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首页> 外文期刊>Journal of Cancer Research and Therapeutics >Establishing a framework to implement 4D XCAT Phantom for 4D radiotherapy research
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Establishing a framework to implement 4D XCAT Phantom for 4D radiotherapy research

机译:建立框架以实施4D XCAT Phantom以进行4D放射治疗研究

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Aims: To establish a framework to implement the 4D integrated extended cardiac torso (XCAT) digital phantom for 4D radiotherapy (RT) research. Materials and Methods: A computer program was developed to facilitate the characterization and implementation of the 4D XCAT phantom. The program can (1) generate 4D XCAT images with customized parameter files; (2) review 4D XCAT images; (3) generate composite images from 4D XCAT images; (4) track motion of selected region-of-interested (ROI); (5) convert XCAT raw binary images into DICOM format; (6) analyse clinically acquired 4DCT images and real-time position management (RPM) respiratory signal. Motion tracking algorithm was validated by comparing with manual method. Major characteristics of the 4D XCAT phantom were studied. Results: The comparison between motion tracking and manual measurements of lesion motion trajectory showed a small difference between them (mean difference in motion amplitude: 1.2 mm). The maximum lesion motion decreased nearly linearly (R 2 = 0.97) as its distance to the diaphragm (DD) increased. At any given DD, lesion motion amplitude increased nearly linearly (R 2 range: 0.89 to 0.95) as the inputted diaphragm motion increased. For a given diaphragm motion, the lesion motion is independent of the lesion size at any given DD. The 4D XCAT phantom can closely reproduce irregular breathing profile. The end-to-end test showed that clinically comparable treatment plans can be generated successfully based on 4D XCAT images. Conclusions: An integrated computer program has been developed to generate, review, analyse, process, and export the 4D XCAT images. A framework has been established to implement the 4D XCAT phantom for 4D RT research.
机译:目的:建立一个框架,以实施用于4D放射治疗(RT)研究的4D集成扩展心脏躯干(XCAT)数字体模。材料和方法:开发了一个计算机程序来促进4D XCAT幻象的表征和实现。该程序可以(1)生成带有自定义参数文件的4D XCAT图像; (2)查看4D XCAT图像; (3)从4D XCAT图像生成合成图像; (4)跟踪选定感兴趣区域(ROI)的运动; (5)将XCAT原始二进制图像转换为DICOM格式; (6)分析临床获取的4DCT图像和实时位置管理(RPM)呼吸信号。通过与手动方法的比较验证了运动跟踪算法的有效性。研究了4D XCAT幻影的主要特征。结果:在运动跟踪和病变运动轨迹的手动测量之间的比较显示,它们之间的差异很小(运动幅度的平均差异:1.2 mm)。随着距隔膜的距离(DD)的增加,最大病变运动几乎呈线性下降(R 2 = 0.97)。在任何给定的DD下,随着输入的diaphragm肌运动增加,病变运动幅度几乎呈线性增加(R 2 范围:0.89至0.95)。对于给定的diaphragm肌运动,病变运动与任何给定DD处的病变大小无关。 4D XCAT幻像可以紧密再现不规则的呼吸轮廓。端到端测试表明,基于4D XCAT图像可以成功生成临床上可比的治疗计划。结论:已经开发了一个集成的计算机程序来生成,查看,分析,处理和导出4D XCAT图像。已经建立了一个框架,以实现用于4D RT研究的4D XCAT幻像。

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