Hariu Masatsugu, Suda Yuhi, Chang Weishan, Myojoyama Atsushi, Saitoh Hidetoshi
Graduate School of Human Health Sciences, Tokyo Metropolitan University, Tokyo, Japan.
J Appl Clin Med Phys. 2017 Nov;18(6):71-78. doi: 10.1002/acm2.12181. Epub 2017 Sep 12.
For patient setup of the IGRT technique, various imaging systems are currently available. MV portal imaging is performed in identical geometry with the treatment beam so that the portal image provides accurate geometric information. However, MV imaging suffers from poor image contrast due to larger Compton scatter photons. In this work, an original image processing algorithm is proposed to improve and enhance the image contrast without increasing the imaging dose. Scatter estimation was performed in detail by MC simulation based on patient CT data. In the image processing, scatter photons were eliminated and then they were reprojected as primary photons on the assumption that Compton interaction did not take place. To improve the processing efficiency, the dose spread function within the EPID was investigated and implemented on the developed code. Portal images with and without the proposed image processing were evaluated by the image contrast profile. By the subtraction process, the image contrast was improved but the EPID signal was weakened because 15.2% of the signal was eliminated due to the contribution of scatter photons. Hence, these scatter photons were reprojected in the reprojection process. As a result, the tumor, bronchi, mediastinal space and ribs were observed more clearly than in the original image. It was clarified that image processing with the dose spread functions provides stronger contrast enhancement while maintaining a sufficient signal-to-noise ratio. This work shows the feasibility of improving and enhancing the contrast of portal images.
对于IGRT技术的患者摆位,目前有多种成像系统可供使用。兆伏级射野成像在与治疗束相同的几何条件下进行,以便射野图像提供准确的几何信息。然而,由于康普顿散射光子较多,兆伏级成像的图像对比度较差。在这项工作中,提出了一种原始的图像处理算法,以在不增加成像剂量的情况下改善和增强图像对比度。基于患者CT数据,通过蒙特卡罗模拟详细进行了散射估计。在图像处理中,消除散射光子,然后在假设未发生康普顿相互作用的情况下将它们重新投影为原发射线光子。为了提高处理效率,研究了电子射野影像装置(EPID)内的剂量扩散函数并在开发的代码中实现。通过图像对比度曲线对有无所提出的图像处理的射野图像进行评估。通过减法处理,图像对比度得到改善,但EPID信号减弱,因为由于散射光子的贡献,15.2%的信号被消除。因此,这些散射光子在重新投影过程中被重新投影。结果,肿瘤、支气管、纵隔间隙和肋骨比原始图像中观察得更清楚。结果表明,使用剂量扩散函数进行图像处理在保持足够信噪比的同时能提供更强的对比度增强。这项工作显示了改善和增强射野图像对比度的可行性。