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Adaptive Bayesian Iterative Transmission Reconstruction for Attenuation Correction in Myocardial Perfusion Imaging with SPECT/Slow-Rotation Low-Output CT Systems

机译:自适应贝叶斯迭代传输重建,用于SPECT /慢旋转低输出CT系统的心肌灌注成像的衰减校正

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Objectives. SPECT/slow-rotation low-output CT systems can produce streak artifacts in filtered backprojection (FBP) attenuation maps, impacting attenuation correction (AC) in myocardial perfusion imaging. This paper presents an adaptive Bayesian iterative transmission reconstruction (ABITR) algorithm for more accurate AC.Methods. In each iteration, ABITR calculated a three-dimensional prior containing the pixels with attenuation coefficients similar to water, then used it to encourage these pixels to the water value. ABITR was tested with a cardiac phantom and 4 normal patients acquired by a GE Millennium VG/Hawkeye system.Results. FBP AC and ABITR AC produced similar phantom results. For the patients, streak artifacts were observed in the FBP and ordered-subsets expectation-maximization (OSEM) maps but not in the ABITR maps, and ABITR AC produced more uniform images than FBP AC and OSEM AC.Conclusion. ABITR can improve the quality of the attenuation map, producing more uniform images for normal studies.
机译:目标。 SPECT /慢旋转低输出CT系统会在滤波后的反投影(FBP)衰减图中产生条纹​​伪影,从而影响心肌灌注成像中的衰减校正(AC)。本文提出了一种自适应的贝叶斯迭代传输重构(ABITR)算法,用于更精确的AC。在每次迭代中,ABITR计算一个三维先验值,其中包含衰减系数类似于水的像素,然后使用它来鼓励这些像素达到水值。使用GE Millennium VG / Hawkeye系统对心脏假体和4名正常患者进行了ABITR测试。 FBP AC和ABITR AC产生了相似的幻像结果。对于患者,在FBP和有序子集期望最大化(OSEM)图中观察到条纹伪影,但在ABITR图中未观察到,并且ABITR AC产生的图像比FBP AC和OSEM AC更均匀。 ABITR可以改善衰减图的质量,为正常研究生成更均匀的图像。

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