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使用带和不带组织分数校正的O-HO PET进行定量肺血流测量:一项比较研究。

Quantitative pulmonary blood flow measurement using O-HO PET with and without tissue fraction correction: a comparison study.

作者信息

Matsunaga Keiko, Yanagawa Masahiro, Otsuka Tomoyuki, Hirata Haruhiko, Kijima Takashi, Kumanogoh Atsushi, Tomiyama Noriyuki, Shimosegawa Eku, Hatazawa Jun

机构信息

Department of Molecular Imaging in Medicine, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.

Department of Nuclear Medicine and Tracer Kinetics, Osaka University Graduate School of Medicine, 2-2 Yamadaoka Suita city, Osaka, Japan.

出版信息

EJNMMI Res. 2017 Dec 22;7(1):102. doi: 10.1186/s13550-017-0350-8.

Abstract

BACKGROUND

Physiological measures per lung parenchyma, rather than per lung volume, sometimes reflect the disease status. PET images of the lung, which are usually expressed per lung volume, could confound the interpretation of the disease status, especially in cases with a prominent heterogeneity in aeration. The aim of the present study was to develop a method for measuring pulmonary blood flow (PBF) with aeration correction using O-HO PET and to compare the results with those obtained using a conventional method. We obtained the voxel-based tissue fraction (TF) derived from density images converted from transmission images obtained using an external Cs point source. Quantitative PBF values with and without the TF were calculated using O-HO PET to examine contralateral lung tissue in 9 patients with unilateral lung cancer. The heterogeneity in PBF before and after TF correction was then evaluated and compared. As a measure of PBF heterogeneity, we used the skewness and kurtosis of the PBF distribution.

RESULTS

The mean PBF of contralateral lung was 1.4 ± 0.3 mL/min per mL of lung. The TF-corrected PBF was 5.0 ± 0.6 mL/min per mL of lung parenchyma. After TF correction, the skewness and kurtosis of the PBF decreased significantly.

CONCLUSIONS

The present PBF calculation method using TF correction demonstrated that the normal PBF increased significantly and the PBF distribution became uniform. The proposed TF correction method is a promising technique to account for variations in density when interpreting PBF in PET studies.

摘要

背景

基于每单位肺实质而非每单位肺容积的生理测量有时能反映疾病状态。肺部的PET图像通常以每单位肺容积表示,这可能会混淆对疾病状态的解读,尤其是在通气存在显著异质性的情况下。本研究的目的是开发一种使用O-HO PET进行通气校正来测量肺血流量(PBF)的方法,并将结果与使用传统方法获得的结果进行比较。我们从使用外部Cs点源获得的透射图像转换而来的密度图像中得出基于体素的组织分数(TF)。使用O-HO PET计算有和没有TF时的定量PBF值,以检查9例单侧肺癌患者的对侧肺组织。然后评估并比较TF校正前后PBF的异质性。作为PBF异质性的一种度量,我们使用了PBF分布的偏度和峰度。

结果

对侧肺的平均PBF为每毫升肺1.4±0.3毫升/分钟。经TF校正后的PBF为每毫升肺实质5.0±0.6毫升/分钟。TF校正后,PBF的偏度和峰度显著降低。

结论

目前使用TF校正的PBF计算方法表明,正常PBF显著增加,且PBF分布变得均匀。所提出的TF校正方法是在PET研究中解释PBF时考虑密度变化的一种有前景的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2718/5741573/462b1ba16d74/13550_2017_350_Fig1_HTML.jpg

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