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Tumor motion tracking based on a four-dimensional computed tomography respiratory motion model driven by an ultrasound tracking technique

机译:基于超声跟踪技术驱动的四维计算断层扫描运动模型的肿瘤运动跟踪

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Background: An ultrasound image tracking algorithm (UITA) was combined with four-dimensional computed tomography (4DCT) to create a real-time tumor motion-conversion model. The real-time position of a lung tumor phantom based on the real-time diaphragm motion trajectories detected by ultrasound imaging in the superior-inferior (SI) and medial-lateral (ML) directions were obtained. Methods: Three different tumor motion-conversion models were created using a respiratory motion simulation system (RMSS) combined with 4DCT. The tumor tracking error was verified using cone-beam computed tomography (CBCT). The tumor motion-conversion model was produced by using the UITA to monitor the motion trajectories of the diaphragm phantom in the SI direction, and using 4DCT to monitor the motion trajectories of the tumor phantom in the SI and ML directions over the same time period, to obtain parameters for the motion-conversion model such as the tumor center position and the amplitude and phase ratios. Results: The tumor movement was monitored for 90 s using CBCT to determine the real motion trajectories of the tumor phantom and using ultrasound imaging to simultaneously record the diaphragm movement. The absolute error of the motion trajectories of the real and estimated tumor varied between 0.5 and 2.1 mm in the two directions. Conclusions: This study has demonstrated the feasibility of using ultrasound imaging to track diaphragmatic motion combined with a 4DCT tumor motion-conversion model to track tumor motion in the SI and ML directions. The proposed method makes tracking a lung tumor feasible in real time, including under different breathing conditions.
机译:背景:超声图像跟踪算法(UITA)与四维计算断层扫描(4DCT)组合以创建实时肿瘤运动转换模型。基于通过超声成像在优异的(Si)和内侧 - 横向(ML)方向上检测到的实时膜片运动轨迹的肺肿瘤幻像的实时位置。方法:使用呼吸运动仿真系统(RMS)与4DCT结合产生三种不同的肿瘤运动转换模型。使用锥形光束计算机断层扫描(CBCT)验证了肿瘤跟踪误差。通过使用UITa以监测Si方向的膜片幻像的运动轨迹,并使用4DCT在同一时间段内监测肿瘤幻像的运动轨迹,并使用4DCT在同一时间段内监测Si和ML方向的肿瘤幻象的运动轨迹。为了获得运动转换模型的参数,例如肿瘤中心位置和幅度和相比。结果:使用CBCT监测肿瘤运动90s,以确定肿瘤幻像的实际运动轨迹,并使用超声成像同时记录隔膜运动。实际和估计肿瘤的运动轨迹的绝对误差在两个方向上变化在0.5和2.1mm之间。结论:本研究表明,使用超声成像以跟踪膈肌运动的可行性与4DCT肿瘤运动转化模型结合,以跟踪Si和ML方向上的肿瘤运动。所提出的方法使肺肿瘤实时跟踪可行,包括在不同的呼吸状况下。

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