Odano I, Ohkubo M, Takahashi M, Noguchi E, Ohtaki H, Shibaki M, Dobashi S
Department of Radiology, Niigata University School of Medicine.
Kaku Igaku. 1997 Dec;34(12):1111-7.
The purpose of the study is to develop a simple and less invasive method for quantifying regional cerebral blood flow (rCBF) using 99mTc-ECD and SPECT. By employing a microsphere model, a new method to measure rCBF was developed, which required a single arterial or venous sample instead of continuous withdrawal of arterial blood. Using a regression line, the integral of input function of arterial blood from 0 to 30 min was inferred by activity of arterial blood sampled at time t; A(t), by activity multiplied by its octanol extraction rate; AN(t), by activity of venous blood at time t; V(t), and by activity multiplied by its octanol extraction rate; VN(t). The optimum sampling time of arterial or venous blood was examined when mean % error for inference became minimum. Consequently, minimum error of AN(6 min) was 5.5%, A(3 min) was 8.9%, VN(6 min) was 5.9%, and V(20 min) was 10.0%. Quantitative measurement of rCBF using the value of VN(6 min) was performed on other 6 subjects with dementia etc. To validate the method, 133Xe inhalation SPECT studies were also performed on the same subjects. We found a good agreement between them (r = 0.851). The presented one-point sampling methods were simple and less invasive for quantifying rCBF.
本研究的目的是开发一种使用99mTc-ECD和单光子发射计算机断层扫描(SPECT)定量局部脑血流量(rCBF)的简单且侵入性较小的方法。通过采用微球模型,开发了一种测量rCBF的新方法,该方法只需采集一次动脉或静脉血样,而无需连续抽取动脉血。利用回归线,根据在时间t采集的动脉血样的放射性活度A(t)、乘以其辛醇萃取率后的放射性活度AN(t)、时间t的静脉血样的放射性活度V(t)以及乘以其辛醇萃取率后的放射性活度VN(t),推断出0至30分钟动脉血输入函数的积分。当推断的平均百分比误差最小时,检查动脉或静脉血的最佳采样时间。结果,AN(6分钟)的最小误差为5.5%,A(3分钟)为8.9%,VN(6分钟)为5.9%,V(20分钟)为10.0%。使用VN(6分钟)的值对其他6名患有痴呆症等疾病的受试者进行了rCBF的定量测量。为验证该方法,还对同一受试者进行了133Xe吸入SPECT研究。我们发现两者之间具有良好的一致性(r = 0.851)。所提出的单点采样方法对于定量rCBF而言简单且侵入性较小。