Contains fulltext : 235732.pdf (Publisher’s version ) (Open Access)Multi-echo gradient echo (ME-GRE) magnetic resonance signal evolution in white matter has a strong dependence on the orientation of myelinated axons with respect to the main static field. Although analytical solutions have been able to predict some of the white matter (WM) signal behaviour of the hollow cylinder model, it has been shown that realistic models of WM offer a better description of the signal behaviour observed. In this work, we present a pipeline to (i) generate realistic 2D WM models with their microstructure based on real axon morphology with adjustable fiber volume fraction (FVF) and g-ratio. We (ii) simulate their interaction with the stati...
Purpose: Previously, an artificial neural network method was introduced to estimate quantitative mye...
The ability to map brain microstructures such as axonal fibers and myelin content is critical in imp...
The diffusion of water molecules in white matter is highly anisotropic because of the unique anatomi...
Multi-echo gradient echo (ME-GRE) magnetic resonance signal evolution in white matter has a strong d...
Biophysical modeling can be combined with magnetic resonance imaging (MRI) to measure microstructura...
The microscopic structure of neuronal tissue is crucial to brain function, with axon diameter, axona...
Magnetic Resonance Imaging allows electromagnetic properties of the brain to be measured in vivo, pr...
AbstractThe microscopic structure of neuronal tissue is crucial to brain function, with axon diamete...
PURPOSE: To investigate the effect of realistic microstructural geometry on the susceptibility-weigh...
Recent studies have shown that there is a direct link between the orientation of the nerve fibers in...
The finite element methods were widely utilized in White Matter (WM) modeling to predict and analyze...
Non-invasive virtual histology of white matter tissues is the ultimate promise of diffusion-weighted...
Non-invasive virtual histology of white matter tissues is the ultimate promise of diffusion-weighted...
Some microstructure parameters, such as permeability, remain elusive because mathematical models tha...
Purpose: Previously, an artificial neural network method was introduced to estimate quantitative mye...
The ability to map brain microstructures such as axonal fibers and myelin content is critical in imp...
The diffusion of water molecules in white matter is highly anisotropic because of the unique anatomi...
Multi-echo gradient echo (ME-GRE) magnetic resonance signal evolution in white matter has a strong d...
Biophysical modeling can be combined with magnetic resonance imaging (MRI) to measure microstructura...
The microscopic structure of neuronal tissue is crucial to brain function, with axon diameter, axona...
Magnetic Resonance Imaging allows electromagnetic properties of the brain to be measured in vivo, pr...
AbstractThe microscopic structure of neuronal tissue is crucial to brain function, with axon diamete...
PURPOSE: To investigate the effect of realistic microstructural geometry on the susceptibility-weigh...
Recent studies have shown that there is a direct link between the orientation of the nerve fibers in...
The finite element methods were widely utilized in White Matter (WM) modeling to predict and analyze...
Non-invasive virtual histology of white matter tissues is the ultimate promise of diffusion-weighted...
Non-invasive virtual histology of white matter tissues is the ultimate promise of diffusion-weighted...
Some microstructure parameters, such as permeability, remain elusive because mathematical models tha...
Purpose: Previously, an artificial neural network method was introduced to estimate quantitative mye...
The ability to map brain microstructures such as axonal fibers and myelin content is critical in imp...
The diffusion of water molecules in white matter is highly anisotropic because of the unique anatomi...