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Non-invasive estimation of hepatic blood perfusion from H215O-PET images using tissue-derived arterial and portal input functions

机译:使用组织来源的动脉和门静脉输入功能从H215O-PET图像中无创估计肝血流灌注

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摘要

The liver is perfused through the portal vein and the hepatic artery. When its perfusion is assessed using PET and 15O-labeled water (H215O), calculations require a dual blood input function (DIF), i.e., arterial and portal blood activity curves. The former can be generally obtained invasively, but blood withdrawal from the portal vein is not feasible in humans. The aim of the present study was to develop a new technique to estimate quantitative liver perfusion from H215O-PET images with a completely noninvasive approach. We studied normal pigs (n=14), in which arterial and portal blood tracer concentrations and Doppler ultrasonography flow rates were determined invasively to serve as reference measurements. Our technique consisted of using model DIF to create tissue model function, and the latter to simultaneously fit multiple liver time-activity curves from images. The parameters obtained reproduced the DIF. Simulation studies were performed to examine the magnitude of potential biases in the flow values, and to optimize the extraction of multiple tissue curves from the image. The simulation showed the error associated with assumed parameters was <10%, and the optimal number of tissue curves was between 10 and 20. The estimated DIFs were well reproduced against the measured ones. In addition, the calculated liver perfusion values were not different between the methods and showed a tight correlation (r=0.90). In conclusion, our results demonstrate DIF can be estimated directly from tissue curves obtained through H215O-PET imaging. This suggests the possibility to enable completely noninvasive technique to assess liver perfusion in patho-physiological studies.
机译:通过门静脉和肝动脉灌注肝脏。使用PET和 15 O标记的水(H2 15 O)评估其灌注时,计算需要双重血液输入功能(DIF),即动脉和门静脉血活动曲线。前者通常可以通过侵入性方式获得,但从门静脉抽血对人体不可行。本研究的目的是开发一种新技术,以完全无创的方法从H2 15 O-PET图像估计定量肝灌注。我们研究了正常猪(n = 14),其中侵入性地确定了动脉和门静脉血示踪剂浓度以及多普勒超声流速,以作为参考测量。我们的技术包括使用模型DIF创建组织模型功能,并使用后者同时拟合图像中的多个肝脏时间活动曲线。获得的参数复制了DIF。进行了仿真研究,以检查流量值中潜在偏差的大小,并优化从图像中提取多个组织曲线的过程。仿真显示,与假定参数相关的误差小于10%,最佳组织曲线数在10到20之间。相对于测量值,可以很好地再现估计的DIF。此外,计算的肝灌注值在两种方法之间没有差异,并显示出紧密的相关性(r = 0.90)。总之,我们的结果表明,可以直接通过H2 15 O-PET成像获得的组织曲线估算DIF。这表明在病理生理研究中启用完全无创技术评估肝脏灌注的可能性。

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