Zhou Shan, Chen Kewei, Reiman Eric M, Li De-Min, Shan Baoci
Physical Science and Technology College, Zhengzhou University, Zhengzhou, China.
Nucl Med Commun. 2011 Dec;32(12):1121-7. doi: 10.1097/MNM.0b013e32834abd1b.
A method for defining image-derived input function (IDIF) has been introduced and evaluated for the quantification of the regional cerebral metabolic rate of glucose in positron emission tomography studies.
First, a cubic region of interest containing the carotid artery was defined. The useful voxels in this cubic region, whose time-activity curves (TACs) decrease as assessed by linear regression after the initial rapid rise (about 2 min after injection), were selected, and their TACs were averaged to obtain the raw TAC of the IDIF. The IDIF was obtained from the raw TAC after correcting for partial volume and spillover effects using two blood samples. Data from 16 human subjects were used to test the proposed method. The Patlak approach was used to calculate the net ¹⁸F-fluoro-2-deoxyglucose (FDG) clearance with plasma-derived input function and our generated IDIF.
The net FDG clearances calculated with the image-derived input function generated by our approach are consistent with those calculated with plasma-derived input function. The relative error percentages of the net FDG clearances calculated with the image-derived input function and the plasma derived input function are about 5%.
This study proposed a method to obtain the input function from the dynamic positron emission tomography images. The method was accurate and convenient to use.
已引入并评估了一种用于定义图像衍生输入函数(IDIF)的方法,以在正电子发射断层扫描研究中量化局部脑葡萄糖代谢率。
首先,定义一个包含颈动脉的立方感兴趣区域。选择该立方区域中有用的体素,其时间 - 活性曲线(TACs)在初始快速上升(注射后约2分钟)后经线性回归评估呈下降趋势,将其TACs平均以获得IDIF的原始TAC。使用两份血样校正部分容积和溢出效应后,从原始TAC获得IDIF。来自16名人类受试者的数据用于测试所提出的方法。采用Patlak方法,使用血浆衍生输入函数和我们生成的IDIF计算¹⁸F - 氟 - 2 - 脱氧葡萄糖(FDG)的净清除率。
用我们的方法生成的图像衍生输入函数计算的FDG净清除率与用血浆衍生输入函数计算的结果一致。用图像衍生输入函数和血浆衍生输入函数计算的FDG净清除率的相对误差百分比约为5%。
本研究提出了一种从动态正电子发射断层扫描图像中获取输入函数的方法。该方法准确且使用方便。