Maurer Jacqueline, Godfrey Devon, Wang Zhiheng, Yin Fang-Fang
Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Med Phys. 2008 Aug;35(8):3574-83. doi: 10.1118/1.2953561.
The purpose of this study is to propose four-dimensional digital tomosynthesis (4D-DTS) for on-board analysis of motion information in three dimensions. Images of a dynamic motion phantom were reconstructed using acquisition scan angles ranging from 20 degrees (DTS) to full 360 degrees cone-beam computed tomography (CBCT). Projection images were acquired using an on-board imager mounted on a clinical linear accelerator. Three-dimensional (3D) images of the moving target were reconstructed for various scan angles. 3D respiratory correlated phase images were also reconstructed. For phase-based image reconstructions, the trajectory of a radiopaque marker was tracked in projection space and used to retrospectively assign respiratory phases to projections. The projections were then sorted according phase and used to reconstruct motion correlated images. By using two sets of projections centered about anterior-posterior and lateral axes, this study demonstrates how phase resolved coronal and sagittal DTS images can be used to obtain 3D motion information. Motion artifacts in 4D-DTS phase images are compared with those present in four-dimensional CT (4DCT) images. Due to the nature of data acquisition for the two modalities, superior-inferior motion artifacts are suppressed to a greater extent in 4D-DTS images compared with 4DCT. Theoretical derivations and experimental results are presented to demonstrate how optimal selection of image acquisition parameters including the frequency of projection acquisition and the phase window depend on the respiratory period. Two methods for acquiring projections are discussed. Preliminary results indicate that 4D-DTS can be used to acquire valuable kinetic information of internal anatomy just prior to radiation treatment.
本研究的目的是提出用于在三维空间中对运动信息进行机载分析的四维数字断层合成(4D-DTS)技术。使用从20度(DTS)到360度全锥束计算机断层扫描(CBCT)的采集扫描角度重建动态运动体模的图像。投影图像使用安装在临床直线加速器上的机载成像仪获取。针对各种扫描角度重建移动目标的三维(3D)图像。还重建了三维呼吸相关相位图像。对于基于相位的图像重建,在投影空间中跟踪不透射线标记物的轨迹,并用于回顾性地为投影分配呼吸相位。然后根据相位对投影进行排序,并用于重建运动相关图像。通过使用围绕前后轴和横轴为中心的两组投影,本研究展示了如何使用相位分辨的冠状面和矢状面DTS图像来获取三维运动信息。将4D-DTS相位图像中的运动伪影与四维CT(4DCT)图像中的运动伪影进行比较。由于这两种模态的数据采集性质,与4DCT相比,4D-DTS图像中上下方向的运动伪影得到了更大程度的抑制。给出了理论推导和实验结果,以证明包括投影采集频率和相位窗口在内的图像采集参数的最佳选择如何取决于呼吸周期。讨论了两种获取投影的方法。初步结果表明,4D-DTS可用于在放疗前获取内部解剖结构的有价值的动力学信息。