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Density and spatial resolutions of proton radiography using a range modulation technique.

机译:使用距离调制技术的质子射线照相的密度和空间分辨率。

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摘要

The image quality of proton radiography using the method of beam energy modulation was studied to look into its practical uses. Two different depth-dose distributions generated by modulation were applied to investigate their effects on the density and spatial resolutions of the radiographic image. A steeper slope was found to provide higher resolution for the matching thickness of a phantom. The image was taken on a scintillation screen, and the distance between the phantom and the screen was a sensitive parameter on the resolution. For a beam with a range of 1.2 cm in Lucite, high-resolution images were attainable in the whole range. The resolution of proton images for different kinds of phantoms was examined in comparison with x-ray images as well as images simulated by a Monte Carlo code MCNPX. For a longer range of 18 cm, images attained by simulations indicated that density resolution is better maintained compared to spatial resolution, which is deteriorated by multiple Coulomb scattering.
机译:研究了利用束能量调制方法进行质子射线照相的图像质量,以探讨其实际应用。应用了通过调制产生的两种不同的深度剂量分布,以研究它们对射线照相图像的密度和空间分辨率的影响。发现较陡的坡度为体模的匹配厚度提供了更高的分辨率。图像是在闪烁屏幕上拍摄的,体模与屏幕之间的距离是分辨率的敏感参数。对于在Lucite中范围为1.2 cm的光束,可以在整个范围内获得高分辨率图像。与X射线图像以及由Monte Carlo代码MCNPX模拟的图像进行比较,研究了不同体模的质子图像的分辨率。对于18 cm的较大范围,通过模拟获得的图像表明,与空间分辨率相比,密度分辨率得到了更好的保持,而空间分辨率由于多次库仑散射而恶化。

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