International audienceDiffusion magnetic resonance imaging (dMRI) is an important method for studying white matter connectivity in the brain in vivo in both healthy and clinical populations. Improvements in dMRI tractography algorithms, which reconstruct macroscopic three-dimensional white matter fiber pathways, have allowed for methodological advances in the study of white matter; however, insufficient attention has been paid to comparing post-tractography methods that extract white matter fiber tracts of interest from whole-brain tractography. Here we conduct a comparison of three representative and conceptually distinct approaches to fiber tract delineation: 1) a manual multiple region of interest-based approach, 2) an atlas-based approa...
Diffusion Tensor Imaging (DTI) tractography and functional Magnetic Resonance Imaging (fMRI) investi...
Structural delineation and assignment are the fundamental steps in understanding the anatomy of the ...
We propose a method for the automated identification of key white matter fiber tracts for neurosurgi...
International audienceDiffusion magnetic resonance imaging (dMRI) is an important method for studyin...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
International audienceWhite matter fiber bundles of the brain can be delineated by tractography util...
Introduction: MR diffusion tensor imaging (DTI) is the most powerful and currentlythe only way to vi...
International audienceWhite matter (WM) fiber bundles of the brain can be delineated by diffusion tr...
We compare two strategies for modeling the connections of the brain's white matter: fiber clustering...
<p>Fiber tractography is performed to generate streamlines that approximate the underlying axonal pa...
The position and extent of individual fiber tracts within the white matter of human brains can be id...
MR diffusion tensor imaging (DTI) can measure and visualize organization of white matter fibre tract...
Diffusion Tensor Imaging (DTI) tractography and functional Magnetic Resonance Imaging (fMRI) investi...
Structural delineation and assignment are the fundamental steps in understanding the anatomy of the ...
We propose a method for the automated identification of key white matter fiber tracts for neurosurgi...
International audienceDiffusion magnetic resonance imaging (dMRI) is an important method for studyin...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
International audienceWhite matter fiber bundles of the brain can be delineated by tractography util...
Introduction: MR diffusion tensor imaging (DTI) is the most powerful and currentlythe only way to vi...
International audienceWhite matter (WM) fiber bundles of the brain can be delineated by diffusion tr...
We compare two strategies for modeling the connections of the brain's white matter: fiber clustering...
<p>Fiber tractography is performed to generate streamlines that approximate the underlying axonal pa...
The position and extent of individual fiber tracts within the white matter of human brains can be id...
MR diffusion tensor imaging (DTI) can measure and visualize organization of white matter fibre tract...
Diffusion Tensor Imaging (DTI) tractography and functional Magnetic Resonance Imaging (fMRI) investi...
Structural delineation and assignment are the fundamental steps in understanding the anatomy of the ...
We propose a method for the automated identification of key white matter fiber tracts for neurosurgi...