Microstructure imaging seeks to noninvasively measure and map microscopic tissue features by pairing mathematical modeling with tailored MRI protocols. This article reviews an emerging paradigm that has the potential to provide a more detailed assessment of tissue microstructure—combined diffusion-relaxometry imaging. Combined diffusion-relaxometry acquisitions vary multiple MR contrast encodings—such as b-value, gradient direction, inversion time, and echo time—in a multidimensional acquisition space. When paired with suitable analysis techniques, this enables quantification of correlations and coupling between multiple MR parameters—such as diffusivity, (Formula presented.), (Formula presented.), and (Formula presented.). This opens the p...
Whereas diffusion NMR can probe the structural configurations of microscopic environments in biologi...
Diffusion nuclear magnetic resonance methods traditionally used within colloid and porous media scie...
Diffusion MRI is a non-invasive technique to study brain microstructure. Differences in the microstr...
Microstructure imaging seeks to noninvasively measure and map microscopic tissue features by pairing...
Microstructure imaging seeks to noninvasively measure and map microscopic tissue features by pairing...
This article gives an overview of microstructure imaging of the brain with diffusion MRI and reviews...
Diffusion weighted imaging provides a unique tool to interrogate the microstructure of living tissue...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
Whereas diffusion NMR can probe the structural configurations configurations of microscopic environ...
The emergence of multiparametric diffusion models combining diffusion and relaxometry measurements p...
The emergence of multiparametric diffusion models combining diffusion and relaxometry measurements p...
Diffusion MRI uses the random displacement of water molecules to sensitize the signal to brain micro...
Characterization of porous media is essential in a wide range of biomedical and industrial applicati...
Imaging is an indispensable tool for brain tumour diagnosis, surgical planning, and follow-up. Defin...
Thesis (Ph. D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Tech...
Whereas diffusion NMR can probe the structural configurations of microscopic environments in biologi...
Diffusion nuclear magnetic resonance methods traditionally used within colloid and porous media scie...
Diffusion MRI is a non-invasive technique to study brain microstructure. Differences in the microstr...
Microstructure imaging seeks to noninvasively measure and map microscopic tissue features by pairing...
Microstructure imaging seeks to noninvasively measure and map microscopic tissue features by pairing...
This article gives an overview of microstructure imaging of the brain with diffusion MRI and reviews...
Diffusion weighted imaging provides a unique tool to interrogate the microstructure of living tissue...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
Whereas diffusion NMR can probe the structural configurations configurations of microscopic environ...
The emergence of multiparametric diffusion models combining diffusion and relaxometry measurements p...
The emergence of multiparametric diffusion models combining diffusion and relaxometry measurements p...
Diffusion MRI uses the random displacement of water molecules to sensitize the signal to brain micro...
Characterization of porous media is essential in a wide range of biomedical and industrial applicati...
Imaging is an indispensable tool for brain tumour diagnosis, surgical planning, and follow-up. Defin...
Thesis (Ph. D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Tech...
Whereas diffusion NMR can probe the structural configurations of microscopic environments in biologi...
Diffusion nuclear magnetic resonance methods traditionally used within colloid and porous media scie...
Diffusion MRI is a non-invasive technique to study brain microstructure. Differences in the microstr...