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基于蒙特卡罗方法的心脏单光子发射计算机断层显像散射补偿加速技术

Acceleration of Monte Carlo-based scatter compensation for cardiac SPECT.

作者信息

Sohlberg A, Watabe H, Iida H

机构信息

National Cardiovascular Center Research Institute, 5-7-1 Fujishiro-dai, Suita City, 565-8565 Osaka, Japan.

出版信息

Phys Med Biol. 2008 Jul 21;53(14):N277-85. doi: 10.1088/0031-9155/53/14/N02. Epub 2008 Jun 23.

Abstract

Single proton emission computed tomography (SPECT) images are degraded by photon scatter making scatter compensation essential for accurate reconstruction. Reconstruction-based scatter compensation with Monte Carlo (MC) modelling of scatter shows promise for accurate scatter correction, but it is normally hampered by long computation times. The aim of this work was to accelerate the MC-based scatter compensation using coarse grid and intermittent scatter modelling. The acceleration methods were compared to un-accelerated implementation using MC-simulated projection data of the mathematical cardiac torso (MCAT) phantom modelling (99m)Tc uptake and clinical myocardial perfusion studies. The results showed that when combined the acceleration methods reduced the reconstruction time for 10 ordered subset expectation maximization (OS-EM) iterations from 56 to 11 min without a significant reduction in image quality indicating that the coarse grid and intermittent scatter modelling are suitable for MC-based scatter compensation in cardiac SPECT.

摘要

单质子发射计算机断层扫描(SPECT)图像会因光子散射而退化,这使得散射补偿对于准确重建至关重要。基于蒙特卡罗(MC)散射建模的基于重建的散射补偿显示出准确散射校正的前景,但通常会受到计算时间长的阻碍。这项工作的目的是使用粗网格和间歇性散射建模来加速基于MC的散射补偿。将加速方法与使用数学心脏躯干(MCAT)体模模拟(99m)Tc摄取的MC模拟投影数据和临床心肌灌注研究的未加速实现进行了比较。结果表明,当加速方法结合使用时,10次有序子集期望最大化(OS-EM)迭代的重建时间从56分钟减少到11分钟,而图像质量没有显著降低,这表明粗网格和间歇性散射建模适用于心脏SPECT中基于MC的散射补偿。

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