Characterizing intra-axonal water diffusion with direction-averaged triple diffusion encoding MRI

被引:16
作者
Jensen, Jens H. [1 ,2 ,3 ]
Helpern, Joseph A. [1 ,2 ,3 ,4 ]
机构
[1] Med Univ South Carolina, Dept Neurosci, Basic Sci Bldg,MSC 510,173 Ashley Ave,Suite 403, Charleston, SC 29425 USA
[2] Med Univ South Carolina, Ctr Biomed Engn, Charleston, SC 29425 USA
[3] Med Univ South Carolina, Dept Radiol & Radiol Sci, Charleston, SC 29425 USA
[4] Med Univ South Carolina, Dept Neurol, Charleston, SC 29425 USA
关键词
brain; diffusion MRI; direction averaged; high b-value; intra-axonal; pulse sequence; water fraction; white matter; WHITE-MATTER; COMPARTMENT MODELS; NMR; SIGNAL; PROPAGATION; DENSITY;
D O I
10.1002/nbm.3930
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
For large diffusion weightings, the direction-averaged diffusion MRI (dMRI) signal from white matter is typically dominated by the contribution of water confined to axons. This fact can be exploited to characterize intra-axonal diffusion properties, which may be valuable for interpreting the biophysical meaning of diffusion changes associated with pathology. However, using just the classic Stejskal-Tanner pulse sequence, it has proven challenging to obtain reliable estimates for both the intrinsic intra-axonal diffusivity and the intra-axonal water fraction. Here we propose to apply a modification of the Stejskal-Tanner sequence designed for achieving such estimates. The key feature of the sequence is the addition of a set of extra diffusion encoding gradients that are orthogonal to the direction of the primary gradients, which corresponds to a specific type of triple diffusion encoding (TDE) MRI sequence. Given direction-averaged dMRI data for this TDE sequence, it is shown how the intra-axonal diffusivity and the intra-axonal water fraction can be determined by applying simple, analytic formulae. The method is illustrated with numerical simulations, which suggest that it should be accurate for b-values of about 4000s/mm(2) or higher.
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页数:11
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