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Optimization of four-dimensional cone-beam computed tomography in image-guided radiation therapy of the lung

机译:肺图像引导放射治疗中的二维锥束计算机断层扫描技术的优化

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In image-guided radiation therapy of moving lung lesions, four-dimensional CBCT (4D-CBCT) can produce several images of the target through the breathing cycle with good temporal resolution. The requirements in 4D-CBCT are short scan time and image quality sufficient to localize the target. Short scans are desirable but result in image-distorting streak artifacts. We have optimized 4D-CBCT by determining the minimum scan time for adequate image quality. We scanned 4 patients with long scan times (3.8 - 5.4 minutes) to produce high-quality oversampled data sets. These serve as the gold standard for image quality assessment. Various shorter scan times were simulated via removal of projection data from the long scans. The projection data were removed in such a way as to maintain an accurate number of total breaths for the various simulated scan times. The amount of global streak artifact and the tumor and bony anatomy shape is assessed for each image set. The original long scans display no major streak artifacts. The moving structures show no sign of motion blurring and have high contrast boundaries. As the scan time is reduced, streak artifacts increase. Images for 1.5-2 minute scan time have relatively little distortion of boundaries. At 1 minute or less, the streak artifacts severely distort boundaries and may compromise localization.
机译:在运动肺部病变的图像引导放射治疗中,三维CBCT(4D-CBCT)可以在整个呼吸周期中以良好的时间分辨率生成目标的多个图像。 4D-CBCT的要求是扫描时间短和图像质量足以定位目标。短扫描是理想的,但会导致图像失真的条纹伪影。通过确定最短扫描时间以获得足够的图像质量,我们优化了4D-CBCT。我们对4例扫描时间较长(3.8-5.4分钟)的患者进行了扫描,以产生高质量的过采样数据集。这些是评估图像质量的金标准。通过从长时间扫描中删除投影数据,模拟了各种较短的扫描时间。以在各种模拟扫描时间保持准确的总呼吸次数的方式删除投影数据。对于每个图像集,评估整体条纹伪影以及肿瘤和骨解剖形状的数量。原始的长时间扫描没有显示出严重的条纹痕迹。移动的结构没有运动模糊的迹象,并且具有高对比度边界。随着扫描时间的减少,条纹伪影会增加。扫描时间为1.5-2分钟的图像的边界失真相对较小。在1分钟或更短的时间内,条纹伪影会严重扭曲边界,并可能损害定位。

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