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Simulation system for understanding the lag effect in fluoroscopic images

机译:用于了解透视图像中的滞后效应的仿真系统

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摘要

Real-time tumor tracking in external radiotherapy can be achieved by diagnostic (kV) X-ray imaging with a dynamic flat-panel detector (FPD). It is crucial to understand the effects of image lag for real-time tumor tracking. Our purpose in this study was to develop a lag simulation system based on the image lag properties of an FPD system. Image lag properties were measured on flat-field images both in direct- and indirect-conversion dynamic FPDs. A moving target with image lag was simulated based on the lag properties in all combinations of FPD types, imaging rates, exposure doses, and target speeds, and then compared with actual moving targets for investigation of the reproducibility of image lag. Image lag was simulated successfully and agreed well with the actual lag as well as with the predicted effect. In the indirect-conversion FPD, a higher dose caused greater image lag on images. In contrast, there were no significant differences among dose levels in a direct-conversion FPD. There were no relationships between target speed and amount of image blurring in either type of FPD. The maximum contour blurring and the rate of increase in pixel value due to image lag were 1.1 mm and 10.0 %, respectively, in all combinations of imaging parameters examined in this study. Blurred boundaries and changes in pixel value due to image lag were estimated under various imaging conditions with use of the simulation system. Our system would be helpful for a better understanding of the effects of image lag in fluoroscopic images.
机译:外部放射治疗中的实时肿瘤追踪可以通过使用动态平板探测器(FPD)进行的诊断(kV)X射线成像来实现。了解图像滞后对实时肿瘤追踪的影响至关重要。我们在这项研究中的目的是基于FPD系统的图像滞后特性开发滞后仿真系统。在直接和间接转换动态FPD中,在平场图像上测量了图像滞后属性。根据FPD类型,成像速率,曝光剂量和目标速度的所有组合的滞后特性,模拟了具有图像滞后的运动目标,然后将其与实际运动目标进行比较,以研究图像滞后的可重复性。成功地模拟了图像滞后,并且与实际滞后以及预测效果非常吻合。在间接转换FPD中,较高的剂量会导致较大的图像滞后于图像。相反,直接转化FPD中的剂量水平之间没有显着差异。在任何一种FPD中,目标速度和图像模糊量之间都没有关系。在本研究中检查的所有成像参数组合中,由于图像滞后导致的最大轮廓模糊和像素值的增加率分别为1.1mm和10.0%。使用模拟系统,在各种成像条件下估算了由于图像滞后引起的边界模糊和像素值变化。我们的系统将有助于更好地理解荧光镜图像滞后的影响。

著录项

  • 来源
    《Radiological Physics and Technology》 |2013年第2期|273-280|共8页
  • 作者单位

    Department of Radiological Technology School of Health Sciences College of Medical Pharmaceutical and Health Sciences Kanazawa University">(1);

    Division of Health Sciences Graduate School of Medical Science Kanazawa University">(2);

    Department of Radiological Technology Kanazawa University Hospital">(3);

    Department of Radiological Technology School of Health Sciences College of Medical Pharmaceutical and Health Sciences Kanazawa University">(1);

    Department of Radiological Technology School of Health Sciences College of Medical Pharmaceutical and Health Sciences Kanazawa University">(1);

    Department of Radiological Technology Kanazawa University Hospital">(3);

    Department of Radiological Technology School of Health Sciences College of Medical Pharmaceutical and Health Sciences Kanazawa University">(1);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Image lag; Simulation; Target tracking; Image-guided radiotherapy; Flat-panel detector (FPD);

    机译:图像滞后;模拟;目标跟踪;影像引导放疗;平板探测器(FPD);
  • 入库时间 2022-08-17 23:59:23

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