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骨质疏松下颌骨中可扩张植入物的最佳扩张角度和长度的选择:三维有限元分析。

Selection of optimal expansion angle and length of an expandable implant in the osteoporotic mandible: a three-dimensional finite element analysis.

机构信息

Department of Oral and Maxillofacial Surgery, School of Stomatology, the fourth Military Medical University, Xi'an, P R China.

出版信息

Int J Oral Maxillofac Implants. 2013 Mar-Apr;28(2):e88-97. doi: 10.11607/jomi.2368.

Abstract

PURPOSE

To identify from a biomechanical point of view the optimal parameters for an expandable implant in the osteoporotic mandible, a three-dimensional finite element model (FEM) of an expandable implant was created with variations in expansion angle and expansion length.

MATERIAL AND METHODS

FEMs of osteoporotic posterior mandibular segments with an expandable implant were created. An axial load of 100 N and a buccolingual load of 30 N were applied to the implant. The expansion angle ranged from 0 to 4 degrees, and the expansion length ratio ranged from 1/6 to 5/6. The maximum equivalent stress (max EQV stress) in jawbone and the implant-abutment complex and the maximum displacement in the implant-abutment complex were evaluated.

RESULTS

With changes in the expansion angle and expansion length ratio, the max EQV stress in cortical and cancellous bone increased by 12.4% and 73.9%, respectively, under axial loading, respectively, and by 38.6% and 69.1%, respectively, under buccolingual loading. The max EQV stress in the implant-abutment complex increased by 65.3% and 160% under axial and buccolingual loading, respectively. Maximum displacement in the implant-abutment complex increased by 3.66% and 19.73% under axial and buccolingual loading, respectively.

CONCLUSION

Expansion angles and the expansion length ratio favored stress distribution in jawbone under axial and buccolingual loads, respectively. An expansion angle between 1.5 and 2.5 degrees and an expansion length ratio between 2/6 and 3/6 provided optimal biomechanical properties for an expandable implant in the osteoporotic mandible.

摘要

目的

从生物力学角度确定在骨质疏松下颌骨中使用可扩张植入物的最佳参数,为此创建了具有不同扩张角度和扩张长度的可扩张植入物的三维有限元模型(FEM)。

材料与方法

创建了带有可扩张植入物的骨质疏松性下颌后段的 FEM。在植入物上施加 100 N 的轴向载荷和 30 N 的颊舌向载荷。扩张角度范围为 0 至 4 度,扩张长度比范围为 1/6 至 5/6。评估了颌骨和植入物-基台复合体中的最大等效应力(max EQV stress)以及植入物-基台复合体中的最大位移。

结果

随着扩张角度和扩张长度比的变化,轴向载荷下皮质骨和松质骨的 max EQV 应力分别增加了 12.4%和 73.9%,颊舌向载荷下分别增加了 38.6%和 69.1%。轴向和颊舌向加载下,植入物-基台复合体中的 max EQV 应力分别增加了 65.3%和 160%。轴向和颊舌向加载下,植入物-基台复合体的最大位移分别增加了 3.66%和 19.73%。

结论

扩张角度和扩张长度比有利于轴向和颊舌向载荷下颌骨的应力分布。在骨质疏松下颌骨中,扩张角度在 1.5 至 2.5 度之间,扩张长度比在 2/6 至 3/6 之间可提供最佳的生物力学性能。

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