Basser P J, Mattiello J, LeBihan D
Biomedical Engineering and Instrumentation Program, Warren G. Magnuson Clinical Center, National Institutes of Health, Bethesda, Maryland 20892.
J Magn Reson B. 1994 Mar;103(3):247-54. doi: 10.1006/jmrb.1994.1037.
The diagonal and off-diagonal elements of the effective self-diffusion tensor, Deff, are related to the echo intensity in an NMR spin-echo experiment. This relationship is used to design experiments from which Deff is estimated. This estimate is validated using isotropic and anisotropic media, i.e., water and skeletal muscle. It is shown that significant errors are made in diffusion NMR spectroscopy and imaging of anisotropic skeletal muscle when off-diagonal elements of Deff are ignored, most notably the loss of information needed to determine fiber orientation. Estimation of Deff provides the theoretical basis for a new MRI modality, diffusion tensor imaging, which provides information about tissue microstructure and its physiologic state not contained in scalar quantities such as T1, T2, proton density, or the scalar apparent diffusion constant.
有效自扩散张量Deff的对角元和非对角元与核磁共振自旋回波实验中的回波强度相关。这种关系被用于设计估算Deff的实验。使用各向同性和各向异性介质,即水和骨骼肌,对该估算进行了验证。结果表明,在对各向异性骨骼肌进行扩散核磁共振波谱分析和成像时,如果忽略Deff的非对角元,会产生显著误差,最明显的是失去了确定纤维取向所需的信息。Deff的估算为一种新的磁共振成像模式——扩散张量成像提供了理论基础,该成像模式可提供关于组织微观结构及其生理状态的信息,而这些信息并不包含在诸如T1、T2、质子密度或标量表观扩散常数等量值中。