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Dynamics-based Decentralized Control of Robotic Couch and Multi-leaf Collimators for Tracking Tumor Motion

机译:基于动力学的机器人沙发和多叶子准直器跟踪肿瘤运动的动力学控制

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Tumors in thorax region incur significant amount of motion and deformation due to respiratory and cardiac cycles. To accommodate this undesired movement, physicians incorporate a large standard margin around the tumor to delineate a Planning Target Volume (PTV), so that the Clinical Target Volume (CTV) receives the prescribed dose under any scenario. Consequently, a large volume of healthy tissue might be irradiated and sometimes it is difficult to spare critical organs adjacent to the tumor. For compensating this tumor motion, techniques such as breath-hold, gating, and Active Tracking and Dynamic Delivery (ATDD) are used. Although, ATDD is the most effective technique, it is the most challenging one. The ATDD can be accomplished in three different ways: adjusting the Multi-Leaf Collimator (MLC), adjusting the couch, and adjusting the MLC and couch simultaneously. The first two techniques have been explored and/or implemented in practice. However, the third approach has not been investigated extensively. In this study, we have proposed a novel approach for ATDD that exploits the advantages of both the MLC (or MLC-bank) and the HexaPOD robotic couch. In our proposed new approach, we have decomposed and allocated the tumor motion trajectory to the subsystems (MLC or MLC-bank and HexaPOD robotic couch) based on their natural frequency domains using wavelet technique. The efficacy of the proposed method has been investigated by extensive computer simulation and the results are presented in this paper.
机译:由于呼吸和心脏循环,胸部区域的肿瘤会产生大量的运动和变形。为了适应这种不期望的运动,医生涵盖肿瘤周围的大标准边缘,以描绘计划靶体积(PTV),以便临床目标体积(CTV)在任何情况下接受规定剂量。因此,可能照射大量的健康组织,有时难以围绕肿瘤的临界器官难以。为了补偿这种肿瘤运动,使用诸如呼吸保持,门控和主动跟踪和动态递送(ATDD)的技术。虽然ATDD是最有效的技术,但它是最具挑战性的技术。 ATDD可以通过三种不同的方式完成:调整多叶子准直器(MLC),调节沙发,同时调节MLC和沙发。前两种技术已经在实践中被探索和/或实施。但是,第三种方法尚未广泛调查。在这项研究中,我们提出了一种新的ATDD方法,用于利用MLC(或MLC-BANK)和六足组织机器人沙发的优势。在我们提出的新方法中,我们已经将肿瘤运动轨迹分解并将基于使用小波技术的自然频域的子系统(MLC或MLC-BANK和Hexapod机器人沙发)分配。通过广泛的计算机仿真研究了所提出的方法的功效,并在本文中提出了结果。

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