Unsal Gokce Soganci, Erbasar Guzin Neda Hasanoglu, Aykent Filiz, Ozyilmaz Ozgun Yusuf, Ozdogan Mahmut Sertac
Ankara Yildirim Beyazit University, School of Dentistry, Department of Prosthodontics, Ankara, Turkey.
Ankara Yildirim Beyazit University, School of Dentistry, Department of Oral and Maxillofacial Surgery, Ankara, Turkey.
J Oral Implantol. 2019 Oct;45(5):363-370. doi: 10.1563/aaid-joi-D-19-00076. Epub 2019 Sep 19.
The biomechanical behavior of the edentulous mandible with bone irregularities that has been rehabilitated with implant-supported overdentures has become an important factor for treatment planning. Restorative options, including dental implants with various attachments, affect the stress distribution. The purpose of this study was to evaluate the stress distribution of cortical bone around the implant neck and implant structures in overdentures with two different attachment types at the edentulous mandible and with different bone heights using three-dimensional finite element analysis. Five three-dimensional models of an edentulous mandible were designed and implemented. Ten models were constructed with ball and locator attachments. Static bilateral and unilateral vertical and oblique occlusal loads with magnitudes of 100 N were applied to the overdentures. The principal stresses were higher in the presence of oblique loads compared to vertical loads in all the analyzed models. Maximum principal stresses were observed around the mesial side of the contralateral implant, and the minimum principal stresses were noted around the distal side of ipsilateral implant during unilateral vertical loading. These patterns were reversed during oblique loadings. The ball attachment models yielded lower von Mises stress values than the locator models at all the loading conditions, while the stress distributions were similar in the models with the same and different bone levels. Correspondingly, bone corrections due to irregularities may not be necessary in terms of biomechanics. The results of this study may provide clinicians a better understanding for the mandibular overdenture design in the cases at which different bone heights exist.
用种植体支持的覆盖义齿修复的存在骨不规则的无牙下颌骨的生物力学行为已成为治疗计划的一个重要因素。修复选择,包括带有各种附着体的牙种植体,会影响应力分布。本研究的目的是使用三维有限元分析评估无牙下颌骨中两种不同附着类型且具有不同骨高度的覆盖义齿中种植体颈部周围皮质骨和种植体结构的应力分布。设计并构建了五个无牙下颌骨的三维模型。用球附着体和定位附着体构建了十个模型。对覆盖义齿施加大小为100 N的静态双侧和单侧垂直及斜向咬合负荷。在所有分析模型中,与垂直负荷相比,斜向负荷下的主应力更高。在单侧垂直加载过程中,最大主应力出现在对侧种植体的近中侧周围,最小主应力出现在同侧种植体的远中侧周围。在斜向加载过程中这些模式相反。在所有加载条件下,球附着体模型产生的von Mises应力值低于定位附着体模型,而在具有相同和不同骨水平的模型中应力分布相似。相应地,就生物力学而言,可能无需对不规则骨进行矫正。本研究结果可为临床医生在存在不同骨高度的病例中设计下颌覆盖义齿提供更好的理解。