Hussein Mostafa Omran, Rabie Mahmoud Elsayed
Faculty of Dentistry, Qassim University, Buraidah, Qassim, Saudi Arabia.
J Oral Implantol. 2015 Apr;41(2):e12-8. doi: 10.1563/AAID-JOI-D-13-00121. Epub 2013 Sep 13.
The All-on-4 design was used successfully for restoring edentulous mandible. This design avoids anatomic cripples such as inferior alveolar nerve by tilting posterior implants. Moreover, tilting posterior implants of All-on-4 design had a mechanical preference than the conventional design. On the other hand, the anterior implants are parallel at the lateral incisor region. Several researches showed favorable results for tilting posterior implants. However, research did not study the influence of the anterior implant position or orientation on the mechanical aspects of this design. This study analyzes the influence of varying anterior implant position and orientation of the All-on-4 design using nonlinear contact 3D finite-element analysis. Three copied 3-dimensional models of the All-on-4 design were classified according to anterior implant position and orientation. The frictional contact between fixtures and bone was the contact type in this finite element analysis. Finally, von Mises stress and strain at implant and bone levels were recorded and analyzed using finite element software. Stress concentrations were detected mainly around the posterior implant at the loaded side. Values of the maximum equivalent stress and strain were around tilted implants of design III followed by design II, then design I. Changing the position or orientation of the anterior implants in All-on-4 design influences stress-strain distribution of the whole design.
All-on-4设计已成功用于修复无牙下颌骨。这种设计通过倾斜后部种植体避免了解剖学上的缺陷,如下牙槽神经。此外,All-on-4设计的倾斜后部种植体在力学方面比传统设计更具优势。另一方面,前部种植体在侧切牙区域是平行的。多项研究表明倾斜后部种植体有良好的效果。然而,此前的研究并未探讨前部种植体位置或方向对该设计力学方面的影响。本研究使用非线性接触三维有限元分析来分析All-on-4设计中前部种植体位置和方向变化的影响。根据前部种植体的位置和方向,对三个复制的All-on-4设计三维模型进行了分类。在该有限元分析中,种植体与骨之间的摩擦接触为接触类型。最后,使用有限元软件记录并分析种植体和骨水平处的von Mises应力和应变。应力集中主要在加载侧的后部种植体周围检测到。最大等效应力和应变值在设计III的倾斜种植体周围最大,其次是设计II,然后是设计I。改变All-on-4设计中前部种植体的位置或方向会影响整个设计的应力应变分布。