Diffusional kurtosis imaging: The quantification of non‐gaussian water diffusion by means of magnetic resonance imaging
Jens H. Jensen, Joseph A. Helpern, Anita Ramani, Hanzhang Lu, Kyle Kaczynski
Magnetic Resonance in Medicine
Abstract
A magnetic resonance imaging method is presented for quantifying the degree to which water diffusion in biologic tissues is non-Gaussian. Since tissue structure is responsible for the deviation of water diffusion from the Gaussian behavior typically observed in homogeneous solutions, this method provides a specific measure of tissue structure, such as cellular compartments and membranes. The method is an extension of conventional diffusion-weighted imaging that requires the use of somewhat higher b values and a modified image postprocessing procedure. In addition to the diffusion coefficient, the method provides an estimate for the excess kurtosis of the diffusion displacement probability distribution, which is a dimensionless metric of the departure from a Gaussian form. From the study of