Erdelt Kurt-Jürgen, Lamper Timea
Department of Prosthodontics, Ludwig Maximilians University, Munich, Germany.
Biomed Tech (Berl). 2010 Oct;55(5):273-8. doi: 10.1515/BMT.2010.040. Epub 2010 Sep 15.
The testing of new materials under simulation of oral conditions is essential in medicine. For simulation of fracture strength different simulation devices are used for test set-up. The results of these in vitro tests differ because there is no standardization of tooth mobility in simulation devices. The aim of this study is to develop a simulation device that depicts the tooth mobility curve as accurately as possible and creates reproducible and scalable mobility curves.
With the aid of published literature and with the help of dentists, average forms of tooth classes were generated. Based on these tooth data, different abutment tooth shapes and different simulation devices were designed with a CAD system and were generated with a Rapid Prototyping system. Then, for all simulation devices the displacement curves were created with a universal testing machine and compared with the tooth mobility curve. With this new information, an improved adapted simulation device was constructed.
A simulations device that is able to simulate the mobility curve of natural teeth with high accuracy and where mobility is reproducible and scalable was developed.
在口腔条件模拟下对新材料进行测试在医学中至关重要。为了模拟断裂强度,使用了不同的模拟装置来进行测试设置。这些体外测试的结果存在差异,因为模拟装置中牙齿移动性没有标准化。本研究的目的是开发一种模拟装置,尽可能准确地描绘牙齿移动曲线,并创建可重复和可扩展的移动曲线。
借助已发表的文献并在牙医的帮助下,生成了各类牙齿的平均形态。基于这些牙齿数据,使用CAD系统设计了不同的基牙形状和不同的模拟装置,并通过快速成型系统生成。然后,使用万能试验机为所有模拟装置创建位移曲线,并与牙齿移动曲线进行比较。利用这些新信息,构建了一种改进的适配模拟装置。
开发出了一种能够高精度模拟天然牙移动曲线且移动性可重复和可扩展的模拟装置。