Endowed Chair of Oral Technology, Dental School, University of Bonn, Welschnonnenstr.17, 53111 Bonn, Germany.
J Biomech. 2009 Oct 16;42(14):2415-8. doi: 10.1016/j.jbiomech.2009.06.032. Epub 2009 Sep 5.
The assessment of the behavior of immediately loaded dental implants using biomechanical methods is of particular importance. The primary goal of this investigation is to optimize the function of the implants to serve for immediate loading. Animal experiments on reindeer antlers as a novel animal model will serve for investigation of the bone remodeling processes in the implant bed. The main interest is directed towards the time and loading-dependant behavior of the antler tissue around the implants. The aim and scope of this work was to design an autonomous loading device that has the ability to load an inserted implant in the antler with predefined occlusal forces for predetermined time protocols. The mechanical part of the device can be attached to the antler and is capable of cyclically loading the implant with forces of up to 100 N. For the calibration and testing of the loading device a biomechanical measuring system has been used. The calibration curve shows a logarithmic relationship between force and motor current and is used to control the force on the implant. A first test on a cast reindeer antler was performed successfully.
使用生物力学方法评估即刻负载牙科种植体的行为具有特别重要的意义。本研究的主要目的是优化种植体的功能,以实现即刻负载。以驯鹿鹿角作为新型动物模型的动物实验将用于研究种植床中的骨重塑过程。主要关注点是围绕植入物的鹿角组织的时间和负载依赖性行为。本工作的目的和范围是设计一种自主加载装置,该装置能够以预定的时间协议用预设的咬合力加载插入鹿角中的植入物。该装置的机械部分可以连接到鹿角上,并能够以高达 100 N 的力对植入物进行周期性加载。为了校准和测试加载装置,使用了生物力学测量系统。校准曲线显示力和电动机电流之间的对数关系,并用于控制植入物上的力。在一个铸造的驯鹿鹿角上进行的首次测试取得了成功。