The anisotropy of water diffusion in brain tissue is affected by both disease and development. This change can be detected using diffusion MRI and is often quantified by the fractional anisotropy (FA) derived from diffusion tensor imaging (DTI). Although FA is sensitive to anisotropic cell structures, such as axons, it is also sensitive to their orientation dispersion. This is a major limitation to the use of FA as a biomarker for "tissue integrity", especially in regions of complex microarchitecture. In this work, we seek to circumvent this limitation by disentangling the effects of microscopic diffusion anisotropy from the orientation dispersion. The microscopic fractional anisotropy (mu FA) and the order parameter (OP) were calculated fr...
In diffusion tensor magnetic resonance imaging (DT-MRI), limitations concerning complex fiber archit...
In diffusion tensor magnetic resonance imaging ( DT-MRI ), limitations concerning complex fiber arch...
Complex materials are ubiquitous in science, engineering and nature. One important parameter for cha...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
AbstractThe anisotropy of water diffusion in brain tissue is affected by both disease and developmen...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Anisotropic diffusion in the nervous system is most commonly modeled by apparent diffusion tensor, w...
In diffusion MRI (dMRI), microscopic diffusion anisotropy can be obscured by orientation dispersion....
In diffusion MRI (dMRI), microscopic diffusion anisotropy can be obscured by orientation dispersion....
The micro-architecture of brain tissue obstructs the movement of diffusing water molecules, causing ...
In diffusion tensor magnetic resonance imaging (DT-MRI), limitations concerning complex fiber archit...
In diffusion tensor magnetic resonance imaging (DT-MRI), limitations concerning complex fiber archit...
In diffusion tensor magnetic resonance imaging ( DT-MRI ), limitations concerning complex fiber arch...
Complex materials are ubiquitous in science, engineering and nature. One important parameter for cha...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
AbstractThe anisotropy of water diffusion in brain tissue is affected by both disease and developmen...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Anisotropic diffusion in the nervous system is most commonly modeled by apparent diffusion tensor, w...
In diffusion MRI (dMRI), microscopic diffusion anisotropy can be obscured by orientation dispersion....
In diffusion MRI (dMRI), microscopic diffusion anisotropy can be obscured by orientation dispersion....
The micro-architecture of brain tissue obstructs the movement of diffusing water molecules, causing ...
In diffusion tensor magnetic resonance imaging (DT-MRI), limitations concerning complex fiber archit...
In diffusion tensor magnetic resonance imaging (DT-MRI), limitations concerning complex fiber archit...
In diffusion tensor magnetic resonance imaging ( DT-MRI ), limitations concerning complex fiber arch...
Complex materials are ubiquitous in science, engineering and nature. One important parameter for cha...