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Reducing Bias in Y-90 PET Images by Enforcing Non-Negativity in Projection Space

机译:通过在投影空间中增强非负性来减少Y-90 PET图像中的偏差

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Most existing PET image reconstruction methods impose a nonnegativity constraint in the image domain that is natural physically, but can lead to biased reconstructions. This bias is particularly problematic for Y-90 PET because of the low probability positron production and high random coincidence fraction. We propose a new PET reconstruction formulation that enforces nonnegativity of the projections instead of the voxel values. This formulation allows some negative voxel values thereby potentially reducing bias. To relax the non-negativity constraint embedded in the standard methods for PET reconstruction, we used an Alternating Direction Method of Multipliers (ADMM). Because choice of ADMM parameters can greatly influence convergence rate, we applied an automatic parameter selection method to improve the convergence speed. We investigated several variants differentiated by the base model and the constraint condition using lung to liver slices of XCAT phantom. We simulated low true coincidence count-rates with high random fractions corresponding to the typical values from patient imaging in Y-90 microsphere radioembolization. We compared our new methods with standard reconstruction algorithms. As the proposed algorithm iterates, the new method reduces the bias in cold spot while yielding lower noise than the standard method. The new model improves the quantification in all regions of interest when the methods achieve similar level of noise in the liver. The improvements with the new method are especially notable when simulating conditions corresponding to patients with lower activity administration (i.e., higher random fractions).
机译:大多数现有的PET图像重建方法会在图像域中施加非负约束,这在物理上是自然的,但是会导致重建有偏差。由于Y-90 PET的低概率正电子产生和高随机重合分数,因此这种偏差对于Y-90 PET尤其成问题。我们提出了一种新的PET重建公式,该公式可强制实现投影的非负值而不是体素值。此公式允许一些负体素值,从而潜在地减少偏差。为了放松嵌入在PET重建标准方法中的非负约束,我们使用了交替方向乘数法(ADMM)。由于选择ADMM参数会极大地影响收敛速度,因此我们应用了自动参数选择方法来提高收敛速度。我们使用XCAT体模的肺到肝切片研究了根据基本模型和约束条件区分的几种变体。我们模拟了低真实重合计数率,具有较高的随机分数,对应于Y-90微球放射性栓塞患者成像的典型值。我们将新方法与标准重建算法进行了比较。随着算法的迭代,新方法减少了冷点的偏差,同时产生的噪声比标准方法低。当这些方法在肝脏中达到相似的噪声水平时,新模型将改善所有感兴趣区域的定量。当模拟与活动量较低的患者(即较高的随机分数)相对应的条件时,用新方法进行的改进尤其显着。

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