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Simultaneous estimation of SPECT activity and attenuation distributions from measured phantom data using a differential attenuation method

机译:使用差分衰减方法同时估计测量幻像数据的SPECT活动和衰减分布

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The Differential Attenuation Method (DAM) simultaneously estimates SPECT activity and attenuation distributions from emission data. In this work, we extend the investigation of DAM to measured data and compare the results obtained with FBP without compensating for attenuation, and Penalized Weighted Least Squares (PWLS) with uniform and no attenuation. An anthropomorphic torso phantom with a heart insert containing a myocardial defect filled with ~(111)In is used to acquire data on a GE VG tomograph. An accurate scatter correction before reconstruction is crucial. Scatter is subtracted with an Energy Window Based Subtraction method (EWBS), with positions and widths of the energy windows selected using Monte Carlo simulated source distributions. The results show the potential benefits of DAM as the activity estimate has fewer artifacts and is more accurate than FBP without compensating for attenuation or PWLS with uniform attenuation. However, artifacts remain and additional constraints on the allowed attenuation values were required to produce acceptable images.
机译:差分衰减方法(DAM)同时估计来自发射数据的SPECT活动和衰减分布。在这项工作中,我们将大坝的调查扩展到测量数据,并比较使用FBP获得的结果而不补偿衰减,并具有均匀而不衰减的罚款加权最小二乘(PWL)。含有含有含有〜(111)的心肌缺陷的心脏插入物的拟人躯干幻影用于获取GE VG Tomograph上的数据。重建之前的准确散射校正至关重要。用基于能量窗口的减法方法(EWB)对散射进行减去,使用Monte Carlo模拟源分布选择的能量窗口的位置和宽度。结果显示了大坝的潜在益处,因为活动估计具有较少的伪像并且比FBP更准确而不补偿具有均匀衰减的衰减或PWL。然而,需要伪影以及对允许的衰减值进行额外的约束来产生可接受的图像。

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