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首页> 外文期刊>Physics in medicine and biology. >4D maximum a posteriori reconstruction in dynamic SPECT using a compartmental model-based prior.
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4D maximum a posteriori reconstruction in dynamic SPECT using a compartmental model-based prior.

机译:使用基于隔间模型的先验,在动态SPECT中4D最大后验重建。

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A 4D ordered-subsets maximum a posteriori (OSMAP) algorithm for dynamic SPECT is described which uses a temporal prior that constrains each voxel's behaviour in time to conform to a compartmental model. No a priori limitations on kinetic parameters are applied; rather, the parameter estimates evolve as the algorithm iterates to a solution. The estimated parameters and time-activity curves are used within the reconstruction algorithm to model changes in the activity distribution as the camera rotates, avoiding artefacts due to inconsistencies of data between projection views. This potentially allows for fewer, longer-duration scans to be used and may have implications for noise reduction. The algorithm was evaluated qualitatively using dynamic 99mTc-teboroxime SPECT scans in two patients, and quantitatively using a series of simulated phantom experiments. The OSMAP algorithm resulted in images with better myocardial uniformity and definition, gave time-activity curves with reduced noise variations, and provided wash-in parameter estimates with better accuracy and lower statistical uncertainty than those obtained from conventional ordered-subsets expectation-maximization (OSEM) processing followed by compartmental modelling. The new algorithm effectively removed the bias in k21 estimates due to inconsistent projections for sampling schedules as slow as 60 s per timeframe, but no improvement in wash-out parameter estimates was observed in this work. The proposed dynamic OSMAP algorithm provides a flexible framework which may benefit a variety of dynamic tomographic imaging applications.
机译:描述了一种用于动态SPECT的4D有序子集最大后验(OSMAP)算法,该算法使用时间先验来及时约束每个体素的行为以符合隔室模型。没有对动力学参数进行先验限制;相反,参数估计随着算法迭代到解决方案而发展。估计的参数和时间活动曲线在重建算法中用于对摄像机旋转时活动分布的变化进行建模,从而避免了由于投影视图之间数据不一致而导致的伪影。这潜在地允许使用更少的,更长持续时间的扫描,并且可能对降低噪声有影响。使用动态99mTc-teboroxime SPECT扫描对两名患者进行了定性评估,并使用一系列模拟体模实验对其进行了定量评估。与从常规有序子集期望最大化(OSEM)获得的图像相比,OSMAP算法可产生具有更好的心肌均匀性和清晰度的图像,提供具有减少的噪声变化的时间活动曲线,并提供具有更好准确性和更低统计不确定性的冲洗参数估计)处理,然后进行分区建模。新算法有效地消除了由于采样计划的不一致预测而导致的k21估计中的偏差,该预测的时间表慢至每个时间帧60 s,但是在这项工作中未观察到洗脱参数估计的改进。提出的动态OSMAP算法提供了一个灵活的框架,可以使各种动态层析成像应用受益。

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