Advanced Imaging Research Center, University of Texas Southwestern Medical Center, Dallas, Texas, USA.
Magn Reson Med. 2012 Jan;67(1):42-9. doi: 10.1002/mrm.22970. Epub 2011 May 16.
Recently, a T(2) -Relaxation-Under-Spin-Tagging (TRUST) MRI technique was developed to quantitatively estimate blood oxygen saturation fraction (Y) via the measurement of pure blood T(2) . This technique has shown promise for normalization of fMRI signals, for the assessment of oxygen metabolism, and in studies of cognitive aging and multiple sclerosis. However, a human validation study has not been conducted. In addition, the calibration curve used to convert blood T(2) to Y has not accounted for the effects of hematocrit (Hct). In this study, we first conducted experiments on blood samples under physiologic conditions, and the Carr-Purcell-Meiboom-Gill T(2) was determined for a range of Y and Hct values. The data were fitted to a two-compartment exchange model to allow the characterization of a three-dimensional plot that can serve to calibrate the in vivo data. Next, in a validation study in humans, we showed that arterial Y estimated using TRUST MRI was 0.837 ± 0.036 (N=7) during the inhalation of 14% O2, which was in excellent agreement with the gold-standard Y values of 0.840 ± 0.036 based on Pulse-Oximetry. These data suggest that the availability of this calibration plot should enhance the applicability of T(2) -Relaxation-Under-Spin-Tagging MRI for noninvasive assessment of cerebral blood oxygenation.
最近,一种 T(2) -Relaxation-Under-Spin-Tagging (TRUST) MRI 技术被开发出来,通过测量纯血 T(2) 来定量估计血氧饱和度分数 (Y)。该技术已显示出在 fMRI 信号归一化、评估氧代谢以及认知老化和多发性硬化症研究中的应用前景。然而,尚未进行人体验证研究。此外,用于将血液 T(2) 转换为 Y 的校准曲线尚未考虑到血细胞比容 (Hct) 的影响。在这项研究中,我们首先在生理条件下对血液样本进行了实验,确定了一系列 Y 和 Hct 值的 Carr-Purcell-Meiboom-Gill T(2)。数据拟合到双室交换模型中,以允许对可用于校准体内数据的三维图进行特征描述。接下来,在人体验证研究中,我们表明,在吸入 14% O2 期间,使用 TRUST MRI 估计的动脉 Y 值为 0.837 ± 0.036(N=7),与基于脉搏血氧仪的金标准 Y 值 0.840 ± 0.036 非常吻合。这些数据表明,该校准图的可用性应增强 T(2) -Relaxation-Under-Spin-Tagging MRI 对脑血氧无创评估的适用性。