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[准直器宽校正三维有序子集期望最大化在局部脑血流测量中的应用]

[Application of collimator broad correction three dimensional ordered subsets expectation maximization for regional cerebral blood flow measurement].

作者信息

Okada Mami, Hayashi Masuo, Tsuji Hisashi, Akagi Hiroyuki, Okayama Katsuyoshi, Narumi Yoshifumi

机构信息

Central Division of Radiology, Osaka Medical College.

出版信息

Nihon Hoshasen Gijutsu Gakkai Zasshi. 2012;68(5):573-83. doi: 10.6009/jjrt.2012_jsrt_68.5.573.

DOI:10.6009/jjrt.2012_jsrt_68.5.573
PMID:22687902
Abstract

Autoradiography (ARG) has been used for quantitative analysis of the cerebral blood flow using I-IMP, and the regional cerebral blood flow (rCBF) can be assessed more accurately with scatter and attenuation correction. Currently, the filtered back projection (FBP) method is generally used for image reconstruction. However, we anticipate obtaining more accurate rCBF by the ordered subsets expectation maximization method with collimator broad correction three dimensional ordered subsets expectation maximization (3D-OSEM). In the present study, we optimized the processing conditions to quantify rCBF using the 3D-OSEM method and compared them with the FBP method. Regarding the method, we determined the subsets and iteration, compared rCBF values using a profile curve, and compared them with the rCBF values obtained by the XeCT (Xenon-enhanced computed tomography)/CBF method. We found that in the 3D-OSEM method using 90 direction collection and 1.72 mm/pixel, the most accurate image was obtained around subset 9 and iteration 10. In addition, as compared to the profile curve and the XeCT/CBF method, the thalamus rCBF was high in the 3D-OSEM method with a good correlation with that of the XeCT/CBF. Accordingly, we concluded that the 3D-OSEM method can improve the decrease in rCBF due to blurring of the distance between the source (i.e., a structure located in the central part of the brain such as the thalamus and the collimator).

摘要

放射自显影术(ARG)已被用于使用碘代异丁基胍(I-IMP)对脑血流量进行定量分析,并且通过散射和衰减校正可以更准确地评估局部脑血流量(rCBF)。目前,滤波反投影(FBP)方法通常用于图像重建。然而,我们预期通过带有准直器宽校正的有序子集期望最大化方法——三维有序子集期望最大化(3D-OSEM)来获得更准确的rCBF。在本研究中,我们优化了使用3D-OSEM方法定量rCBF的处理条件,并将其与FBP方法进行比较。关于该方法,我们确定了子集和迭代次数,使用轮廓曲线比较rCBF值,并将它们与通过氙增强计算机断层扫描(XeCT)/脑血流量(CBF)方法获得的rCBF值进行比较。我们发现,在使用90方向采集和1.72毫米/像素的3D-OSEM方法中,在子集9和迭代10左右获得了最准确的图像。此外,与轮廓曲线和XeCT/CBF方法相比,在3D-OSEM方法中丘脑rCBF较高,且与XeCT/CBF的rCBF具有良好的相关性。因此,我们得出结论,3D-OSEM方法可以改善由于源(即位于脑中央部分的结构,如丘脑和准直器)之间距离模糊导致的rCBF下降。

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