Natali Arturo N, Pavan Piero G, Ruggero Andrea L
Centre of Mechanics of Biological Materials, University of Padova, Via F. Marzolo 9, I-35131 Padova, Italy.
Clin Oral Implants Res. 2006 Feb;17(1):67-74. doi: 10.1111/j.1600-0501.2005.01162.x.
The purpose of the present work is to investigate the interaction phenomena occurring between endosseus dental implants and peri-implant bone tissue.
Detailed finite element models are adopted in order to analyze the actual behavior of bone-implant system depending on implant and anatomical site configuration and loading conditions. Different types of titanium dental implants are considered. Implant finite element models are obtained through a reverse engineering procedure and adopting specific software for the reconstruction of geometrical configuration. Anatomical sites are modeled starting from computerized tomography data, according to specific image processing procedures.
Occlusal static forces are applied to the implants and their effects on the bone-implant interface region are evaluated. The influence of several parameters, such as morphometry of anatomical site or loading condition, on the biomechanical response of bone-implant system is considered.
The evaluation of the biomechanical response of implant-bone compound necessarily requires the adoption of accurate numerical models, accounting for the complex geometry of threaded implants, as well as of the anatomy of the patients to be able to provide for reliable results pertaining to stress/strain path on peri-implant bone tissue.
本研究的目的是调查骨内牙种植体与种植体周围骨组织之间发生的相互作用现象。
采用详细的有限元模型,以分析骨-种植体系统根据种植体、解剖部位构型和加载条件的实际行为。考虑了不同类型的钛牙种植体。种植体有限元模型通过逆向工程程序并采用特定软件重建几何构型获得。根据特定图像处理程序,从计算机断层扫描数据开始对解剖部位进行建模。
将咬合静力施加于种植体,并评估其对骨-种植体界面区域的影响。考虑了几个参数,如解剖部位形态或加载条件,对骨-种植体系统生物力学响应的影响。
评估种植体-骨复合体的生物力学响应必然需要采用精确的数值模型,考虑螺纹种植体的复杂几何形状以及患者的解剖结构,以便能够提供与种植体周围骨组织上的应力/应变路径相关的可靠结果。