...
首页> 外文期刊>Symmetry >Three-Dimensional Finite Element Analysis of Maxillary Sinus Floor Augmentation with Optimal Positioning of a Bone Graft Block
【24h】

Three-Dimensional Finite Element Analysis of Maxillary Sinus Floor Augmentation with Optimal Positioning of a Bone Graft Block

机译:上颌窦底隆起的三维有限元分析及骨移植块的最佳定位

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Purpose: the aim of the computational 3D-finite element study is to evaluate the influence of an augmented sinus lift with additional inserted bone grafting. The bone graft block stabilizes the implant in conjunction with conventional bone augmentation. Two finite element models were applied: the real geometry based bone models and the simplified geometry models. The bone graft block was placed in three different positions. The implants were loaded first with an axial force and then with forces simulating laterotrusion and protrusion. This study examines whether the calculated stress behavior is symmetrical for both models. Having established a symmetry between the primary axis, the laterotrusion and protrusion behavior reduces calculation efforts, by simplifying the model. Material and Methods: a simplified U-shaped 3D finite element model of the molar region of the upper jaw and a more complex anatomical model of the left maxilla with less cortical bone were created. The bone graft block was placed in the maxillary sinus. Then the von Mises stress distribution was calculated and analyzed at three block positions: at contact with the sinus floor, in the middle of the implant helix and in the upper third of the implant. The two finite element models were then compared to simplify the modelling. Results: the position of the bone graft block significantly influences the magnitude of stress distribution. A bone graft block positioned in the upper third or middle of the implant reduces the quantity of stress compared to the reference model without a bone graft block. The low bone graft block position is clearly associated with lower stress distribution in compact bone. We registered no significant differences in stress in compact bone with regard to laterotrusion or protrusion. Conclusions: maximum values of von Mises stresses in compact bone can be reduced significantly by using a bone graft block. The reduction of stress is nearly the same for positions in the upper third and the middle of the implant. It is much more pronounced when the bone graft block is in the lower third of the implant near the sinus floor, which appeared to be the best position in the present study.
机译:目的:3D有限元计算研究的目的是评估鼻窦提升术与其他插入式骨移植术的影响。骨移植物块与常规的骨增加术一起使植入物稳定。应用了两个有限元模型:基于真实几何的骨骼模型和简化的几何模型。将骨移植物块放置在三个不同的位置。首先用轴向力加载植入物,然后用模拟横向拉伸和突出的力加载植入物。这项研究检查了两个模型的应力行为是否对称。在主轴之间建立了对称性之后,横向拉伸和拉伸行为通过简化模型而减少了计算工作。材料和方法:创建了上颌磨牙区的简化的U形3D有限元模型和皮质较少的左上颌骨的更复杂的解剖模型。将植骨块放置在上颌窦内。然后,计算并分析了三个块位置的von Mises应力分布:与窦底接触,在种植体螺旋的中间和在种植体的上部三分之一。然后将两个有限元模型进行比较以简化建模。结果:植骨块的位置显着影响应力分布的大小。与没有骨移植块的参考模型相比,位于植入物上部或中部的骨移植块减少了应力。较低的骨移植块位置显然与致密骨中较低的应力分布有关。我们没有发现在侧突或突出方面,紧致骨的应力没有显着差异。结论:使用骨移植块可以显着降低致密骨中冯·米塞斯应力的最大值。对于植入物的上部三分之一和中间位置的应力减小几乎相同。当植骨块位于窦底附近的植入物的下三分之一处时,这种情况更为明显,这似乎是本研究中的最佳位置。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号