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Cardiac PET Motion Correction Using Materially Constrained Transform Models

机译:使用材料约束转换模型进行心脏PET运动校正

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Recent improvements in the resolution of Positron Emission Tomography (PET) imaging have not translated into equivalent advances in diagnostic accuracy. Due to long acquisition times involved, the functional imaging modality is hampered by motion artefacts due to respiratory motion. In this paper, two methods for correcting reconstructed PET images through a list-mode re-binning process are investigated. The first method rebins the list-mode data according to a globally defined 3D affine transformation. The second is a novel approach that combines multiple independent 2D affine transforms in order to exploit the specific properties of 2D tomographic reconstruction. Each affine transformation method is applied to the respiratory gated sequence of line-of-response events prior to image reconstruction, thus compensating for any respiratory motion. The deformation models are derived from a non-rigid 3D/3D registration model applied to retrospectively gated MRI acquired during free-breathing. The motion correction schemes are validated using a simulation framework with respiratory gated MRI scans of 10 subjects to generate the required activity maps for estimating emission sinograms. This allows the ground truth solution to be derived so that the motion corrected reconstruction can be compared quantitatively. It is shown that the higher degrees of freedom of the 2D affine motion compensation model is superior to the 3D affine transform provided one incorporates weak material constraints to avoid ill conditioning and can tolerate the lower SNR that 2D reconstruction implies.
机译:正电子发射断层扫描(PET)成像分辨率的最新改进尚未转化为诊断准确性的同等进步。由于需要较长的采集时间,功能成像模态会因呼吸运动而受到运动伪影的阻碍。本文研究了两种通过列表模式重新合并过程校正PET图像的方法。第一种方法根据全局定义的3D仿射变换重新绑定列表模式数据。第二种是一种新颖的方法,它结合了多个独立的2D仿射变换,以便利用2D层析成像重建的特定属性。在图像重建之前,将每种仿射变换方法应用于响应门事件的呼吸门控序列,从而补偿任何呼吸运动。变形模型源自非刚性3D / 3D配准模型,该模型应用于自由呼吸过程中获取的回顾性门控MRI。使用带有10个对象的呼吸门控MRI扫描的模拟框架对运动校正方案进行验证,以生成所需的活动图以估计发射正弦图。这允许推导地面真实解,以便可以定量比较运动校正后的重建。结果表明,如果2D仿射运动补偿模型具有较高的自由度,则要优于3D仿射变换,前提是该模型合并了较弱的材料约束以避免不良条件,并且可以忍受2D重构所暗示的较低SNR。

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