Heckmann Siegfried M, Karl Matthias, Wichmann Manfred G, Winter Werner, Graef Friedrich, Taylor Thomas D
School of Dental Medicine, University of Erlangen-Nuremberg, Erlangen, Germany.
Clin Oral Implants Res. 2006 Jun;17(3):345-50. doi: 10.1111/j.1600-0501.2005.01177.x.
Implant-borne fixed partial dentures (FPDs), whether cementable or screwable superstructures, ought to display a true passive fit. The objective of this in vivo-based finite-element analysis is, therefore, to quantify the degree of stress which occurs in the bone around the implants as a result of the fixation of cemented and screw-retained FPDs. On the basis of a simulated patient situation with two implants, six groups of implant-supported superstructures containing 10 samples each were fabricated. Strain gauges which were mounted on the pontics of the restorations were subsequently used to take in vivo measurements (Ethics Commission Approval No. 2315). Taking the values obtained as a basis, the von Mises equivalent stress was chosen to illustrate bone loading in three-dimensional finite-element models. Superstructure fixation caused residual interface stress as high as 30 MPa. Similar stress magnitudes can be observed for axial implant loading of 200 N. Assuming that the axial loading of a single implant with 200 N is within the bone's physiological range, it can be concluded that the degree of stress resulting from the fixation of superstructures alone does not constitute a risk.
种植体支持的固定局部义齿(FPDs),无论是可粘结的还是可螺丝固定的上部结构,都应呈现真正的被动就位。因此,这项基于体内的有限元分析的目的是量化由于粘结式和螺丝固位式FPDs固定而在种植体周围骨组织中产生的应力程度。基于一个有两颗种植体的模拟患者情况,制作了六组种植体支持的上部结构,每组包含10个样本。随后,安装在修复体桥体上的应变片被用于进行体内测量(伦理委员会批准号2315)。以获得的值为基础,选择冯·米塞斯等效应力来描述三维有限元模型中的骨负荷情况。上部结构固定会导致高达30MPa的残余界面应力。在种植体轴向加载200N时也能观察到类似的应力大小。假设单个种植体200N的轴向加载在骨组织的生理范围内,可以得出结论,仅由上部结构固定产生的应力程度不构成风险。