School of Mechanical engineering, Tianjin University, Tianjin, China.
J Med Syst. 2012 Jun;36(3):1359-64. doi: 10.1007/s10916-010-9596-7. Epub 2010 Sep 24.
In dental CAD/CAM system, tooth restoration produces customized tooth with a prepared cavity, while the prosthetic tooth fitting is firstly determined by the contour feature of the cavity, the cavity contour extraction of the tooth is one of the important issue. In order to accurately extract the cavity contour, a new Three-Dimension (3D) optimal path searching algorithm based on Intelligent Scissors theory is presented. In this algorithm, the 3D tooth is firstly formulated as a weighted model, by calculating the minimum weigh sum of the local cost from a start point to an end point in the cavity edge, the initial optimal contour can be acquired. Then through restricting the path searching range and searching direction, a desired contour can be extracted dynamically. The cases study results show that the algorithm produces a 3D mathematically piece-wise optimal contour on the cavity edge, which can be used directly for tooth design. This method simplifies the tooth design processes and increases the design efficiency.
在牙科 CAD/CAM 系统中,牙齿修复会根据预备好的牙洞来制作定制化的牙齿,而修复体的适配首先由牙洞的轮廓特征决定,因此牙洞轮廓的提取是一个重要问题。为了准确提取牙洞轮廓,提出了一种新的基于智能剪刀理论的三维(3D)最优路径搜索算法。在该算法中,首先将三维牙齿表示为加权模型,通过计算从牙洞边缘上的起始点到终点的局部成本的最小加权和,可以获得初始最优轮廓。然后,通过限制路径搜索范围和搜索方向,可以动态地提取所需的轮廓。案例研究结果表明,该算法在牙洞边缘上生成了一个三维数学分段最优轮廓,可以直接用于牙齿设计。该方法简化了牙齿设计过程,提高了设计效率。