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Respiratory Motion Compensation Using Diaphragm Tracking for Cone-Beam C-Arm CT: A Simulation and a Phantom Study

机译:使用膜片跟踪的锥形束C臂CT呼吸运动补偿:仿真和幻影研究

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摘要

Long acquisition times lead to image artifacts in thoracic C-arm CT. Motion blur caused by respiratory motion leads to decreased image quality in many clinical applications. We introduce an image-based method to estimate and compensate respiratory motion in C-arm CT based on diaphragm motion. In order to estimate respiratory motion, we track the contour of the diaphragm in the projection image sequence. Using a motion corrected triangulation approach on the diaphragm vertex, we are able to estimate a motion signal. The estimated motion signal is used to compensate for respiratory motion in the target region, for example, heart or lungs. First, we evaluated our approach in a simulation study using XCAT. As ground truth data was available, a quantitative evaluation was performed. We observed an improvement of about 14% using the structural similarity index. In a real phantom study, using the artiCHEST phantom, we investigated the visibility of bronchial tubes in a porcine lung. Compared to an uncompensated scan, the visibility of bronchial structures is improved drastically. Preliminary results indicate that this kind of motion compensation can deliver a first step in reconstruction image quality improvement. Compared to ground truth data, image quality is still considerably reduced.
机译:较长的采集时间会导致胸部C臂CT出现图像伪影。在许多临床应用中,由呼吸运动引起的运动模糊导致图像质量下降。我们介绍了一种基于图像的方法来估计和补偿基于隔膜运动的C型臂CT的呼吸运动。为了估计呼吸运动,我们在投影图像序列中跟踪隔膜的轮廓。在膜片顶点上使用运动校正的三角测量方法,我们能够估算运动信号。估计的运动信号用于补偿目标区域(例如心脏或肺部)中的呼吸运动。首先,我们在使用XCAT的模拟研究中评估了我们的方法。由于可获得地面真实数据,因此进行了定量评估。使用结构相似性指数,我们观察到约14%的改善。在使用artiCHEST幻像的真实幻像研究中,我们调查了猪肺中支气管的可见性。与无偿扫描相比,支气管结构的可见性得到了极大的改善。初步结果表明,这种运动补偿可以为重建图像质量提供第一步。与地面真实数据相比,图像质量仍然大大降低。

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