Kato A, Ohno N
First Department of Anatomy, School of Dentistry, Aichi-Gakuin University, Chikusa-ku, Nagoya, Japan.
Clin Oral Investig. 2009 Mar;13(1):43-6. doi: 10.1007/s00784-008-0198-4. Epub 2008 Apr 3.
The study of dental morphology is essential in terms of phylogeny. Advances in three-dimensional (3D) measurement devices have enabled us to make 3D images of teeth without destruction of samples. However, raw fundamental data on tooth shape requires complex equipment and techniques. An online database of 3D teeth models is therefore indispensable. We aimed to explore the basic methodology for constructing 3D teeth models, with application for data sharing. Geometric information on the human permanent upper left incisor was obtained using micro-computed tomography (micro-CT). Enamel, dentine, and pulp were segmented by thresholding of different gray-scale intensities. Segmented data were separately exported in STereo-Lithography Interface Format (STL). STL data were converted to Wavefront OBJ (OBJect), as many 3D computer graphics programs support the Wavefront OBJ format. Data were also applied to Quick Time Virtual Reality (QTVR) format, which allows the image to be viewed from any direction. In addition to Wavefront OBJ and QTVR data, the original CT series were provided as 16-bit Tag Image File Format (TIFF) images on the website. In conclusion, 3D teeth models were constructed in general-purpose data formats, using micro-CT and commercially available programs. Teeth models that can be used widely would benefit all those who study dental morphology.
牙齿形态学的研究在系统发育方面至关重要。三维(3D)测量设备的进步使我们能够在不破坏样本的情况下制作牙齿的3D图像。然而,获取牙齿形状的原始基础数据需要复杂的设备和技术。因此,一个3D牙齿模型的在线数据库是必不可少的。我们旨在探索构建3D牙齿模型的基本方法,并将其应用于数据共享。使用微型计算机断层扫描(micro-CT)获取人类左上恒切牙的几何信息。通过对不同灰度强度进行阈值处理来分割牙釉质、牙本质和牙髓。分割后的数据分别以立体光刻接口格式(STL)导出。由于许多3D计算机图形程序支持Wavefront OBJ格式,所以将STL数据转换为Wavefront OBJ(OBJect)格式。数据还被应用于Quick Time虚拟现实(QTVR)格式,该格式允许从任何方向查看图像。除了Wavefront OBJ和QTVR数据外,原始CT系列以16位标签图像文件格式(TIFF)图像的形式在网站上提供。总之,使用micro-CT和商业可用程序以通用数据格式构建了3D牙齿模型。可广泛使用的牙齿模型将使所有研究牙齿形态学的人受益。