© 2020 The Authors Measuring fibre dispersion in white matter with diffusion magnetic resonance imaging (MRI) is limited by an inherent degeneracy between fibre dispersion and microscopic diffusion anisotropy (i.e., the diffusion anisotropy expected for a single fibre orientation). This means that estimates of fibre dispersion rely on strong assumptions, such as constant microscopic anisotropy throughout the white matter or specific biophysical models. Here we present a simple approach for resolving this degeneracy using measurements that combine linear (conventional) and spherical tensor diffusion encoding. To test the accuracy of the fibre dispersion when our microstructural model is only an approximation of the true tissue structure, we ...
Diffusion-weighted magnetic resonance imaging (DW-MRI) is a non-invasive technique to probe tissue m...
Diffusion MRI allows us to make inferences on the structural organisation of the brain by mapping wa...
Diffusion-weighted (DW) MR images contain information about the orientation of brain white matter fi...
Measuring fibre dispersion in white matter with diffusion magnetic resonance imaging (MRI) is limite...
Diffusion MRI is an exquisitely sensitive probe of tissue microstructure, and is currently the only ...
Diffusion weighted ( DW ) MRI facilitates non-invasive quantification of tissue microstructure and, ...
Axons in white matter have been shown to have varying geometries within a bundle using ex vivo imagi...
The combination of diffusion MRI (dMRI) with microscopy provides unique opportunities to study micro...
AbstractDiffusion weighted (DW) MRI facilitates non-invasive quantification of tissue microstructure...
In this article, we highlight an issue that arises when using multiple b‐values in a model‐based ana...
Diffusion tensor imaging (DTI) is a non-invasive quantitative method of characterizing tissue micro-...
The white matter of the brain contains all the connections between different parts of the grey matte...
Diffusion MRI (dMRI) measurements are used for inferring the microstructural properties of white mat...
Water diffusion anisotropy in the human brain is affected by disease, trauma, and development. Micro...
Diffusion-weighted magnetic resonance imaging (DW-MRI) is a non-invasive technique to probe tissue m...
Diffusion-weighted magnetic resonance imaging (DW-MRI) is a non-invasive technique to probe tissue m...
Diffusion MRI allows us to make inferences on the structural organisation of the brain by mapping wa...
Diffusion-weighted (DW) MR images contain information about the orientation of brain white matter fi...
Measuring fibre dispersion in white matter with diffusion magnetic resonance imaging (MRI) is limite...
Diffusion MRI is an exquisitely sensitive probe of tissue microstructure, and is currently the only ...
Diffusion weighted ( DW ) MRI facilitates non-invasive quantification of tissue microstructure and, ...
Axons in white matter have been shown to have varying geometries within a bundle using ex vivo imagi...
The combination of diffusion MRI (dMRI) with microscopy provides unique opportunities to study micro...
AbstractDiffusion weighted (DW) MRI facilitates non-invasive quantification of tissue microstructure...
In this article, we highlight an issue that arises when using multiple b‐values in a model‐based ana...
Diffusion tensor imaging (DTI) is a non-invasive quantitative method of characterizing tissue micro-...
The white matter of the brain contains all the connections between different parts of the grey matte...
Diffusion MRI (dMRI) measurements are used for inferring the microstructural properties of white mat...
Water diffusion anisotropy in the human brain is affected by disease, trauma, and development. Micro...
Diffusion-weighted magnetic resonance imaging (DW-MRI) is a non-invasive technique to probe tissue m...
Diffusion-weighted magnetic resonance imaging (DW-MRI) is a non-invasive technique to probe tissue m...
Diffusion MRI allows us to make inferences on the structural organisation of the brain by mapping wa...
Diffusion-weighted (DW) MR images contain information about the orientation of brain white matter fi...