Department of Diagnostic and Surgery, UNESP - São Paulo State University, Araraquara, Brazil.
Clin Implant Dent Relat Res. 2010 Sep;12(3):219-34. doi: 10.1111/j.1708-8208.2009.00155.x. Epub 2009 May 7.
The purpose of the present study was to evaluate the biomechanical environment of immediately placed implants, before and after osseointegration, by comparing three different implant-abutment connection types.
A computer tomography-based finite element model of an upper central incisor extraction socket was constructed containing implants with either external hex, internal hex, or Morse-taper connection. Frictional contact elements were used in the bone, implant, abutment, and abutment screw interfaces in the immediately placed simulations. In osseointegrated simulations, the repair of bone alveolar defect and a glued bone-to-implant interface were assumed. By analysis of variance, the influence was assessed of connection type, clinical situation, and loading magnitude on the peak equivalent strain in the bone, peak von Mises stress in the abutment screw, bone-to-implant relative displacement, and abutment gap.
The loading magnitudes had a significant contribution, regardless of the assessed variable. However, the critical clinical situation of an immediately placed implant itself was the main factor affecting the peak equivalent strain in the bone and bone-to-implant displacement. The largest influence of the connection type in this protocol was seen on the peak equivalent stress in the abutment screw. On the other hand, a higher influence of the various connection types on bone stress/strain could be noted in osseointegrated simulations.
The implant-abutment connection design did not significantly influence the biomechanical environment of immediately placed implants. Avoiding implant overloading and ensuring a sufficient initial intraosseous stability are the most relevant parameters for the promotion of a safe biomechanical environment in this protocol.
本研究旨在通过比较三种不同的种植体-基台连接方式,评估即刻植入种植体在骨整合前后的生物力学环境。
构建了一个以上颌中切牙拔牙窝为基础的计算机断层扫描有限元模型,其中包含了具有外六方、内六方或莫氏锥度连接的种植体。在即刻放置模拟中,在骨、种植体、基台和基台螺钉界面使用了摩擦接触元素。在骨整合模拟中,假设了牙槽骨缺损的修复和骨-种植体界面的胶合。通过方差分析,评估了连接类型、临床情况和加载大小对骨中的峰值等效应变、基台螺钉中的峰值 von Mises 应力、骨-种植体相对位移和基台间隙的影响。
加载大小无论评估变量如何都有显著的影响。然而,即刻植入种植体本身的关键临床情况是影响骨中的峰值等效应变和骨-种植体位移的主要因素。在本方案中,连接类型的最大影响是在基台螺钉中的峰值等效应力上。另一方面,在骨整合模拟中,可以注意到各种连接类型对骨应力/应变的影响更大。
种植体-基台连接设计并没有显著影响即刻植入种植体的生物力学环境。避免种植体过载并确保足够的初始骨内稳定性是在本方案中促进安全生物力学环境的最相关参数。