Three dimensional shape measurement of teeth by the system of laser displacement meter and computer controlled scanning machine. 2. The improvement of accuracy by means of the divisional measurement method.

H Kimura, T Sohmura, T Watanabe
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Abstract

The accuracy of the three dimensional shape measurement of teeth was improved. The system was composed of a laser displacement meter and a computer controlled scanning machine. The compensation of errors which were observed when the reflected beam was shaded by the model teeth itself was attempted by connecting the data which were measured by rotating the model tooth at 180 degrees on the going stage. The accuracy of measurement was examined at the slope of 7 crown abutment tooth. When the model tooth were measured without tilting, the difference between the true value and the measured data was -240 microns (-2.8%). However, by tilting the model tooth at +/- 20 degrees on the going stage and connecting the two couples of data obtained, the difference considerably decreased into +/- 10 microns (+0.1%). In order to measure a complete crown abutment tooth with high accuracy and without error at the shaded portion, the model tooth was tilted +/- 30 degrees and rotated 180 degrees on the going stage and measured divisionally at four regions. The four partial data thus obtained were combined by using the software program. By the present procedure, the margin of the abutment tooth was recognized and the error data were eliminated. The overlapped data upon divisional measurements were excluded and the complete data of the single abutment tooth were saved into a file. They are possible to be the basic data for the future production of prostheses by means of CAM technique.

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用激光位移仪和计算机控制的扫描系统测量牙齿的三维形状。2. 采用分测法提高测量精度。
提高了齿形三维测量的精度。该系统由激光位移仪和计算机控制的扫描机组成。通过将模型齿在运行台上旋转180度的测量数据连接起来,尝试对反射光束被模型齿本身遮挡时观测到的误差进行补偿。在7根冠基牙的坡度处进行了测量精度的检验。当模型牙在不倾斜的情况下测量时,真实值与测量值的差值为-240微米(-2.8%)。然而,通过在运行阶段将模型牙齿倾斜+/- 20度,并将所获得的两对数据连接起来,差异大大减小到+/- 10微米(+0.1%)。为了在阴影部分高精度、无误差地测量一颗完整的冠基牙,模型牙在行进台上倾斜+/- 30度,旋转180度,分四个区域测量。利用软件程序对得到的四个部分数据进行组合。该方法可以有效地识别基牙的牙缘,消除了误差数据。排除分区测量的重叠数据,并将单个基牙的完整数据保存到文件中。为今后利用CAM技术生产义肢提供了基础数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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