Diffusion tensor imaging (DTI) acquisitions allows the comparison of diffusion characteristics in vivo and gives a unique insight into tissue structure and pathology. However, a limitation of DTI post-processing is the as-sumption of a Gaussian distribution of diffusion in neu-ral architecture. Free water modelling aims to address this issue, and we present the second application of FA of tissue and free water mapping.peer-reviewe
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Magnetic resonance diffusion tensor imaging (DTI) is a new technique that can be used to visualize a...
Diffusion weighted imaging (DWI) has been extensively used to study the microarchitecture of white m...
Relating brain tissue properties to diffusion tensor imaging (DTI) is limited when an image voxel co...
Diffusion tensor imaging (DTI) is a technique in magnetic resonance imaging (MRI) that can be used to...
Conventional diffusion‐weighted (DW) MRI suffers from free water contamination due to the finite vox...
[[abstract]]Conventional diffusion-weighted (DW) MRI suffers from free water contamination due to th...
Diffusion tensor imaging (DTI) is a technique in magnetic resonance imaging (MRI) that can be used to...
Background: Free water (FW) in neuroimaging is non-flowing extracellular water in the cranium and br...
BackgroundFree water (FW) in neuroimaging is non-flowing extracellular water in the cranium and brai...
Diffusion tensor imaging (DTI) can be used to determine preferred directions for diffusive water mot...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Diffusion MRI measures micron scale displacement of water molecules, providing unique insight into m...
of water diffusion can be measured with fractional anisotropy (FA), a commonly derived scalar measur...
Diffusion tensor (DT) MRI applies the direction of water diffusion through tissues to map out neural...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Magnetic resonance diffusion tensor imaging (DTI) is a new technique that can be used to visualize a...
Diffusion weighted imaging (DWI) has been extensively used to study the microarchitecture of white m...
Relating brain tissue properties to diffusion tensor imaging (DTI) is limited when an image voxel co...
Diffusion tensor imaging (DTI) is a technique in magnetic resonance imaging (MRI) that can be used to...
Conventional diffusion‐weighted (DW) MRI suffers from free water contamination due to the finite vox...
[[abstract]]Conventional diffusion-weighted (DW) MRI suffers from free water contamination due to th...
Diffusion tensor imaging (DTI) is a technique in magnetic resonance imaging (MRI) that can be used to...
Background: Free water (FW) in neuroimaging is non-flowing extracellular water in the cranium and br...
BackgroundFree water (FW) in neuroimaging is non-flowing extracellular water in the cranium and brai...
Diffusion tensor imaging (DTI) can be used to determine preferred directions for diffusive water mot...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Diffusion MRI measures micron scale displacement of water molecules, providing unique insight into m...
of water diffusion can be measured with fractional anisotropy (FA), a commonly derived scalar measur...
Diffusion tensor (DT) MRI applies the direction of water diffusion through tissues to map out neural...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Magnetic resonance diffusion tensor imaging (DTI) is a new technique that can be used to visualize a...
Diffusion weighted imaging (DWI) has been extensively used to study the microarchitecture of white m...