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不同冠材料修复下颌第二磨牙支持结构内产生的应力比较:三维有限元分析(FEA)

Comparison of Stresses Generated within the Supporting Structures of Mandibular Second Molars Restored with Different Crown Materials: 3-D Finite Element Analysis (FEA).

作者信息

Abuelenain Dalia A, Ajaj Reem, El-Bab Eman I M Fath, Hammouda Mohammad M I

机构信息

Conservative Dental Sciences Department, Faculty of Dentistry, King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia.

Mechanical Engineering Department, Al Azhar University, Cairo, Egypt.

出版信息

J Prosthodont. 2015 Aug;24(6):484-93. doi: 10.1111/jopr.12240. Epub 2014 Dec 17.

Abstract

PURPOSE

This study compares the FEA-calculated stresses generated within the supporting periodontal structure of a mandibular second molar restored with a full ceramic crown and with a porcelain-fused-to-metal (PFM) crown, each resisting occlusal forces acting at different inclinations.

MATERIALS AND METHODS

Three-dimensional finite element models representing the crown of an unrestored mandibular second molar and two relevant restoration designs were constructed. Two designs represented the molar restored with a full ceramic crown and with a PFM crown, each cemented with the same resin cement. Occlusion was assumed at three contact areas, which equally shared a 100 N force. The analysis was carried out for forces located in the bucco-axial-lingual plane at five inclinations, 0, 22.5°, 45°, 67.5°, and 90°, measured from the axial direction of the tooth. The magnitudes and sites of the maximum equivalent stress (MES) generated within the supporting periodontium of each analyzed model were collected.

RESULTS

Generally, there were no significant differences in the site and magnitude of MES in the regions of the supporting structure for the analyzed models. The MES was located at the tooth periodontal ligament (PDL) bifurcation area and distal root apex, crestal bone at the junction between cortical and cancellous bone, and the distal wall of the mesial root socket of cancellous bone. The highest stresses corresponded to a horizontal load, followed by the axial load in the PDL and cortical zones. The results show opposite observations for the cancellous bone. The lowest stresses were generated under a load inclination between 22.5° and 45°.

CONCLUSION

Considering the stresses generated within the supporting structures, the present work validates, by calculation, the proposed clinical use of either a full ceramic crown or a PFM crown as a restoration for mandibular second molars.

摘要

目的

本研究比较了全瓷冠和烤瓷熔附金属(PFM)冠修复下颌第二磨牙时,在支持牙周结构内由有限元分析(FEA)计算得出的应力,每种修复体抵抗不同倾斜角度作用的咬合力。

材料与方法

构建了代表未修复下颌第二磨牙牙冠及两种相关修复设计的三维有限元模型。两种设计分别代表用全瓷冠和PFM冠修复的磨牙,均用相同的树脂水门汀粘结。假定在三个接触区域存在咬合,这三个区域平均分担100 N的力。对位于颊 - 轴 - 舌平面、从牙齿轴向测量的五个倾斜角度(0°、22.5°、45°、67.5°和90°)的力进行分析。收集每个分析模型的支持牙周组织内产生的最大等效应力(MES)的大小和部位。

结果

一般来说,分析模型的支持结构区域内MES的部位和大小没有显著差异。MES位于牙齿牙周膜(PDL)分叉区和远中根尖、皮质骨与松质骨交界处的牙槽嵴顶以及松质骨近中牙根槽窝的远中壁。最高应力对应水平载荷,其次是PDL和皮质区域的轴向载荷。松质骨的结果则相反。在22.5°至45°的载荷倾斜角度下产生的应力最低。

结论

考虑到支持结构内产生的应力,本研究通过计算验证了全瓷冠或PFM冠作为下颌第二磨牙修复体的临床应用建议。

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