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SIMIND Scatter Estimation: Experimental Verification

机译:Simind散射估计:实验验证

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Scatter estimation and compensation are not new concepts. However a robust and accurate scatter estimation method that easily adapts to all clinically relevant imaging protocols and emission energies are not yet readily available. The goal of this study was to further develop and evaluate the SIMIND scatter estimation (SSE) method. We acquired and simulated two line-sources approximately 8.4 cm apart in a Deluxe Jaszczak phantom as well as acquired the Jaszczak anthropomorphic phantom with activity in the Iowa heart insert and the liver. The measured and simulated data were reconstructed using the rescaled-block iterative (RBI) method using 5 iterations and 4 projections per subset. A three dimensional (3D) Gaussian filter were applied to all data. To compare the different scatter estimation methods, line profiles were drawn through both the reconstructed line-sources and the reoriented short-axis slices of the Iowa heart. The scatter estimates of the methods were also obtained and reconstructed. Profiles for comparison were also drawn. We consistently show that ESSE and TEW underestimate the scatter component compared to SSE, although compensated images look quite similar. However, we agree with others that rigorous modeling all the important aspects of the acquisition process inevitably results in a more accurate and robust representation, especially as we move towards achieving the ultimate goal: absolute quantification.
机译:分散估计和补偿不是新的概念。然而,一种容易和准确的散射估计方法,可以容易地适应所有临床相关的成像协议和发射能量。本研究的目标是进一步开发和评估Simind散射估计(SSE)方法。我们在豪华Jaszczak幻影中获得了大约8.4厘米的两条线路源,并在爱荷华心脏插入和肝脏中获得了jaszczak拟人幽灵。使用使用5个迭代的Rescaled-Block迭代(RBI)方法重建测量和模拟数据,每个子集4个投影。将三维(3D)高斯滤波器应用于所有数据。为了比较不同的散点估计方法,通过重建的线源和iowa心脏的重新定位的短轴切片来绘制线轮廓。还获得并重建方法的散射估计。还绘制了比较的概况。我们始终表明,与SSE相比,Esse和TeW低估了分散组分,但补偿图像看起来非常相似。然而,我们同意与其他人造型严谨所有的采集过程中不可避免地会导致更精确和稳健的表现,尤其是我们在实现最终目标移动的重要方面:绝对定量。

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