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Fully 5d reconstruction of gated dynamic cardiac SPECT images using temporal B-splines

机译:使用时间B样条曲线对门控动态心脏SPECT图像进行全5d重建

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In previous work we explored a reconstruction approach based on B-spline modeling for dynamic cardiac images from a gated acquisition in single photon emission computed tomography (SPECT), of which the goal is to obtain a single sequence showing both cardiac motion and kinetic tracer distribution change over time simultaneously. In this work we further develop this approach by extending it to reconstruction of fully five-dimensional (5D) images. Besides quantifying its reconstruction accuracy, we also demonstrate the feasibility of using kinetic information from reconstructed dynamic images with this approach for differentiating defects from normal cardiac perfusion. The proposed approach is evaluated using a dynamic version of the 4D NURBS-based cardiac-torso (NCAT) phantom to simulate a gated SPECT perfusion acquisition with Tc99m Teboroxime. Our results demonstrate that, despite the greatly underdetermined nature of the problem, the 5D procedure can lead to faithful reconstruction of gated dynamic images for both cardiac motion and perfusion defect detection.
机译:在先前的工作中,我们探讨了基于B样条型的重建方法,用于从单光子发射计算断层摄影(SPECT)中的门控采集中的动态心脏图像,其中目标是获得显示心动运动和动力学示踪分布的单个序列同时随时间变化。在这项工作中,我们通过将其扩展到重建完全五维(5D)图像来进一步开发这种方法。除了量化其重建精度之外,我们还展示了利用来自重建动态图像的动态图像的可行性,以利用这种方法来区分正常心脏灌注的缺陷。使用基于4D NURBS的心脏躯干(NCAT)幻影的动态版本来评估所提出的方法,以模拟与TC99M Teboroxime的门控SPECT灌注采集。我们的结果表明,尽管问题的问题大大,但是5D程序可以导致对心动运动和灌注缺陷检测的门控动态图像忠实地重建。

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