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首页> 外文期刊>Journal of Biomechanics >CONJUGATE IMAGERY IN THE AUTOMATED REPRODUCTION OF THREE DIMENSIONAL COORDINATES FROM TWO DIMENSIONAL COORDINATE DATA
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CONJUGATE IMAGERY IN THE AUTOMATED REPRODUCTION OF THREE DIMENSIONAL COORDINATES FROM TWO DIMENSIONAL COORDINATE DATA

机译:从二维坐标数据自动复制三维坐标的共轭图像

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摘要

The three-dimensional video analysis of human motion commonly utilises automated image processing and digitisation processes to produce real-time unidentified two-dimensional coordinate data of segmental markers. In what can be a time-consuming process the two-dimensional data are then identified and tracked to produce three-dimensional coordinates. This paper presents an approach to the automated reproduction of three-dimensional coordinates from two-dimensional coordinate data. Conjugate imaging techniques were utilised in the development of four criterion measures for determining the validity of conjugate (corresponding) image points. An algorithm based on the criterion measures was then developed for the automated reproduction of three dimensional coordinates from camera image coordinate data. The algorithm was tested with a 55 point marker system viewed in four video cameras (digitisation error approx. 0.2%, lab point separation greater than or equal to 6 cm). The success of the algorithm was dependent on the closeness of markers, the accuracy of the photogrammetric system, and the number of markers visible in two camera images. The present research has developed techniques based on conjugate imagery for the automated reproduction of three-dimensional coordinates from two-dimensional data, and provided a bases for further development of automated three-dimensional tracking. (C) 1997 Elsevier Science Ltd. [References: 3]
机译:人体运动的三维视频分析通常利用自动图像处理和数字化过程来生成实时,未识别的分段标记的二维坐标数据。在可能是耗时的过程中,然后识别二维数据并对其进行跟踪以生成三维坐标。本文提出了一种从二维坐标数据自动再现三维坐标的方法。共轭成像技术被用于制定四个标准措施,以确定共轭(对应)图像点的有效性。然后,开发了一种基于标准度量的算法,用于从摄像机图像坐标数据中自动复制三维坐标。该算法在55个点标记系统上进行了测试,该系统在四个摄像机中进行了观察(数字化误差约为0.2%,实验室点间距大于或等于6 cm)。该算法的成功取决于标记的接近程度,摄影测量系统的准确性以及两个摄像机图像中可见的标记数量。本研究已经开发了基于共轭图像的技术,用于从二维数据中自动再现三维坐标,并为进一步开发自动化三维跟踪提供了基础。 (C)1997 Elsevier Science Ltd. [引用:3]

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