Kilinç Yeliz, Erkmen Erkan, Kurt Ahmet
*Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Gazi University †Department of Manufacturing Engineering, Faculty of Engineering, Atilim University, Ankara, Turkey.
J Craniofac Surg. 2016 Jan;27(1):36-40. doi: 10.1097/SCS.0000000000002173.
In this study, the biomechanical behavior of different fixation methods used to fix the mandibular anterior segment following various amounts of superior repositioning was evaluated by using Finite Element Analysis (FEA). The three-dimensional finite element models representing 3 and 5 mm superior repositioning were generated. The gap in between segments was assumed to be filled by block bone allograft and resignated to be in perfect contact with the mandible and segmented bone. Six different finite element models with 2 distinct mobilization rate including 3 different fixation configurations, double right L (DRL), double left L (DLL), or double I (DI) miniplates with monocortical screws, correspondingly were created. A comparative evaluation has been made under vertical, horizontal and oblique loads. The von Mises and principal maximum stress (Pmax) values were calculated by finite element solver programme. The first part of our ongoing Finite Element Analysis research has been addressed to the mechanical behavior of the same fixation configurations in nongrafted models. In comparison with the findings of the first part of the study, it was concluded that bone graft offers superior mechanical stability without any limitation of mobilization and less stress on the fixative appliances as well as in the bone.
在本研究中,通过有限元分析(FEA)评估了在进行不同程度的上颌重新定位后,用于固定下颌前段的不同固定方法的生物力学行为。生成了代表上颌重新定位3毫米和5毫米的三维有限元模型。假定节段之间的间隙由块状同种异体骨填充,并重新设定为与下颌骨和节段性骨完美接触。创建了六种不同的有限元模型,具有两种不同的移动速率,包括三种不同的固定配置,即双右L(DRL)、双左L(DLL)或双I(DI)微型钢板加单皮质螺钉。在垂直、水平和斜向载荷下进行了对比评估。通过有限元求解程序计算了冯·米塞斯应力和主最大应力(Pmax)值。我们正在进行的有限元分析研究的第一部分针对的是未植骨模型中相同固定配置的力学行为。与该研究第一部分的结果相比,得出的结论是,骨移植提供了更好的机械稳定性,在移动方面没有任何限制,并且对固定器械以及骨的应力更小。