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Active tracking and dynamic dose delivery for robotic couch in radiation therapy

机译:放射治疗机器人卧榻的主动跟踪和动态剂量输送

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Precise and accurate dose delivery is critically important in external beam radiation therapy. In many cases target-volumes are stationary, but the problem arises when the tumors move significantly due to cardiac and respiratory motions. This is a case for tumors in lung, esophagus, pancreas, liver, prostate, breast, and other organs in thoracic and abdominal regions. In the article we have described the Active Tracking and Dynamic Dose Delivery (ATDD) technique for real-time tumor motion compensation. In this approach, the robotic treatment table moves while delivering the radiation beam and compensates for breathing-induced tumor motion. Many parameters of the control system, such as patient mass or breathing pattern, are initially uncertain and may vary during the treatment. To solve these problems, feedforward adaptive control was adopted to minimize irradiation to healthy tissue and spare critical organs while ensuring prescribed radiation dose coverage to the target-volume.
机译:精确和准确的剂量输送在外部束放射治疗中至关重要。在许多情况下,目标体积是固定的,但是当肿瘤由于心脏和呼吸运动而明显运动时,就会出现问题。这是在胸部和腹部区域的肺,食道,胰腺,肝脏,前列腺,乳房和其他器官中的肿瘤的情况。在本文中,我们描述了用于实时肿瘤运动补偿的主动跟踪和动态剂量输送(ATDD)技术。在这种方法中,机器人治疗台在传送辐射束的同时移动并补偿呼吸引起的肿瘤运动。控制系统的许多参数(例如患者的体重或呼吸模式)最初是不确定的,并且在治疗过程中可能会有所不同。为了解决这些问题,采用了前馈自适应控制,以最大程度地减少对健康组织和备用关键器官的辐射,同时确保对目标体积的规定辐射剂量覆盖范围。

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