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3D positioning method for radiotherapy treatment

机译:放射治疗的3D定位方法

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A new method of 3D multi-spot surface profiling for patient's positioning is presented in this paper. In the approach, an encoded pattern structured light is used to project onto the target to be positioned, which is typically part of the patient surface. A single camera is used to image the projected light beams and the range data from camera to the target points can be extracted from the image of the deformed pattern. Because the light pattern is encoded, the correspondence between the projected beams and imaged beams is easily determined and, hence, the range data can be calculated quickly. The 3D sensing method here is based on the active light illumination triangulation. A detail description of the method is given, including system configuration, algorithms for solving the correspondence problem, reconstruction of the point's 3D position, calibration and experimental results, etc. One of the features of the system is extremely simplicity in hardware. And there is no movement part in the system. The encoded grid beam pattern makes it possible to solve the problem of the correspondence between the illuminated spots on the patient and their image points on the image plane. Also, the 3D reconstructed coordinates can be obtained from only one picture frame captured and the time consuming for computer is reasonably reduced.
机译:3D多点表面分析信息:患者的定位的新方法,在本文中。在该方法中,编码的图案结构光用于项目到待定位在目标,这通常是在患者表面的一部分。单个照相机用于图像的投影光束和范围数据从照相机到目标点可以从变形图案的图像被提取。因为光图案进行编码时,所投影的光束和成像光束之间的对应关系容易地确定,并且因此,该范围内的数据可以被迅速地计算。这里所述的3D感测方法是基于所述活性光照射三角测量。该方法的详细描述中给出,包括系统配置,算法用于解决对应问题,该点的三维位置的重建,校准和实验结果等。其中的系统的特征是在硬件非常简单。并且在系统中没有运动的一部分。经编码的栅格波束图案使得能够解决在图像平面上对患者的照射点和它们的图像点之间的对应关系的问题。此外,3D重建坐标只能从一个拍摄的画面帧来获得和耗费计算机时间合理地减小。

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