Kamman R L, Bakker C J, van Dijk P, Stomp G P, Heiner A P, Berendsen H J
Laboratory of Physical Chemistry, University of Groningen, The Netherlands.
Magn Reson Imaging. 1987;5(5):381-92. doi: 10.1016/0730-725x(87)90127-5.
This study was undertaken to evaluate the feasibility of multiexponential relaxation data analysis to MR imaging techniques. The first part of this study contains accurate relaxation time measurements performed on a conventional spectrometer. In the second part, essentially the same measuring techniques were applied but now on standard whole body MR imaging equipment. T2 relaxation was measured using multi-echo techniques, T1 relaxation using multiple inversion recovery measurements. Manganese chloride solutions were used for verification of the single exponential model. Water and fat mixtures were considered for multi-exponentiality. Pure fat showed an intrinsic two-exponentiality in T1 and T2 relaxation. Mixtures of fat and water were analyzed and could at best be characterized by two exponentials, although at least three exponentials were known to be present. From the two-exponential fit the relative amounts of fat and water were calculated and compared with the mixture composition. Statistical criteria are discussed to discriminate between single and double exponential behavior in relaxation curves. It is concluded that the time consuming IR measurements for the determination of multiple T1 relaxation are not applicable in a clinical environment. Multiple T2 relaxation can be determined in a reasonable amount of time using multiple echo measurements in one image acquisition. It is shown that the observed values of T1 and T2 from tissues with intrinsic multiexponential relaxation behavior, measured with MR imaging or MR relaxation techniques on a whole-body imager or a conventional spectrometer, depend strongly on the way the experiments are set up and on the model accepted for data analysis.
本研究旨在评估多指数弛豫数据分析应用于磁共振成像技术的可行性。本研究的第一部分包含在传统光谱仪上进行的精确弛豫时间测量。在第二部分中,应用了基本相同的测量技术,但这次是在标准的全身磁共振成像设备上。使用多回波技术测量T2弛豫,使用多次反转恢复测量来测量T1弛豫。使用氯化锰溶液验证单指数模型。考虑水和脂肪混合物的多指数特性。纯脂肪在T1和T2弛豫中表现出固有的双指数特性。对脂肪和水的混合物进行了分析,尽管已知至少存在三个指数,但充其量只能用两个指数来表征。通过双指数拟合计算脂肪和水的相对含量,并与混合物组成进行比较。讨论了区分弛豫曲线中单指数和双指数行为的统计标准。得出结论,用于确定多个T1弛豫的耗时IR测量不适用于临床环境。在一次图像采集中使用多次回波测量可以在合理的时间内确定多个T2弛豫。结果表明,在全身成像仪或传统光谱仪上使用磁共振成像或磁共振弛豫技术测量的具有固有多指数弛豫行为的组织的T1和T2观测值,在很大程度上取决于实验的设置方式以及用于数据分析所接受的模型。