Dheer Pankaj, Gupta Priyanka, Taywade Sameer Kamalakar, Passah Averilicia, Pandey Anil Kumar, Patel Chetan
Department of Nuclear Medicine, All India Institute of Medical Sciences, New Delhi, India.
Indian J Nucl Med. 2021 Jan-Mar;36(1):14-20. doi: 10.4103/ijnm.IJNM_140_20. Epub 2021 Mar 4.
To establish the most appropriate ordered subset expectation maximization (OSEM) parameters for image reconstruction in Tc-99m methoxyisobutylisonitrile (MIBI) myocardial perfusion SPECT (MPS) and comparison with corresponding filtered back projection (FBP)-reconstructed images.
A total of 99 stress-rest MPS studies (47 normal and 52 abnormal) were retrospectively analyzed using 16 different combinations of iterations and subsets. Images were reconstructed both with and without postreconstruction Butterworth filter (cutoff frequency and order for stress: 0.4 and 10 and for rest: 0.52 and 5, respectively) for each combination. A total of 3168 images were evaluated qualitatively by two nuclear medicine physicians on a scoring scale of 1-4. Best visual quality image iteration-subset combination was determined for each patient both with and without Butterworth filter and was further compared with FBP-reconstructed image. The interobserver agreement was obtained using kappa statistics.
The best quality images were obtained using a combination of four iterations and six subsets for both with and without Butterworth filter. The value of kappa for interobserver agreement for OSEM images with Butterworth filter was 0.570 and for OSEM images without Butterworth filter was 0.857. On comparison, FBP images were better than OSEM-reconstructed images without Butterworth filter ( < 0.0001 calculated using Fisher's exact test) with substantial agreement (kappa = 0.628). However, OSEM-reconstructed images with Butterworth filter were better than FBP images and showed moderate agreement (kappa = 0.486).
The most appropriate OSEM reconstruction parameter in Tc-99m MIBI MPS is 4-iteration and 6-subset combination. FBP-reconstructed images were better than the images reconstructed with OSEM without postreconstruction Butterworth filter. However, OSEM-reconstructed image with Butterworth filter was better than FBP images.
确定用于锝-99m甲氧基异丁基异腈(MIBI)心肌灌注单光子发射计算机断层显像(MPS)图像重建的最合适的有序子集期望最大化(OSEM)参数,并与相应的滤波反投影(FBP)重建图像进行比较。
使用16种不同的迭代和子集组合,对总共99例负荷-静息MPS研究(47例正常和52例异常)进行回顾性分析。对于每种组合,分别在有和没有重建后巴特沃斯滤波器(负荷状态下的截止频率和阶数分别为0.4和10,静息状态下为0.52和5)的情况下重建图像。两名核医学医师以1-4分的评分标准对总共3168幅图像进行了定性评估。确定了每位患者在有和没有巴特沃斯滤波器情况下的最佳视觉质量图像迭代-子集组合,并进一步与FBP重建图像进行比较。使用kappa统计量获得观察者间的一致性。
无论有无巴特沃斯滤波器,使用四次迭代和六个子集的组合均可获得质量最佳的图像。有巴特沃斯滤波器的OSEM图像观察者间一致性的kappa值为0.570,无巴特沃斯滤波器的OSEM图像为0.857。相比之下,FBP图像优于无巴特沃斯滤波器的OSEM重建图像(使用Fisher精确检验计算,P<0.0001),一致性较高(kappa = 0.628)。然而,有巴特沃斯滤波器的OSEM重建图像优于FBP图像,一致性中等(kappa = 0.486)。
锝-99m MIBI MPS中最合适的OSEM重建参数是4次迭代和6个子集的组合。FBP重建图像优于未进行重建后巴特沃斯滤波的OSEM重建图像。然而,有巴特沃斯滤波器的OSEM重建图像优于FBP图像。