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Prompt-gamma monitoring in hadrontherapy: A review

机译:强子治疗中的快速伽马监测:综述

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摘要

Secondary radiation emission induced by nuclear reactions is correlated to the path of ions in matter. Therefore, such penetrating radiation can be used for in vivo control of hadrontherapy treatments, for which the primary beam is absorbed inside the patient. Among secondary radiations, prompt-gamma rays were proposed for realtime verification of ion range. Such a verification is a desired condition to reduce uncertainties in treatment planning. For more than a decade, efforts have been undertaken worldwide to promote prompt-gamma-based devices to be used in clinical conditions. Dedicated cameras are necessary to overcome the challenges of a broad- and high-energy distribution, a large background, high instantaneous count rates, and compatibility constraints with patient irradiation. Several types of prompt-gamma imaging devices have been proposed, that are either physically-coUimated or electronically collimated (Compton cameras). Clinical tests are now undergoing. Meanwhile, other methods than direct prompt-gamma imaging were proposed, that are based on specific counting using either time-of-flight or photon energy measurements. In the present article, we make a review and discuss the state of the art for all techniques using prompt-gamma detection to improve the quality assurance in hadrontherapy.
机译:核反应引起的二次辐射发射与物质中的离子路径相关。因此,这种穿透性辐射可以用于强子疗法治疗的体内控制,为此,主光束被吸收在患者体内。在二次辐射中,建议使用即时伽马射线实时验证离子范围。这种验证是减少治疗计划不确定性的理想条件。十多年来,全世界已经在努力推广用于临床条件的基于即时伽玛的设备。专用摄像机对于克服宽能量分布和高能量分布,背景大,瞬时计数率高以及与患者辐射的相容性限制等挑战是必不可少的。已经提出了几种类型的即时伽玛成像设备,它们是物理准直的或电子准直的(康普顿相机)。临床试验正在进行中。同时,提出了除直接即时伽玛成像以外的其他方法,这些方法基于使用飞行时间或光子能量测量的特定计数。在本文中,我们进行了回顾并讨论了所有使用瞬发伽马探测技术改善强子疗法质量保证的技术水平。

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