High spatial and angular resolution diffusion weighted imaging (DWI) with network analysis provides a unique framework for the study of brain structure in vivo. DWI-derived brain connectivity patterns are best characterized with graph theory using an edge weight to quantify the strength of white matter connections between gray matter nodes. Here a dimensionless, scale-invariant edge weight is introduced to measure node connectivity. This edge weight metric provides reasonable and consistent values over any size scale (e.g. rodents to humans) used to quantify the strength of connection. Firstly, simulations were used to assess the effects of tractography seed point density and random errors in the estimated fiber orientations; with sufficien...
Tractography is the only non-invasive technique which is used to reconstruct the white mat- ter stru...
Diffusion MRI-based tractography is the most commonly-used technique when inferring the structural b...
Computational network analysis provides new methods to analyze the brain’s structural organization b...
High spatial and angular resolution diffusion weighted imaging (DWI) with network analysis provides ...
Purpose: Advances in computational network analysis have enabled the characterization of topological...
PURPOSE: Advances in computational network analysis have enabled the characterization of topological...
Diffusion magnetic resonance imaging (dMRI) allows us to noninvasively investigate the microstructur...
Network neuroscience leverages diffusion-weighted magnetic resonance imaging and tractography to qua...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Structural brain networks estimated from diffusion MRI (dMRI) via tractography have been widely stud...
The anatomical connections of a brain area constrain the information it receives and the influence i...
There are many ways to model properties of the brain from magnetic resonance imaging (MRI) data. One...
Diffusion MRI‐based tractography is the most commonly‐used technique when inferring the structural b...
Diffusion MRI-based tractography is the most commonly-used technique when inferring the structural b...
The study of complex computational systems is facilitated by network maps, such as circuit diagrams....
Tractography is the only non-invasive technique which is used to reconstruct the white mat- ter stru...
Diffusion MRI-based tractography is the most commonly-used technique when inferring the structural b...
Computational network analysis provides new methods to analyze the brain’s structural organization b...
High spatial and angular resolution diffusion weighted imaging (DWI) with network analysis provides ...
Purpose: Advances in computational network analysis have enabled the characterization of topological...
PURPOSE: Advances in computational network analysis have enabled the characterization of topological...
Diffusion magnetic resonance imaging (dMRI) allows us to noninvasively investigate the microstructur...
Network neuroscience leverages diffusion-weighted magnetic resonance imaging and tractography to qua...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Structural brain networks estimated from diffusion MRI (dMRI) via tractography have been widely stud...
The anatomical connections of a brain area constrain the information it receives and the influence i...
There are many ways to model properties of the brain from magnetic resonance imaging (MRI) data. One...
Diffusion MRI‐based tractography is the most commonly‐used technique when inferring the structural b...
Diffusion MRI-based tractography is the most commonly-used technique when inferring the structural b...
The study of complex computational systems is facilitated by network maps, such as circuit diagrams....
Tractography is the only non-invasive technique which is used to reconstruct the white mat- ter stru...
Diffusion MRI-based tractography is the most commonly-used technique when inferring the structural b...
Computational network analysis provides new methods to analyze the brain’s structural organization b...