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Streaking artifacts reduction in four-dimensional cone-beam computed tomography.

机译:减少四角锥束计算机断层扫描中的条纹痕迹。

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Cone-beam computed tomography (CBCT) using an "on-board" x-ray imaging device integrated into a radiation therapy system has recently been made available for patient positioning, target localization, and adaptive treatment planning. One of the challenges for gantry mounted image-guided radiation therapy (IGRT) systems is the slow acquisition of projections for cone-beam CT (CBCT), which makes them sensitive to any patient motion during the scans. Aiming at motion artifact reduction, four-dimensional CBCT (4D CBCT) techniques have been introduced, where a surrogate for the target's motion profile is utilized to sort the cone-beam data by respiratory phase. However, due to the limited gantry rotation speed and limited readout speed of the on-board imager, fewer than 100 projections are available for the image reconstruction at each respiratory phase. Thus, severe undersampling streaking artifacts plague 4D CBCT images. In this paper, the authors propose a simple scheme to significantly reduce the streaking artifacts. In this method, a prior image is first reconstructed using all available projections without gating, in which static structures are well reconstructed while moving objects are blurred. The undersampling streaking artifacts from static structures are estimated from this prior image volume and then can be removed from the phase images using gated reconstruction. The proposed method was validated using numerical simulations, experimental phantom data, and patient data. The fidelity of stationary and moving objects is maintained, while large gains in streak artifact reduction are observed. Using this technique one can reconstruct 4D CBCT datasets using no more projections than are acquired in a 60 s scan. At the same time, a temporal gating window as narrow as 100 ms was utilized. Compared to the conventional 4D CBCT reconstruction, streaking artifacts were reduced by 60% to 70%.
机译:使用集成到放射治疗系统中的“车载” X射线成像设备进行的锥形束计算机断层扫描(CBCT)最近可用于患者定位,目标定位和适应性治疗计划。龙门式图像引导放射治疗(IGRT)系统的挑战之一是锥束CT(CBCT)的投影获取速度缓慢,这使得它们对扫描期间的任何患者运动都敏感。为了减少运动伪影,已引入了四维CBCT(4D CBCT)技术,其中利用目标运动轮廓的替代物按呼吸相位对锥束数据进行分类。然而,由于机载成像器的有限的机架旋转速度和有限的读出速度,在每个呼吸阶段,少于100个投影可用于图像重建。因此,严重的欠采样条纹伪影困扰着4D CBCT图像。在本文中,作者提出了一种可以显着减少条纹痕迹的简单方案。在这种方法中,首先使用所有可用投影来重建先验图像,而无需进行门控,其中静态结构可以很好地重建,而运动对象却可以模糊。从静态结构的欠采样条纹伪像是根据此先前的图像量估算的,然后可以使用门控重建从相位图像中删除。使用数值模拟,实验体模数据和患者数据验证了该方法的有效性。保持静止和运动物体的保真度,同时观察到条纹伪影减少方面的大收益。使用这种技术,可以使用不超过60 s扫描中获得的投影来重建4D CBCT数据集。同时,利用了一个窄至100 ms的时间选通窗口。与传统的4D CBCT重建相比,条纹伪影减少了60%至70%。

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