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前上颌种植体角度基台类型的研究:有限元分析。

Investigation of the Type of Angled Abutment for Anterior Maxillary Implants: A Finite Element Analysis.

机构信息

Department of Mechanical Engineering, Faculty of Engineering and Architecture, Erzurum Technical University, Erzurum, Turkey.

Department of Prosthodontics, Faculty of Dentistry, Atatürk University, Erzurum, Turkey.

出版信息

J Prosthodont. 2022 Oct;31(8):689-696. doi: 10.1111/jopr.13462. Epub 2021 Dec 17.

Abstract

PURPOSE

The optimal abutment material and design for an angled implant-abutment connection in the esthetic zone is unclear. The purpose of this finite element analysis (FEA) study was to compare different abutment models by evaluating the stress values in the implant components and strain values on the simulated bone around an anterior maxillary implant with different angled abutment models and loading conditions.

MATERIALS AND METHODS

One Ø3.5×12-mm implant was placed in 3D FEA models representing the anterior left lateral segment of the maxilla. Three different contemporary implant models were created with 17° or 25° angled abutments (Ti base abutment, zirconia abutment, and titanium abutment) and 3D-modeled. The implant abutment model was an angled Ti base abutment (TIB), an angled zirconia abutment (ZIR), or an angled titanium abutment (TIT). Vertical and oblique loads of 100 N for the central incisors were applied as boundary conditions to the cingulum area and incisal area in a nonlinear FEA.

RESULTS

The TIB model resulted in reduced stress conditions. According to the von Mises stresses occurring on the screw, abutment, crown, and implant, especially under oblique loads, the TIB model was exposed to less stress than the ZIR or TIT models. Strain values in simulated cortical and trabecular bones were obtained lower in the TIB model.

CONCLUSIONS

When a standard implant was placed in the esthetic zone at an increased angle, the implants, abutments, and screws had more unfavorable stress levels; therefore, using a Ti-base abutment may reduce stress. The amount of contact surface of the implant with the simulated cortical bone is also an important factor affecting stress and strain.

摘要

目的

在美学区域,对于带角度的种植体-基台连接,最佳的基台材料和设计尚不清楚。本有限元分析(FEA)的目的是通过评估不同带角度基台模型在前上颌种植体的不同角度基台模型和加载条件下,种植体部件中的应力值和模拟骨上的应变值,来比较不同的基台模型。

材料和方法

在代表上颌前左侧段的 3D FEA 模型中放置了一个 Ø3.5×12-mm 种植体。使用三种不同的当代种植体模型,创建了带有 17°或 25°带角度基台(Ti 基台、氧化锆基台和钛基台)的模型,并进行了 3D 建模。种植体-基台模型为带角度的 Ti 基台(TIB)、带角度的氧化锆基台(ZIR)或带角度的钛基台(TIT)。非线性 FEA 中,将 100 N 的垂直和倾斜负荷施加于基台的龈缘区和切缘区,作为边界条件。

结果

TIB 模型导致了较低的应力状态。根据螺钉、基台、牙冠和种植体上发生的 von Mises 应力,尤其是在倾斜负荷下,TIB 模型比 ZIR 或 TIT 模型承受的应力更小。在 TIB 模型中,模拟皮质骨和松质骨中的应变值更低。

结论

当标准种植体在美学区域以增加的角度植入时,种植体、基台和螺钉的应力水平更不利;因此,使用 Ti 基台可能会降低应力。种植体与模拟皮质骨的接触表面的量也是影响应力和应变的一个重要因素。

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