Kanno I, Iida H, Miura S, Murakami M
Department of Radiology and Nuclear Medicine, Research Institute of Brain and Blood Vessels, Akita, Japan.
J Nucl Med. 1991 Oct;32(10):1931-4.
We investigated the optimal scan time for obtaining the maximal signal-to-noise (S/N) ratio in cerebral blood flow (CBF) measured by PET imaging following 15O-water bolus injection. We performed sequential measurements with dynamic scans of six subjects injected at rest while listening to white noise. Each dynamic data set was edited into images corresponding to different scan times and were calibrated to CBF images by the table look-up method. For each scan time, we evaluated a pixel-by-pixel standard deviation of the CBF for sequential measurements. The S/N-ratio of CBF in the gray matter was 10.2 +/- 1.7 and 13.6 +/- 2.9 at a 40 and 120 sec scan time, respectively. The gain of the 120-sec over 40-sec scan time corresponds to an 80% increase in the number of trials to reach the same S/N-ratio in a stimulation-activation study. The simulation study supported the results, in which the maximal S/N-ratio of the CBF was demonstrated to be 90 and 120 sec at a CBF of 80 and 60 ml/100 ml/min, respectively. It is concluded that the optimal scan time of the 15O-water bolus injection method is in the interval from 90 to 120 sec.
我们研究了在静脉注射(^{15}O)水后通过正电子发射断层扫描(PET)成像测量脑血流量(CBF)时,获得最大信噪比(S/N)的最佳扫描时间。我们对6名在静息状态下注射并同时听白噪声的受试者进行了动态扫描的连续测量。每个动态数据集被编辑成对应不同扫描时间的图像,并通过查表法校准为CBF图像。对于每个扫描时间,我们逐像素评估连续测量的CBF的标准偏差。在40秒和120秒扫描时间时,灰质中CBF的信噪比分别为10.2±1.7和13.6±2.9。在刺激激活研究中,120秒扫描时间相对于40秒扫描时间的增益相当于达到相同信噪比所需试验次数增加了80%。模拟研究支持了该结果,其中在CBF分别为80和60 ml/100 ml/min时,CBF的最大信噪比分别在90秒和120秒时出现。结论是,(^{15}O)水团注法的最佳扫描时间在90至120秒之间。