论文标题

有关KV散射X射线成像的实验和数值研究,用于实时图像指导。

Experimental and numerical studies on kV scattered x-ray imaging for real-time image guidance in radiation therapy

论文作者

Huang, Yanqi, Yang, Kai, Lai, Youfang, Liu, Huan, Shen, Chenyang, Zhong, Yuncheng, Shao, Yiping, Li, Xinhua, Liu, Bob, Jia, Xun

论文摘要

运动管理是肺癌图像引导放疗的关键组成部分。我们先前提出了使用KV散射X射线光子的方案,用于肺癌放射疗法中无标记的实时图像引导。这项研究报告了我们最近使用光子计数检测技术的进展,以证明该方法的潜在可行性,并使用Monte Carlo(MC)模拟和射线追踪计算来表征性能。在我们的方案中,将X射线光束的细片针对目标,我们使用具有平行孔准直仪的光子计数检测器测量了传出的光子,以确定检测器像素和散射位置之间的对应关系。进行几何形状,束衰减和散射角的图像校正,以将原始图像转换为康普顿衰减系数的实际图像。我们使用内部开发的基于GPU的MC软件包建模图像形成过程建立了MC仿真系统。我们还进行了射线追踪计算,以研究成像系统几何形状对产生图像分辨率的影响。该实验证明了使用光子计数检测器测量散射的X射线光子并生成所提出的散射X射线图像的可行性。校正后,X射线散射图像强度和康普顿散射系数是线性相关的,R2 = 0.91。与不同物体的噪声比形成对比,并提高了实验结果中的值和MC模拟结果。射线追踪计算揭示了图像分辨率对成像几何形状的依赖性。图像分辨率随着源降低到对象距离和增加的准仪高度而增加。该研究表明,将散射的X射线成像作为放射治疗中的实时图像引导方法的潜在可行性。

Motion management is a critical component of image guidance radiotherapy for lung cancer. We previously proposed a scheme using kV scattered x-ray photons for marker-less real-time image guidance in lung cancer radiotherapy. This study reports our recently progress using the photon counting detection technique to demonstrate potential feasibility of this method and using Monte Carlo (MC) simulations and ray-tracing calculations to characterize the performance. In our scheme, a thin slice of x-ray beam was directed to the target and we measured the outgoing scattered photons using a photon counting detector with a parallel-hole collimator to establish the correspondence between detector pixels and scatter positions. Image corrections of geometry, beam attenuation and scattering angle were performed to convert the raw image to the actual image of Compton attenuation coefficient. We set up a MC simulation system using an in-house developed GPU-based MC package modeling the image formation process. We also performed ray-tracing calculations to investigate the impacts of imaging system geometry on resulting image resolution. The experiment demonstrated feasibility of using a photon counting detector to measure scattered x-ray photons and generate the proposed scattered x-ray image. After correction, x-ray scattering image intensity and Compton scattering attenuation coefficient were linearly related, with R2=0.91. Contrast to Noise Ratios of different objects were improved and the values in experimental results and MC simulation results agreed with each other. Ray-tracing calculations revealed the dependence of image resolution on imaging geometry. The image resolution increases with reduced source to object distance and increased collimator height. The study demonstrated potential feasibility of using scattered x-ray imaging as a real-time image guidance method in radiation therapy.

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