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首页> 外文期刊>IEEE Transactions on Nuclear Science >Dose-Free Monitoring of Radiotherapy Treatments With Scattered Photons: Concept and Simulation Study
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Dose-Free Monitoring of Radiotherapy Treatments With Scattered Photons: Concept and Simulation Study

机译:散射光子对放射治疗的无剂量监测:概念和模拟研究

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摘要

Modern radiotherapy (RT) techniques provide increasingly higher conformality, a potential invaluable clinical benefit to the patient. Consequently, in both single and multi-fractionated RT, patient misalignments and changing internal anatomy are also becoming more critical since higher conformality may equally represent a higher risk of target underdosage or organ-at-risk overdosage. Even with rigid fixation devices, maximum positioning errors higher than 1 cm are observable. In addition, anatomical morphological variations induced by cardiorespiratory or bowel motion, or RT-related biological responses, have been reported. The latter include tissue swelling, edema, inflammation, tumor shrinkage/growth, or filling of body cavities with unaccounted mucus or edematous tissue. State-of-the-art image-guided radiotherapy (IGRT) aims at providing feedback to the radiation oncologist in regard to these matters, some times at the cost of increased dosage (e.g. kilo and megavoltage IGRT), other times providing insufficient clinical information. We investigate a novel imaging system specially designed for monitoring both conventional and intensity/volumetric modulated photon radiotherapy (IMRT/VMRT, static and dynamic). The proof-of-principle and feasibility of such system indicate its potential for monitoring each field (and segment, for IMRT/VMRT) during all treatment fractions without whatsoever additional dose. We present a clear 2D correlation between the dose delivered in a heterogeneous phantom and the number of scattered photons detected perpendicular to the photon beam. Simulations of high-energy, multi-hole collimators show real-time, high-detectability of abnormal (though possible) irradiation scenarios with pertinent target morphological alterations, such as tumor dislocation or formation of edematous tissue.
机译:现代放射疗法(RT)技术提供了越来越高的保形性,这对患者具有潜在的宝贵临床益处。因此,在单级和多级RT中,患者的错位和内部解剖结构的变化也变得越来越关键,因为更高的保形性可能同样意味着更高的靶标剂量不足或高风险器官过量风险。即使使用刚性固定装置,也可以观察到大于1 cm的最大定位误差。另外,已经报道了由心肺或肠运动或RT相关的生物学反应引起的解剖学形态变化。后者包括组织肿胀,水肿,发炎,肿瘤缩小/生长,或体腔内充填不明的粘液或水肿组织。最新的图像引导放射疗法(IGRT)旨在就这些问题向放射肿瘤学家提供反馈,有时以增加剂量为代价(例如,千伏和兆伏IGRT),而有时则提供不足的临床信息。我们研究了一种新颖的成像系统,该系统专门设计用于监视常规和强度/体积调制光子放射疗法(IMRT / VMRT,静态和动态)。该系统的原理证明和可行性表明了其在所有治疗阶段均无需任何额外剂量即可监测每个领域(以及IMRT / VMRT的部分)的潜力。我们在异质体模中传递的剂量与垂直于光子束检测到的散射光子数之间呈现出清晰的二维相关性。高能,多孔准直器的仿真显示了具有相关目标形态改变(例如肿瘤脱位或水肿组织形成)的异常(尽管可能)照射场景的实时,高可检测性。

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