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Preliminary study on optical feature detection for head tracking in radiation therapy

机译:放射治疗头跟踪光学特征检测的初步研究

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Marker-less tracking provides a non-invasive as well as comfortable approach to compensate for head motion in high precision radiotherapy. However, it suffers from a lack of point-to-point correspondences, typically requiring characteristic spatial landmarks to match point clouds. In this study, we show that cutaneous and subcutaneous structures can be uncovered using an 850 nm laser setup. For three subjects, we compare features extracted from camera images with MR scans serving as an anatomical ground truth. The results confirm the validity of the optically detected structures. The negative correlation between skin thickness and reflected light energy is likewise predicted by Monte-Carlo simulations and can be used to improve spatial point cloud matching. Tissue thickness and its facial structure can be predicted with submillimeter accuracy using a Support Vector regression machine. In addition, the optical measurements reveal the location of vessels that are not immediately visible in the MR scan. These promising findings highly encourage its application for a marker-less tracking system.
机译:较少的跟踪提供了非侵入性的以及舒适的方法来补偿高精度放射治疗的头部运动。然而,它缺乏缺乏点对点的对应关系,通常需要特征空间地标来匹配点云。在这项研究中,我们表明可以使用850nm激光设置揭示皮肤和皮下结构。对于三个主题,我们比较从相机图像中提取的功能与MR扫描作为解剖学原始事实。结果证实了光学检测到的结构的有效性。皮肤厚度和反射光能之间的负相关同样由Monte-Carlo仿真预测,并且可用于改善空间点云匹配。可以使用支持向量回归机器预测组织厚度及其面部结构。另外,光学测量揭示了在MR扫描中不立即可见的容器的位置。这些有希望的调查结果非常鼓励其对较少标记跟踪系统的应用。

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