基于GEANT4的多重质子成像研究

T. Aso, Kazuki Kawashima, T. Nishio, Se Byeong Lee, Takashi Sasaki
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引用次数: 1

摘要

质子治疗设施的治疗计划系统采用x射线CT图像来计算患者的剂量。由于x射线在物质中的相互作用与质子的相互作用有着根本的不同,因此必须将x射线图像转换为质子的停止功率图,以便计算剂量。这种转换引起了内在的差异,即基于x射线成像的质子治疗方案的局限性。质子成像被认为是一种直接测量停止功率图的方法,有望提高治疗的准确性。本文报道了利用GEANT4模拟进行多重质子成像的研究。利用250 MeV单能量质子束重建了多重质子图像。提出了两种成像方案:距离扫描成像方案和多次散射成像方案。范围扫描成像方案采用变厚度范围调制器,以获得能量依赖的质子图像。质子图像通过在厚度为1 cm的水当量探测器中积累能量沉积来重建。通过计算物体内部多重库仑散射引起的空间位移,重构了多次散射成像方案。两种方法都成功地重建了水幻影中人工器官的图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on multiplex proton imaging using GEANT4
Treatment planning systems in proton therapy facilities employ X-ray CT images for dose calculation of a patient. Since the interactions of X-ray in matter are fundamentally different from those of proton, the X-ray image has to be translated into the stopping power map of protons for dose calculation. This conversion induces intrinsic discrepancy and known as the limitation of proton treatment plan based on X-ray imaging. Proton imaging is considered to be a direct measurement of stopping power map and is expected to improve the treatment accuracy. In this paper, we report on a study about the multiplex proton imaging using the GEANT4 simulation. The multiplex proton images have been reconstructed by using 250 MeV mono energetic proton beam. Two imaging schemes were proposed i.e. the range scan imaging scheme and the multiple-scattering imaging scheme. The range scan imaging scheme used a range modulator in variable thickness, in order to obtain energy dependent proton images. The proton images were reconstructed by accumulating energy deposits in a water equivalent detector of which thickness was 1 cm. The multiple-scattering imaging scheme was reconstructed by calculating the spatial displacement due to multiple Coulomb scattering in the object. Both methods successfully reconstructed the image of artificial organs in a water phantom.
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