Hsu Li-Yueh, Rhoads Kenneth L, Holly Jessica E, Kellman Peter, Aletras Anthony H, Arai Andrew E
Laboratory of Cardiac Energetics, National Heart Lung and Blood Institute, National Institutes of Health/DHHS, 10 Center Drive, Bethesda, MD 20892, USA.
J Magn Reson Imaging. 2006 Mar;23(3):315-22. doi: 10.1002/jmri.20502.
To compare fully quantitative and semiquantitative analysis of rest and stress myocardial blood flow (MBF) and myocardial perfusion reserve (MPR) using a dual-bolus first-pass perfusion MRI method in humans.
Rest and dipyridamole stress perfusion imaging was performed on 10 healthy humans by administering gadolinium contrast using a dual-bolus protocol. Ventricular and myocardial time-signal intensity curves were generated from a series of T1-weighted images and adjusted for surface-coil intensity variations. Corrected signal intensity curves were then fitted using fully quantitative model constrained deconvolution (MCD) to quantify MBF (mL/min/g) and MPR. The results were compared with semiquantitative contrast enhancement ratio (CER) and upslope index (SLP) measurements.
MBF (mL/min/g) estimated with MCD averaged 1.02 +/- 0.22 at rest and 3.39 +/- 0.59 for stress with no overlap in measures. MPR was 3.43 +/- 0.71, 1.91 +/- 0.65, and 1.16 +/- 0.19 using MCD, SLP, and CER. Both semiquantitative parameters (SLP and CER) significantly underestimated MPR (P < 0.001) and failed to completely discriminate rest and stress perfusion.
Rest and stress MBF (mL/min/g) and MPR estimated by dual-bolus perfusion MRI fit within published ranges. Semiquantitative methods (SLP and CER) significantly underestimated MPR.
采用双团注首过灌注磁共振成像方法,比较人体静息和负荷状态下心肌血流量(MBF)及心肌灌注储备(MPR)的全定量和半定量分析。
对10名健康受试者采用双团注方案静脉注射钆对比剂,分别进行静息和双嘧达莫负荷灌注成像。从一系列T1加权图像生成心室和心肌时间-信号强度曲线,并针对表面线圈强度变化进行校正。然后使用全定量模型约束反卷积(MCD)对校正后的信号强度曲线进行拟合,以量化MBF(毫升/分钟/克)和MPR。将结果与半定量对比增强率(CER)和斜率指数(SLP)测量值进行比较。
采用MCD估算的静息MBF(毫升/分钟/克)平均为1.02±0.22,负荷状态下为3.39±0.59,测量值无重叠。使用MCD、SLP和CER测得的MPR分别为3.43±0.71、1.91±0.65和1.16±0.19。两个半定量参数(SLP和CER)均显著低估了MPR(P<0.001),且未能完全区分静息和负荷灌注。
双团注灌注磁共振成像估算的静息和负荷MBF(毫升/分钟/克)及MPR在已发表的范围内。半定量方法(SLP和CER)显著低估了MPR。