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In vivo verification of particle therapy: how Compton camera configurations affect 3D image quality

机译:在体内验证粒子疗法:Compton相机配置如何影响3D图像质量

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The steep dose gradients enabled by the Bragg peaks of particle therapy beams are a double edged sword. They enable highly conformal dose distributions, but even small deviations from the planned beam range can cause overdosing of healthy tissue or under-dosing of the tumour. To reduce this risk, particle therapy treatment plans include margins large enough to account for all the sources of range uncertainty, which include patient setup errors, patient anatomy changes, and CT number to stopping power ratios. Any system that could verify the beam range in vivo, would allow reduced margins and more conformal dose distributions. Toward our goal developing such a system based on Compton camera (CC) imaging, we studied how three configurations (single camera, parallel opposed, and orthogonal) affect the quality of the 3D images. We found that single CC and parallel opposed configurations produced superior images in 2D. The increase in parallax produced by an orthogonal CC configuration was shown to be beneficial in producing artefact free 3D images.
机译:由粒子治疗梁的布拉格峰实现的陡剂梯度是双刃剑。它们能够使高度保形剂量分布,但甚至与计划的光束范围的小偏差也可能导致肿瘤的健康组织或不含含量的过度。为了减少这种风险,粒子治疗计划包括足够大的边缘,以考虑范围不确定性的所有来源,包括患者设置错误,患者解剖学变化和CT号以阻止功率比。任何可以验证体内光束范围的系统都会允许减少利润率和更多的保形剂量分布。朝着我们的目标基于康普顿相机(CC)成像的发展,我们研究了三种配置(单次摄像机,并联,正交)如何影响3D图像的质量。我们发现单个CC和并行相对的配置在2D中产生了优良图像。通过正交CC配置产生的视差的增加被证明是有益于生产自由3D图像的有益。

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