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Depth dose perturbation by a hydrogel fiducial marker in a proton beam

机译:质子束中水凝胶基准标记对深度剂量的扰动

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The purpose of this study was to evaluate proton depth dose perturbation caused by a radio-opaque hydrogel fiducial marker. Electronic proton stopping powers in the hydrogel were calculated for energies 0.5–250 MeV, and Monte Carlo simulations were generated of hydrogel vs. gold markers placed at various water phantom depths in a generic proton beam. Across the studied energy range, the gel/water stopping power ratio was 1.0146 to 1.0160. In the Monte Carlo simulation, the hydrogel marker caused no discernible perturbation of the proton percent depth-dose (PDD) curve. In contrast, the gold marker caused dose reductions of as much as 20% and dose shadowing regions as long as 6.5 cm. In contrast to gold markers, the radio-opaque hydrogel marker causes negligible proton depth dose perturbation. This factor may be taken into consideration for image-guided proton therapy at facilities with suitable imaging modalities.PACS number: 87.55.Qr
机译:这项研究的目的是评估不透射线的水凝胶基准标记引起的质子深度剂量扰动。计算出水凝胶中电子的质子停止能力(能量为0.5–250 MeV),并在普通质子束中的不同水体幻像深度处放置了水凝胶对金标记的蒙特卡洛模拟。在研究的能量范围内,凝胶/水的阻止力比为1.0146至1.0160。在蒙特卡洛模拟中,水凝胶标记不会引起质子百分比深度剂量(PDD)曲线的明显扰动。相反,金标记导致剂量减少多达20%,剂量阴影区域长达6.5 cm。与金标记物不同,不透射线的水凝胶标记物引起的质子深度剂量扰动可忽略不计。在具有合适成像方式的设施中进行图像引导质子治疗时,可以考虑该因素.PACS编号:87.55.Qr

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