质子
辐照
梁(结构)
质量保证
航程(航空)
材料科学
质子疗法
磁共振成像
可视化
核磁共振
核医学
生物医学工程
光学
医学物理学
物理
计算机科学
核物理学
医学
放射科
人工智能
外部质量评估
病理
复合材料
作者
Sebastian Gantz,Leonhard Karsch,Jörg Pawelke,Juliane Peter,Sonja Schellhammer,Julien Smeets,Erik van der Kraaij,Aswin Hoffmann
标识
DOI:10.1073/pnas.2301160120
摘要
The main advantage proton beams offer over photon beams in radiation therapy of cancer patients is the dose maximum at their finite range, yielding a reduction in the dose deposited in healthy tissues surrounding the tumor. Since no direct method exists to measure the beam's range during dose delivery, safety margins around the tumor are applied, compromising the dose conformality and reducing the targeting accuracy. Here, we demonstrate that online MRI can visualize the proton beam and reveal its range during irradiation of liquid-filled phantoms. A clear dependence on beam energy and current was found. These results stimulate research into novel MRI-detectable beam signatures and already find application in the geometric quality assurance for magnetic resonance-integrated proton therapy systems currently under development.
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