Department of Oral and Maxillofacial Surgery, University Hospital Tuebingen, Osianderstrasse 2-8, 72076 Tuebingen, Germany.
Rua Gustavo Sampaio 223/1001, 22010.010 Rio de Janeiro, Brazil.
J Craniomaxillofac Surg. 2018 May;46(5):785-794. doi: 10.1016/j.jcms.2018.01.016. Epub 2018 Feb 2.
To evaluate the biomechanical performance of a commercially available bridging plate (2.4) as well as screws and bone simulating the reconstruction of hemimandibular defects and to indicate alternatives of reinforcement to prevent plate fractures either by strength or fatigue.
Two common hemimandibular defects are investigated using computed finite element analysis (FEA) approach. Simplified and refined computational models are developed for the geometry of the screw. Conditions of non-locking and locking plate-screw interfaces are considered. Static loads of 120 N are applied. Von Mises stresses and fatigue are calculated. As reinforcement, a second complete or partial plate is placed onto the original plate.
Results demonstrate that reconstruction plates are often subjected to excessive stress that may lead to fracture either by strength or by fatigue. An attached complete or partial second plate is able to reduce stress in the plate, in screws and bone so that stress remains below the allowable limit of the materials.
A simplified technique of attaching a whole or sectioned second plate onto the original plate can reduce the stress calculated and may reduce the frequency of plate fractures for the patient's comfort, security and financial savings.
评估一种市售桥接板(2.4)以及螺钉和模拟重建半下颌骨缺损的骨的生物力学性能,并指出通过强度或疲劳来防止板骨折的加固替代方案。
使用计算有限元分析(FEA)方法研究了两种常见的半下颌骨缺损。为螺钉的几何形状开发了简化和细化的计算模型。考虑了非锁定和锁定板-螺钉界面的条件。施加 120N 的静态载荷。计算 Von Mises 应力和疲劳。作为加固,将第二块完整或部分板放置在原始板上。
结果表明,重建板经常受到过高的应力,这可能导致板因强度或疲劳而断裂。附加的完整或部分第二块板能够降低板、螺钉和骨中的应力,使应力保持在材料允许极限以下。
将整块或部分第二块板附着在原始板上的简化技术可以降低计算出的应力,并可能降低板骨折的频率,从而提高患者的舒适度、安全性和经济性。