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Clinical Trial Strategies to Compare Protons With Photons

机译:用光子比较质子的临床试验策略

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The favorable beam properties of protons can be translated into clinical benefits by target dose escalation to improve local control without enhancing unacceptable radiation toxicity or to spare normal tissues to prevent radiation-induced side effects without jeopardizing local tumor control. For the clinical validation of the added value of protons to improve local control, randomized controlled trials are required. For the clinical validation of the added value of protons to prevent side effects, both model-based validation or randomized controlled trials can be used. Model-based patient selection for proton therapy is crucial, independent of the validation approach. Combining these approaches in rapid learning health care systems is expected to yield the most efficient and scientifically sound way to continuously improve patient selection and the therapeutic window, eventually leading to more cancer survivors with better quality of life. (C) 2018 The Authors. Published by Elsevier Inc.
机译:通过靶剂剂量升级可以将质子的有利梁特性转化为临床益处,以改善局部对照,而不提高不可接受的辐射毒性或备用正常组织以防止辐射诱导的副作用而不会危及局部肿瘤对照。对于临床验证质子的附加值以改善局部对照,需要随机对照试验。对于质子的附加值的临床验证,以防止副作用,可以使用基于模型的验证或随机对照试验。基于模型的质子疗法的患者选择是至关重要的,与验证方法无关。预计将这些方法与快速学习保健系统相结合,将产生最有效和科学的声音,不断改善患者选择和治疗窗口,最终导致更多癌症幸存者具有更好的生活质量。 (c)2018作者。 elsevier公司发布

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