[[abstract]]Conventional diffusion-weighted (DW) MRI suffers from free water contamination due to the finite voxel size. The most common case of free water contamination occurs with cerebrospinal fluid (CSF) in voxels located at the CSF-tissue interface, such as at the ventricles in the human brain. Another case refers to intra-tissue free water as in vasogenic oedema. In order to avoid the bias in diffusion metrics, several multi-compartment methods have been introduced, which explicitly model the presence of a free water compartment. However, fitting multi-compartment models in DW MRI represents a well known ill conditioned problem. Although during the last decade great effort has been devoted to mitigating this estimation problem, the re...
Diffusion-weighted imaging (DWI or DW-MRI) is a widely applied and clinically important MRI techniqu...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
[[abstract]]Conventional diffusion-weighted (DW) MRI suffers from free water contamination due to th...
Conventional diffusion‐weighted (DW) MRI suffers from free water contamination due to the finite vox...
Relating brain tissue properties to diffusion tensor imaging (DTI) is limited when an image voxel co...
This work deals with the analysis of water diffusion in model and in vivo brain tissues by means of ...
The diffusion-weighted magnetic resonance imaging (dMRI) signal measured in vivo arises from multipl...
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...
Diffusion tensor imaging (DTI) acquisitions allows the comparison of diffusion characteristics in vi...
Magnetic resonance imaging or MRI is a powerful medical imaging technique. This non-invasive techniq...
BackgroundFree water (FW) in neuroimaging is non-flowing extracellular water in the cranium and brai...
Purpose: The compartmental nature of brain tissue microstructure is typically studied by diffusion M...
The assessment of the free water fraction in the brain provides important information about extracel...
Diffusion-weighted imaging (DWI or DW-MRI) is a widely applied and clinically important MRI techniqu...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
[[abstract]]Conventional diffusion-weighted (DW) MRI suffers from free water contamination due to th...
Conventional diffusion‐weighted (DW) MRI suffers from free water contamination due to the finite vox...
Relating brain tissue properties to diffusion tensor imaging (DTI) is limited when an image voxel co...
This work deals with the analysis of water diffusion in model and in vivo brain tissues by means of ...
The diffusion-weighted magnetic resonance imaging (dMRI) signal measured in vivo arises from multipl...
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...
Diffusion tensor imaging (DTI) acquisitions allows the comparison of diffusion characteristics in vi...
Magnetic resonance imaging or MRI is a powerful medical imaging technique. This non-invasive techniq...
BackgroundFree water (FW) in neuroimaging is non-flowing extracellular water in the cranium and brai...
Purpose: The compartmental nature of brain tissue microstructure is typically studied by diffusion M...
The assessment of the free water fraction in the brain provides important information about extracel...
Diffusion-weighted imaging (DWI or DW-MRI) is a widely applied and clinically important MRI techniqu...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...
Free water elimination (FWE) in brain diffusion MRI has been shown to improve tissue specificity in ...