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首页> 外文期刊>Medical engineering & physics. >Construction and testing of a computer-based intraoral laser scanner for determining tooth positions.
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Construction and testing of a computer-based intraoral laser scanner for determining tooth positions.

机译:用于确定牙齿位置的基于计算机的口腔内激光扫描仪的构建和测试。

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摘要

An optical set-up for intraoral data acquisition based on the principle of laser triangulation was developed. The system consists of a pig-tailed laser with line generating optics, a stepping motor driven positioning stage, a commercial CCD (charge coupled device) camera system with frame grabber interface, a control personal computer and a mirror system compensating for the fact that there is no possibility of watching an object directly in the mouth under a certain angle except from a facial position during intraoral scanning. Due to the size of the prototype measurements were still restricted to plaster casts. In order to evaluate its accuracy, the measurements were compared with those taken with a commercial laser scanner and a coordinate measurement table. The accuracy of the prototype scanner was determined to be DeltaXYZ=0.04 mm using gauge blocks of given dimensions and proved to range between the commercial laser scanner and the coordinate measurement table (i.e., it was slightly better than that of the commercial scanner). Applications in orthodontics were demonstrated by scanning plaster casts and measuring distances on reconstructed surfaces. The measured distances showed a maximum deviation of about +/-0.2 mm compared with the data of the coordinate measurement table, which served as a reference. In addition, reconstruction of three-dimensional tooth movements was performed on the scan data. The translational and rotational parameters gained from the superimposition of scanned point clouds and describing tooth movement were also in good accordance with the reference. The achieved accuracy proved to be sufficient for further development which should include a reduction in size and the use of more precise device components.
机译:开发了一种基于激光三角测量原理的口内数据采集光学装置。该系统由带线生成光学器件的猪尾激光器,步进电机驱动的定位台,带有抓帧器接口的商用CCD(电荷耦合器件)相机系统,控制个人计算机和后视镜系统组成,用于补偿以下事实:除了在口腔内扫描过程中从脸部位置观察,不可能以一定角度直接在嘴中观察物体。由于原型的尺寸,测量仍然仅限于石膏模型。为了评估其准确性,将测量结果与商用激光扫描仪和坐标测量表进行了比较。使用给定尺寸的量规将原型扫描仪的精度确定为DeltaXYZ = 0.04 mm,并证明其在商用激光扫描仪和坐标测量表之间的范围内(即,它略微优于商用扫描仪)。通过扫描石膏模型并测量重建表面上的距离证明了其在正畸中的应用。与作为参考的坐标测量表的数据相比,测得的距离显示出最大偏差约为+/- 0.2 mm。另外,对扫描数据进行了三维牙齿运动的重建。从扫描点云的叠加获得的并描述牙齿运动的平移和旋转参数也与参考文献相符。事实证明,所获得的精度足以用于进一步的开发,其中应包括减小尺寸和使用更精确的设备组件。

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