Department of Patho-Functional Bioanalysis, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan.
Eur J Nucl Med Mol Imaging. 2010 Feb;37(2):377-85. doi: 10.1007/s00259-009-1262-2. Epub 2009 Sep 4.
Although (15)O-O(2) gas inhalation can provide a reliable and accurate myocardial metabolic rate for oxygen by PET, the spillover from gas volume in the lung distorts the images. Recently, we developed an injectable method in which blood takes up (15)O-O(2) from an artificial lung, and this made it possible to estimate oxygen metabolism without the inhalation protocol. In the present study, we evaluated the effectiveness of the injectable (15)O-O(2) system in porcine hearts.
PET scans were performed after bolus injection and continuous infusion of injectable (15)O-O(2) via a shunt between the femoral artery and the vein in normal pigs. The injection method was compared to the inhalation method. The oxygen extraction fraction (OEF) in the lateral walls of the heart was calculated by a compartmental model in view of the spillover and partial volume effect.
A significant decrease of lung radioactivity in PET images was observed compared to the continuous inhalation of (15)O-O(2) gas. Furthermore, the injectable (15)O-O(2) system provides a measurement of OEF in lateral walls of the heart that is similar to the continuous-inhalation method (0.71 +/- 0.036 and 0.72 +/- 0.020 for the bolus-injection and continuous-infusion methods, respectively).
These results indicate that injectable (15)O-O(2) has the potential to evaluate myocardial oxygen metabolism.
尽管(15)O-O(2)气体吸入可以通过 PET 提供可靠和准确的心肌代谢氧率,但来自肺部气体容积的溢出会使图像失真。最近,我们开发了一种可注射方法,其中血液从人工肺中摄取(15)O-O(2),这使得在不进行吸入方案的情况下估计氧代谢成为可能。在本研究中,我们评估了可注射(15)O-O(2)系统在猪心脏中的有效性。
通过股动脉和静脉之间的分流,在正常猪中进行 bolus 注射和连续输注可注射(15)O-O(2)后,进行 PET 扫描。比较了注射方法和吸入方法。考虑到溢出和部分容积效应,通过房室模型计算心脏侧壁的氧提取分数(OEF)。
与连续吸入(15)O-O(2)气体相比,PET 图像中的肺部放射性明显降低。此外,可注射(15)O-O(2)系统提供的心脏侧壁 OEF 测量值与连续吸入方法相似(bolus 注射和连续输注方法分别为 0.71 +/- 0.036 和 0.72 +/- 0.020)。
这些结果表明,可注射(15)O-O(2)有可能评估心肌氧代谢。