Accurate digital representation of major white matter bundles in the brain is an important goal in neuroscience image computing since the representations can be used for surgical planning, intra-patient longitudinal analysis and inter-subject population connectivity studies. Reconstructing desired fiber bundles generally involves manual selection of regions of interest by an expert, which is subject to user bias and fatigue, hence an automation is desirable. To that end, we first present a novel anatomical representation based on Neighborhood Resolved Fiber Orientation Distributions (NRFOD) along the fibers. The resolved fiber orientations are obtained by generalized q-sampling imaging (GQI) and a subsequent diffusion decomposition method. ...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Fiber tracking is the most popular technique for creating white matter connectivity maps from diffus...
<p>Fiber tractography is performed to generate streamlines that approximate the underlying axonal pa...
Accurate digital representation of major white matter bundles in the brain is an important goal in n...
White matter fibers constitute the main information transfer network of the brain and their accurate...
By acquiring high angular resolution diffusion weighted magnetic resonance images (HARDI), Q-Ball an...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Using high angular resolution diffusion-weighted images, spherical deconvolution enables multiple wh...
Diffusion tensor magnetic resonance imaging (DTI) provides a promising way of estimating the neural ...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
International audienceWhite matter fiber bundles of the brain can be delineated by tractography util...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Fiber tracking is the most popular technique for creating white matter connectivity maps from diffus...
<p>Fiber tractography is performed to generate streamlines that approximate the underlying axonal pa...
Accurate digital representation of major white matter bundles in the brain is an important goal in n...
White matter fibers constitute the main information transfer network of the brain and their accurate...
By acquiring high angular resolution diffusion weighted magnetic resonance images (HARDI), Q-Ball an...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Using high angular resolution diffusion-weighted images, spherical deconvolution enables multiple wh...
Diffusion tensor magnetic resonance imaging (DTI) provides a promising way of estimating the neural ...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
International audienceWhite matter fiber bundles of the brain can be delineated by tractography util...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Fiber tracking is the most popular technique for creating white matter connectivity maps from diffus...
<p>Fiber tractography is performed to generate streamlines that approximate the underlying axonal pa...