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200 MeV Proton Radiography Studies With a Hand Phantom Using a Prototype Proton CT Scanner

机译:使用原型质子CT扫描仪用手进行200 MeV质子射线照相研究

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摘要

Proton radiography has applications in patient alignment and verification procedures for proton beam radiation therapy. In this paper, we report an experiment which used 200 MeV protons to generate proton energy-loss and scattering radiographs of a hand phantom. The experiment used the first-generation proton computed tomography (CT) scanner prototype, which was installed on the research beam line of the clinical proton synchrotron at Loma Linda University Medical Center. It was found that while both radiographs displayed anatomical details of the hand phantom, the energy-loss radiograph had a noticeably higher resolution. Nonetheless, scattering radiography may yield more contrast between soft and bone tissue than energy-loss radiography, however, this requires further study. This study contributes to the optimization of the performance of the next-generation of clinical proton CT scanners. Furthermore, it demonstrates the potential of proton imaging (proton radiography and CT), which is now within reach of becoming available as a new, potentially low-dose medical imaging modality.
机译:质子射线照相术在质子束放射治疗的患者对准和验证程序中具有应用。在本文中,我们报告了一个实验,该实验使用200 MeV质子生成质子能量损失和手部幻像的散射射线照片。该实验使用的是第一代质子计算机断层扫描(CT)扫描仪原型,该原型已安装在洛马琳达大学医学中心的临床质子同步加速器的研究光束线上。已经发现,尽管两个射线照相都显示了手体模的解剖学细节,但是能量损失射线照相具有明显更高的分辨率。尽管如此,散射射线照相术可能比能量损失射线照相术在软组织和骨骼组织之间产生更多的对比度,但是,这需要进一步研究。这项研究有助于优化下一代临床质子CT扫描仪的性能。此外,它展示了质子成像的潜力(质子射线照相和CT),现在已经可以作为一种新的,潜在的低剂量医学成像方式使用。

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