Meyer E, Tyler J L, Thompson C J, Redies C, Diksic M, Hakim A M
J Cereb Blood Flow Metab. 1987 Aug;7(4):403-14. doi: 10.1038/jcbfm.1987.83.
This study shows that regional CMRO2 can be estimated by means of nonlinear regression using dynamic positron emission tomographic data acquired during 1 min following single-bolus inhalation of 15O2. The feasibility of simultaneous estimation of CBF, cerebral blood volume (CBV), oxygen extraction ratio (OER), and CMRO2 was assessed by simulations using the model of Mintun et al. Four oxygen metabolic measurements, each consisting of a CBF, CBV, and 15O2 bolus study, were carried out on three volunteers. Regional values for CBF, CBV, OER, and CMRO2 were derived in two ways: from the fits of the time-activity curves of the dynamic 15O2 bolus study alone [CMRO2(fit)] and from the three separate studies [CMRO2 (control)]. For the 56 regions of interest analyzed, using a fit interval of 60 s, CMRO2(fit) was 93.4 +/- 7.8% of CMRO2(control) (mean +/- SD) with a correlation coefficient of r = 0.95. CMRO2(control) ranged from 87 to 290 mumol/min/100 g. Individual simultaneous estimates of CBF, CBV, and OER were not reliable. Finally, we found that the validity of the model was limited in practice to the first minute after tracer inhalation.
本研究表明,使用单次团注吸入(^{15}O_2)后1分钟内采集的动态正电子发射断层扫描数据,通过非线性回归可以估算局部脑氧代谢率(CMRO2)。使用Mintun等人的模型进行模拟,评估了同时估算脑血流量(CBF)、脑血容量(CBV)、氧摄取率(OER)和CMRO2的可行性。对三名志愿者进行了四项氧代谢测量,每项测量均包括一次CBF、CBV和(^{15}O_2)团注研究。CBF、CBV、OER和CMRO2的局部值通过两种方式得出:仅来自动态(^{15}O_2)团注研究的时间-活性曲线拟合[CMRO2(拟合)]以及来自三项单独研究[CMRO2(对照)]。对于分析的56个感兴趣区域,使用60秒的拟合间隔,CMRO2(拟合)为CMRO2(对照)的93.4±7.8%(平均值±标准差),相关系数r = 0.95。CMRO2(对照)范围为87至290 μmol/min/100 g。CBF、CBV和OER的个体同时估计值不可靠。最后,我们发现该模型在实践中的有效性仅限于示踪剂吸入后的第一分钟。