选择和精密螺杆保留假体结构中的生物力学行为刺激了对基本和临床研究的相当兴趣。该研究旨在通过使用有限元方法(FEM)来分析不同植入物配置(数量和分布)的基于氧化锆的FAFDP的生物力学响应,从而预测可能的故障部位和从生物力学方面的最佳配置。用颌骨骨的患者特异性异质材料性能构建五个3D有限元(Fe)模型。报道了使用体积平均的von-mises应力(Sigma(Va)(Vm))来消除数值奇点的结果。结果发现,优选的是,更广泛地放置多单位应答,因为它减少了对义齿的悬臂作用。在植入物插入的有限区域内,采用成角度的多单元支座使倾斜植入物在骨骼中插入骨骼中的多单元调位在假体中的较宽分布,导致下颌骨和假体组分降低应力浓度。增加了在每个植入物上减少负载的FAFDP中的支撑植入物的数量,尽管它可能不一定明显降低最后部位置的应力集中。总体而言,6植入式配置是一种优选的配置,因为它提供了该患者特定情况下最平衡的机械性能。

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