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首页> 外文期刊>International Journal of Medical Physics, Clinical Engineering and Radiation Oncology >Creation of High Energy/Intensity Bremsstrahlung by a Multi-Target and Focusing of the Scattered Electrons by Small-Angle Backscatter at a Cone Wall and a Magnetic Field—Enhancement of the Outcome of Linear Accelerators in Radiotherapy
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Creation of High Energy/Intensity Bremsstrahlung by a Multi-Target and Focusing of the Scattered Electrons by Small-Angle Backscatter at a Cone Wall and a Magnetic Field—Enhancement of the Outcome of Linear Accelerators in Radiotherapy

机译:通过多目标创建高能量/强度Bre致辐射,并通过锥角壁和磁场处的小角度后向散射将散射电子聚焦-增强放射治疗中线性加速器的效果

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摘要

The yield of bremsstrahlung (BS) from collisions of fast electrons (energy at least 6 MeV) with a Tungsten target can be significantly improved by exploitation of Tungsten wall scatter in a multi-layered target. A simplified version of a previously developed principle is also able to focus on small angle scattered electrons by a Tungsten wall. It is necessary that the thickness of each Tungsten layer does not exceed 0.04 mm—a thickness of 0.03 mm is suitable for accelerators in medical physics. Further focusing of electrons results from suitable magnetic fields with field strength between 0.5 Tesla and 1.2 Tesla (if the cone with multi-layered targets is rather narrow). Linear accelerators in radiation therapy only need to be focused by wall scatter without further magnetic fields (a standard case: 31 plates with 0.03 mm thickness and 1 mm distance between the plates). We considered three cases with importance in medical physics: A very small cone with an additional magnetic field for focusing (the field diameter at 90 cm depth: 6 cm), a medium cone with an optional magnetic field (field diameter at 90 cm depth: 13 cm) and a broad cone without a magnetic field (the field diameter at 90 cm depth: 30 cm). All these cases can be positioned in a carousel. Measurements have been performed in the existing carousel positioned in the plane of the flattening filter and scatter foils for electrons.
机译:快速电子(能量至少为6 MeV)与钨靶碰撞产生的ms致辐射(BS)的产率可以通过利用多层靶中的钨壁散射来显着提高。先前开发的原理的简化版本还能够通过钨壁聚焦在小角度散射电子上。每个钨层的厚度必须不超过0.04毫米-0.03毫米的厚度适合医学物理学中的促进剂。电子的进一步聚焦来自场强在0.5特斯拉和1.2特斯拉之间的合适磁场(如果具有多层目标的圆锥体很窄)。放射治疗中的线性加速器仅需通过壁散射聚焦即可,而无需进一步施加磁场(标准情况:31块板,板厚0.03 mm,板之间的距离为1 mm)。我们考虑了三种在医学物理学中具有重要意义的情况:一个带有额外磁场用于聚焦的非常小的圆锥体(90厘米深度处的场直径:6厘米),一个具有可选磁场的中等圆锥体(90厘米深度处的场直径: 13厘米)和没有磁场的宽锥(90厘米深度处的磁场直径:30厘米)。所有这些情况都可以放在转盘中。已对位于平整滤光片和电子散射箔平面中的现有圆盘传送带进行了测量。

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