Bisler A, Bockholt U, Kordass B, Suchan M, Voss G
Fraunhofer Institute for Computer Graphics (IGD), Fraunhoferstrasse 5, D-64283 Darmstadt, Germany.
Int J Comput Dent. 2002 Apr-Jul;5(2-3):101-6.
The virtual articulator (VA) is intended for use as a tool for the analysis fo the complex static and dynamic occlusal relations. Its chief application is in individual diagnosis and the simulation of the mechanical articulator. As entry data, the VA requires digital, 3-dimensional representations of the jaws and patient-specific data on jaw movement. It then simulates jaw movement and provides a dynamic visualization of the occlusal contacts. If no patient-specific data are available, the modus operandi of the mechanical articulator can be simulated. Virtual reality (VR) techniques applied in computer-aided diagnosis are revolutionizing medical routine in many disciplines. Particularly in the field of dental engineering, VR combined with CAD/CAM technology has great potential in implant planning and design in terms of greater precision and shorter treatment duration. The geometry of teeth can be digitized, the implant models can be designed with specialized CAD systems, and the final implants can be manufactured with a CNC machine. In this context, the virtual articulator completes the digital manufacturing process.
虚拟牙合架旨在用作分析复杂静态和动态咬合关系的工具。其主要应用于个体诊断以及机械牙合架的模拟。作为输入数据,虚拟牙合架需要颌骨的数字化三维表示以及关于颌骨运动的患者特定数据。然后它模拟颌骨运动并提供咬合接触的动态可视化。如果没有患者特定数据,也可以模拟机械牙合架的操作方式。应用于计算机辅助诊断的虚拟现实(VR)技术正在彻底改变许多学科的医疗常规。特别是在牙科工程领域,VR与CAD/CAM技术相结合在种植体规划和设计方面具有巨大潜力,可实现更高的精度和更短的治疗时间。牙齿的几何形状可以数字化,种植体模型可以用专门的CAD系统设计,最终的种植体可以用数控机床制造。在此背景下,虚拟牙合架完善了数字制造过程。