首页> 美国卫生研究院文献>Journal of Applied Clinical Medical Physics >An algorithm to extract three‐dimensional motion by marker tracking in the kV projections from an on‐board imager: four‐dimensional cone‐beam CT and tumor tracking implications
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An algorithm to extract three‐dimensional motion by marker tracking in the kV projections from an on‐board imager: four‐dimensional cone‐beam CT and tumor tracking implications

机译:通过在机载成像仪的kV投影中通过标记跟踪来提取三维运动的算法:三维锥束CT和肿瘤跟踪的意义

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摘要

The purpose of this work is to extract three‐dimensional (3D) motion trajectories of internal implanted and external skin‐attached markers from kV cone‐beam projections and reduce image artifact from patient motion in cone‐beam computed tomography (CBCT) from on‐board imager. Cone beam radiographic projections were acquired for a mobile phantom and liver patients with internal implanted and external skin‐attached markers. An algorithm was developed to automatically find the positions of the markers in the projections. It uses normalized cross‐correlation between a template image of a metal seed marker and the projections to find the marker position. From these positions and time‐tagged angular views, the marker 3D motion trajectory was obtained over a time interval of nearly one minute, which is the time required for scanning. This marker trajectory was used to remap the pixels of the projections to eliminate motion. Then, the motion‐corrected projections were used to reconstruct CBCT. An algorithm was developed to extract 3D motion trajectories of internal and external markers from cone‐beam projections using a kV monoscopic on‐board imager. This algorithm was tested and validated using a mobile phantom and patients with liver masses that had radio‐markers implanted in the tumor and attached to the skin. The extracted motion trajectories were used to investigate motion correlation between internal and external markers in liver patients. Image artifacts from respiratory motion were reduced in CBCT reconstructed from cone‐beam projections that were preprocessed to remove motion shifts obtained from marker tracking. With this method, motion‐related image artifacts such as blurring and spatial distortion were reduced, and contrast and position resolutions were improved significantly in CBCT reconstructed from motion‐corrected projections. Furthermore, correlated internal and external marker 3D‐motion tracks obtained from the kV projections might be useful for 4DCBCT, beam gating and tumor motion monitoring or tracking.PACS numbers: 87.57.Q, 87.57.C‐
机译:这项工作的目的是从kV锥形束投影中提取内部植入和外部皮肤附着标记的三维(3D)运动轨迹,并从锥形束计算机断层扫描(CBCT)中的患者运动中减少来自患者运动的图像伪像板成像仪。为带有内部植入和外部皮肤附着标记物的移动体模和肝脏患者获取了锥形束射线照相投影。开发了一种算法来自动找到投影中标记的位置。它使用金属种子标记物的模板图像和投影之间的归一化互相关来找到标记物的位置。从这些位置和带有时间标记的角度视图,可以在近一分钟的时间间隔(即扫描所需的时间)内获得标记3D运动轨迹。该标记轨迹用于重新映射投影的像素以消除运动。然后,将经过运动校正的投影用于重建CBCT。开发了一种算法,可使用kV单视车载成像仪从锥束投影提取内部和外部标记的3D运动轨迹。使用可移动的幻像对这种算法进行了测试和验证,并且肝肿块患者的放射性标记物已植入肿瘤并附着在皮肤上。提取的运动轨迹用于研究肝脏患者内部和外部标志物之间的运动相关性。呼吸运动产生的图像伪影在由锥束投影重建的CBCT中得到了减少,该锥束投影经过预处理以消除从标记跟踪获得的运动偏移。使用此方法,可以减少从运动校正的投影重建的CBCT中与运动有关的图像伪影(如模糊和空间失真),并显着提高对比度和位置分辨率。此外,从kV投影获得的相关内部和外部标记3D运动轨迹可能对4DCBCT,射束门控和肿瘤运动监测或跟踪有用.PACS编号:87.57.Q,87.57.C

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