International audienceThe neuroscientific community today is very much interested in analyzing specific white matter bundles like the arcuate fasciculus, the corticospinal tract, or the recently discovered Aslant tract to study sex differences, lateralization and many other connectivity applications. For this reason, experts spend time manually segmenting these fascicles and bundles using streamlines obtained from diffusion MRI tractography. However, to date, there are very few computational tools available to register these fascicles directly so that they can be analyzed and their differences quantified across populations. In this paper, we introduce a novel, robust and efficient framework to align bundles of streamlines directly in the sp...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
This paper proposes a method for the registration of white matter tract bundles traced from diffusio...
Diffusion-weighted imaging (DWI) and tractography allow to study the macroscopic structure of white ...
Diffusion magnetic resonance imaging (dMRI) data allows the reconstruction of the neural pathways of...
Structural brain connectivity can be studied with the help of diffusion magnetic resonance imaging ...
Diffusion magnetic resonance imaging (dMRI) offers a unique approach to study the structural connect...
Diffusion magnetic resonance imaging (dMRI) allows to reconstruct the main pathways of axons within ...
Diffusion MRI infers information about the micro-structural architecture of the brain by probing the...
International audienceAnatomical white matter bundles vary in shape, size, length, and complexity, m...
The white matter pathways of the brain can be reconstructed as 3D polylines, called streamlines, thr...
Diffusion MRI (dMRI) data allows to reconstruct the 3D pathways of axons within the white matter of ...
Virtual delineation of white matter bundles in the human brain is of paramount importance for multip...
Accurate identification of white matter structures and segmentation of fibers into tracts is importa...
Accurate identification of white matter structures and segmentation of fibers into tracts is importa...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
This paper proposes a method for the registration of white matter tract bundles traced from diffusio...
Diffusion-weighted imaging (DWI) and tractography allow to study the macroscopic structure of white ...
Diffusion magnetic resonance imaging (dMRI) data allows the reconstruction of the neural pathways of...
Structural brain connectivity can be studied with the help of diffusion magnetic resonance imaging ...
Diffusion magnetic resonance imaging (dMRI) offers a unique approach to study the structural connect...
Diffusion magnetic resonance imaging (dMRI) allows to reconstruct the main pathways of axons within ...
Diffusion MRI infers information about the micro-structural architecture of the brain by probing the...
International audienceAnatomical white matter bundles vary in shape, size, length, and complexity, m...
The white matter pathways of the brain can be reconstructed as 3D polylines, called streamlines, thr...
Diffusion MRI (dMRI) data allows to reconstruct the 3D pathways of axons within the white matter of ...
Virtual delineation of white matter bundles in the human brain is of paramount importance for multip...
Accurate identification of white matter structures and segmentation of fibers into tracts is importa...
Accurate identification of white matter structures and segmentation of fibers into tracts is importa...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
This paper proposes a method for the registration of white matter tract bundles traced from diffusio...
Diffusion-weighted imaging (DWI) and tractography allow to study the macroscopic structure of white ...