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首页> 外文期刊>Medical Physics >Autoadaptive phase-correlated (AAPC) reconstruction for 4D CBCT.
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Autoadaptive phase-correlated (AAPC) reconstruction for 4D CBCT.

机译:4D CBCT的自适应相位相关(AAPC)重建。

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摘要

PURPOSE: Kilovoltage cone-beam computed tomography (CBCT) is widely used in image-guided radiation therapy for exact patient positioning prior to the treatment. However, producing time series of volumetric images (4D CBCT) of moving anatomical structures remains challenging. The presented work introduces a novel method, combining high temporal resolution inside anatomical regions with strong motion and image quality improvement in regions with little motion. METHODS: In the proposed method, the projections are divided into regions that are subject to motion and regions at rest. The latter ones will be shared among phase bins, leading thus to an overall reduction in artifacts and noise. An algorithm based on the concept of optical flow was developed to analyze motion-induced changes between projections. The technique was optimized to distinguish patient motion and motion deriving from gantry rotation. The effectiveness of the method is shown in numerical simulations and patient data. RESULTS: The images reconstructed from the presented method yield an almost the same temporal resolution in the moving volume segments as a conventional phase-correlated reconstruction, while reducing the noise in the motionless regions down to the level of a standard reconstruction without phase correlation. The proposed simple motion segmentation scheme is yet limited to rotation speeds of less than 3 degrees/s. CONCLUSIONS: The method reduces the noise in the reconstruction and increases the image quality. More data are introduced for each phase-correlated reconstruction, and therefore the applied dose is used more efficiently.
机译:目的:千伏锥束计算机断层扫描(CBCT)被广泛用于图像引导放射治疗中,以在治疗前准确定位患者。然而,产生运动解剖结构的体积图像(4D CBCT)的时间序列仍然具有挑战性。提出的工作介绍了一种新颖的方法,该方法结合了具有强运动的解剖区域内的高时间分辨率和运动少的区域内的图像质量改善。方法:在提出的方法中,将投影分为容易运动的区域和静止的区域。后者将在相位仓之间共享,从而总体上减少了伪像和噪声。开发了一种基于光流概念的算法来分析投影之间运动引起的变化。该技术经过优化,可以区分患者的运动和机架旋转产生的运动。数值模拟和患者数据显示了该方法的有效性。结果:从提出的方法重建的图像在运动的体积片段中产生了与常规相位相关重建几乎相同的时间分辨率,同时将静止区域的噪声降低到没有相位相关的标准重建水平。所提出的简单运动分割方案仍然限于小于3度/ s的旋转速度。结论:该方法减少了重建中的噪声并提高了图像质量。对于每个与相位相关的重建,都会引入更多的数据,因此可以更有效地使用所施加的剂量。

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