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A general method for motion compensation in x-ray computed tomography

机译:X射线计算机断层扫描中运动补偿的一般方法

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Motion during data acquisition is a known source of error in medical tomography, resulting in blur artefacts in the regions that move. It is critical to reduce these artefacts in applications such as image-guided radiation therapy as a clearer image translates into a more accurate treatment and the sparing of healthy tissue close to a tumour site. Most research in 4D x-ray tomography involving the thorax relies on respiratory phase binning of the acquired data and reconstructing each of a set of images using the limited subset of data per phase. In this work, we demonstrate a motion-compensation method to reconstruct images from the complete dataset taken during breathing without recourse to phase-binning or breath-hold techniques. As long as the motion is sufficiently well known, the new method can accurately reconstruct an image at any time during the acquisition time span. It can be applied to any iterative reconstruction algorithm.
机译:数据采集期间的运动是医学层析成像中的已知误差来源,导致移动的区域中的模糊物品。 减少这些人工制品在诸如图像引导的放射治疗的应用中,作为更清晰的图像转化为更准确的治疗和靠近肿瘤部位的健康组织的备用。 在4D X射线断层扫描中的大多数研究涉及胸部依赖于所获取的数据的呼吸相位分布,并使用每相的有限数据子集重建一组图像中的每一个。 在这项工作中,我们展示了一种动作补偿方法,用于从呼吸期间拍摄的完整数据集重建图像,而无需求助于相位排列或呼吸保持技术。 只要动作足够众名所知,新方法就可以在采集时间跨度期间随时准确地重建图像。 它可以应用于任何迭代重建算法。

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