动态最先进PET成像中的定量准确性考虑(当每个lor的平均计数(远)小于单位时)

A. Rahmim, J. Cheng, S. Blinder, M. Camborde, V. Sossi
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引用次数: 5

摘要

最先进的高分辨率PET现在比以往任何时候都更需要仔细检查成像方式本身的性质和局限性以及图像重建技术。特别是,我们在动态PET成像的背景下讨论并解决了以下两个问题:(i)每个lor的典型平均计数现在(远)小于单位;广泛的统计数据(由于活动的物理/生物衰减)加上前面提到的每lor计数率低,进一步挑战了动态重建的定量准确性。在这种情况下,我们从理论上论证并通过实验证明,正弦图非负性约束(当使用延迟重合和/或散点减法技术时)将导致相当大的高估偏差。已经考虑了两种替代方案,并已证明可以消除上述偏见。我们还研究了普通和收敛子集图像重建方法的适用性。
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Quantitative accuracy considerations in dynamic state-of-the-art PET imaging (when average counts-per-LOR are (much) less than unity)
State-of-the-art high resolution PET is now more than ever in need of scrutiny into the nature and limitations of the imaging modality itself as well as image reconstruction techniques. Particularly, we have discussed and addressed the following two considerations in the context of dynamic PET imaging: (i) The typical average numbers of counts-per-LOR are now (much) less than unity; (ii) The wide range of statistics (due to physical/biological decay of the activity) coupled with the aforementioned low count-rates-per-LOR further challenge the quantitative accuracy of dynamic reconstructions. In this context, we have argued theoretically and demonstrated experimentally, that the sinogram non-negativity constraint (when using the delayed coincidence and/or scatter subtraction techniques) will result in considerable overestimation biases. Two alternate schemes have been considered, and have been shown to remove the aforementioned bias. We have also investigated applicabilities of ordinary and convergent subsetized image reconstruction methods.
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