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Automatic Detection and Reproduction of Natural Head Position in Stereo-Photogrammetry

机译:立体摄影测量中自然头位置的自动检测和复制

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摘要

The aim of this study was to develop an automatic orientation calibration and reproduction method for recording the natural head position (NHP) in stereo-photogrammetry (SP). A board was used as the physical reference carrier for true verticals and NHP alignment mirror orientation. Orientation axes were detected and saved from the digital mesh model of the board. They were used for correcting the pitch, roll and yaw angles of the subsequent captures of patients’ facial surfaces, which were obtained without any markings or sensors attached onto the patient. We tested the proposed method on two commercial active (3dMD) and passive (DI3D) SP devices. The reliability of the pitch, roll and yaw for the board placement were within ±0.039904°, ±0.081623°, and ±0.062320°; where standard deviations were 0.020234°, 0.045645° and 0.027211° respectively. >Conclusion: Orientation-calibrated stereo-photogrammetry is the most accurate method (angulation deviation within ±0.1°) reported for complete NHP recording with insignificant clinical error.
机译:这项研究的目的是开发一种自动方向校准和再现方法,以在立体摄影测量(SP)中记录自然的头部位置(NHP)。一块板被用作真实垂直和NHP对准镜方向的物理参考载体。检测到方向轴并从板的数字网格模型中保存。它们用于校正患者面部随后捕获的俯仰,横滚和偏航角,这些捕获是在患者身上没有任何标记或传感器的情况下获得的。我们在两种商用有源(3dMD)和无源(DI3D)SP设备上测试了该方法。电路板放置的俯仰,横滚和偏航的可靠性在±0.039904°,±0.081623°和±0.062320°之内;其中标准偏差分别为0.020234°,0.045645°和0.027211°。 >结论:定向校准的立体摄影测量法是完整的NHP记录中报告的最准确的方法(角度偏差在±0.1°以内),临床上的误差很小。

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