Mohseni Mohammadreza, Faghihi Reza, Haghighatafshar Mahdi, Entezarmahdi Seyed Mohammad
Nuclear Medicine and Molecular Imaging Research Center, Namazi Teaching Hospital, Shiraz University of Medical Sciences.
Nuclear Engineering Department.
Medicine (Baltimore). 2018 Sep;97(39):e12239. doi: 10.1097/MD.0000000000012239.
Nuclear cardiology has not witnessed development of new tracers or hardware for many years. Hence there is a need for the development of improvised techniques. Dynamic cardiac single photon emission computed tomography (SPECT) is one such technique that has a potential to overcome the limitations of conventional myocardial SPECT including the absolute quantification of blood flow. The main goal of this study is to evaluate the effect of attenuation correction (AC) on estimation of the washout parameters extracted from dynamic SPECT using a conventional protocol. The effect of the postprocessing on quantitative evaluation of dynamic SPECT is also assessed.A physical phantom was employed to physically simulate the dynamic behavior of a heart in the thorax. Using a dual detector SPECT system, 180° tomographic data in every 90 seconds were acquired. The SPECT data were reconstructed using ordered subset expectation maximization (OSEM) method while different iterations and a Butterworth filter with different cut-off frequencies were applied. Estimated washout parameter of the time activity curves (TACs) was compared with applying AC or without it.Results show that AC can improve the bias of computed washout parameter in normal regions (average bias reduction in normal ROI: 7%). Moreover, the postreconstruction filtering and reducing the number of iterations in reconstructing phase can reduce the variance of the computed washout values in normal regions (from 3.99% for cut-off frequency 0.5 cycle/cm and 32 times update in OSEM to 2.05% for cut-off frequency 0.35 cycle/cm and 16 times update in OSEM). They also reduce the actual size of the defect region (13% reduction in defect extent for above change in reconstruction parameters).According to the results, the AC and postprocessing filtration can directly affect the standard deviation of washout value acquired by cardiac dynamic SPECT. These parameters also showed a direct effect on the defect extent in final results. The study showed that the AC may partly improve the bias of calculated normal washout value. The effect of attenuation correction on the defective washout value could not be answered comprehensively in this paper.
多年来,核心脏病学领域一直没有新的示踪剂或硬件得到发展。因此,需要开发一些改进技术。动态心脏单光子发射计算机断层扫描(SPECT)就是这样一种技术,它有潜力克服传统心肌SPECT的局限性,包括血流量的绝对定量。本研究的主要目的是评估衰减校正(AC)对使用传统方案从动态SPECT中提取的洗脱参数估计的影响。同时还评估了后处理对动态SPECT定量评估的影响。
使用一个物理模型来物理模拟心脏在胸腔中的动态行为。使用双探测器SPECT系统,每90秒采集一次180°断层图像数据。SPECT数据采用有序子集期望最大化(OSEM)方法重建,同时应用不同的迭代次数和具有不同截止频率的巴特沃斯滤波器。比较了应用AC或不应用AC时时间-活度曲线(TAC)的估计洗脱参数。
结果表明,AC可以改善正常区域计算得到的洗脱参数的偏差(正常感兴趣区平均偏差降低:7%)。此外,重建后滤波以及在重建阶段减少迭代次数可以降低正常区域计算得到的洗脱值的方差(从截止频率0.5周期/cm且OSEM更新32次时的3.99%降至截止频率0.35周期/cm且OSEM更新16次时的2.05%)。它们还减小了缺损区域的实际大小(上述重建参数变化时缺损范围减小13%)。
根据结果,AC和后处理滤波可直接影响心脏动态SPECT获得的洗脱值的标准差。这些参数对最终结果中的缺损范围也有直接影响。该研究表明,AC可能部分改善计算得到的正常洗脱值的偏差。本文无法全面回答衰减校正对有缺损的洗脱值的影响。