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Use of diverging apertures to minimize the edge scatter in passive scattering proton therapy

机译:在发散的质子治疗中使用发散孔以最小化边缘散射

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The purpose of this study was to evaluate the use of diverging-cut aperture to minimize collimator contamination in proton therapy. Two sets of apertures with nondivergent and divergent edge were fabricated to produce a 10 cm × 10 cm field at the radiation isocenter of a single-room proton therapy unit. Transverse profiles were acquired in a scanning water tank with both aperture sets. Up to 9.5% extra dose was observed from aperture scattering near the field edges with the nondivergent aperture set at 2 cm above the water surface and remained 3.0% at depth of 10 cm. For the divergent set, the contamination was reduced to less than 3.5% and 1.3%, respectively. Our study demonstrated that scattering from apertures contaminated the dose distribution near the field edge at shallow depth. A diverging-cut aperture was capable of reducing the contamination and is recommended for use in passive scattering proton therapy, especially when critical organs are lateral and proximal to the target at shallow depth.PACS numbers: 87.55.ne, 87.56.nk
机译:这项研究的目的是评估在质子治疗中使用发散切割孔径以最大程度地减少准直仪污染的情况。制造了两组具有非发散和发散边缘的孔,以在单室质子治疗单元的辐射等角点处产生10 cm×10 cm的场。在带有两个孔径装置的扫描水箱中获取横向轮廓。在非扩散孔径设置在水面以上2 cm处,从场边缘附近的孔径散射观察到高达9.5%的额外剂量,在10 cm深度处保持3.0%的剂量。对于不同的组,污染分别减少到小于3.5%和1.3%。我们的研究表明,光圈的散射污染了浅深度场边缘附近的剂量分布。发散切割孔能够减少污染,建议用于被动散射质子治疗,尤其是当关键器官在目标深度较浅的目标侧向和近端时。PACS编号:87.55.ne,87.56.nk

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