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Dynamic Tomographic Reconstruction of Hepatobiliary scintigraphy from dynamic planar imaging followed by SPECT

机译:从动态平面成像再进行SPECT动态重建肝胆闪烁显像

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Hepatobiliary scintigraphy allows the estimation of liver function but only for the whole liver and not for individual regions. A workaround for this consists in rotating the camera to the angle where maximum separation between the lobes is achieved, however, this does not fully provide the activity distribution. In this work, we introduce an algorithm to reconstruct a full 4D tomographic image by using the same conventional planar dynamic imaging sequence, followed by a tomographic acquisition. The algorithm is based on a dictionary learning approach, where multiple L1 and L2 regularization terms are applied both on the bases and on the coefficients. The novelty of this approach is in that we fully model the Poisson statistics of the problem and of photon attenuation, which improves image quality compared to previous approaches but makes convergence extremely slow. This was solved using an optimal diagonal preconditioner and Nesterov acceleration. In this way, some depth information can also be achieved by the projection consistency when attenuation correction is used. We report the results obtained on a patient case. The image quality improves better the closer a frame is to the tomographic acquisition. VOI analysis show activity trends similar to that of planar acquisitions. Visually the images produced seem to allow a much better discrimination of the different regions of the liver. The problem of validation remains open.
机译:肝胆闪烁显像可以评估肝功能,但只能评估整个肝脏,而不能评估单个区域。一种解决方法是将摄像机旋转到可以在波瓣之间实现最大间隔的角度,但是,这不能完全提供活动分布。在这项工作中,我们介绍了一种算法,该算法通过使用相同的常规平面动态成像序列来重建完整的4D断层图像,然后进行断层图像采集。该算法基于字典学习方法,其中多个L 1 和我 2 正则化项既适用于基数,也适用于系数。这种方法的新颖性在于,我们可以对问题和光子衰减的泊松统计数据进行完全建模,与以前的方法相比,它可以提高图像质量,但会收敛极慢。这是使用最佳对角预处理器和Nesterov加速度解决的。这样,当使用衰减校正时,也可以通过投影一致性来获得一些深度信息。我们报告在患者案例中获得的结果。图像框与断层扫描的距离越近,图像质量就越好。 VOI分析显示活动趋势类似于平面采集的活动趋势。在视觉上产生的图像似乎可以更好地区分肝脏的不同区域。验证问题仍然存在。

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