MRI tractography is the mapping of neural fiber pathways based on diffusion MRI of tissue diffusion anisotropy. Tractography based on diffusion tensor imaging (DTI) cannot directly image multiple fiber orientations within a single voxel. To address this limitation, diffusion spectrum MRI ( DSI) and related methods were developed to image complex distributions of intravoxel fiber orientation. Here we demonstrate that tractography based on DSI has the capacity to image crossing fibers in neural tissue. DSI was performed in formalin-fixed brains of adult macaque and in the brains of healthy human subjects. Fiber tract solutions were constructed by a streamline procedure, following directions of maximum diffusion at every point, and analyzed in...
Abstract: Diffusion tensor MRI provides unique directional diffusion information that can be used to...
Diffusion imaging can be used to estimate the routes taken by fiber pathways connecting different re...
International audienceNew magnetic resonance imaging processing tools allow white-matter fiber bundl...
MRI tractography is the mapping of neural fiber pathways based on diffusion MRI of tissue diffusion ...
Brain fiber tracking is a very challenging issue as we need to solve a difficult inverse problem i.e...
Diffusion-weighted (DW) magnetic resonance imaging allows the quantification of water diffusion with...
Diffusion tensor imaging (DTI) has become a popular tool for noninvasively investigating fiber tract...
Diffusion-weighted (DW) magnetic resonance imaging allows the quantification of water diffusion with...
The ability of fiber tractography to delineate non-invasively the white matter fiber pathways of the...
Magnetic resonance diffusion tensor tractography is a powerful tool for the non-invasive depiction o...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
Diffusion MRI is an imaging technique that is very sensitive to microstructural changes in tissue. D...
Methods are presented to map complex fiber architectures in tissues by imaging the 3D spectra of tis...
Diffusion weighted imaging (DWI) has provided unparalleled insight into the microscopic structure an...
<div><p>In recent years, several new diffusion MRI approaches have been proposed to explore microstr...
Abstract: Diffusion tensor MRI provides unique directional diffusion information that can be used to...
Diffusion imaging can be used to estimate the routes taken by fiber pathways connecting different re...
International audienceNew magnetic resonance imaging processing tools allow white-matter fiber bundl...
MRI tractography is the mapping of neural fiber pathways based on diffusion MRI of tissue diffusion ...
Brain fiber tracking is a very challenging issue as we need to solve a difficult inverse problem i.e...
Diffusion-weighted (DW) magnetic resonance imaging allows the quantification of water diffusion with...
Diffusion tensor imaging (DTI) has become a popular tool for noninvasively investigating fiber tract...
Diffusion-weighted (DW) magnetic resonance imaging allows the quantification of water diffusion with...
The ability of fiber tractography to delineate non-invasively the white matter fiber pathways of the...
Magnetic resonance diffusion tensor tractography is a powerful tool for the non-invasive depiction o...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
Diffusion MRI is an imaging technique that is very sensitive to microstructural changes in tissue. D...
Methods are presented to map complex fiber architectures in tissues by imaging the 3D spectra of tis...
Diffusion weighted imaging (DWI) has provided unparalleled insight into the microscopic structure an...
<div><p>In recent years, several new diffusion MRI approaches have been proposed to explore microstr...
Abstract: Diffusion tensor MRI provides unique directional diffusion information that can be used to...
Diffusion imaging can be used to estimate the routes taken by fiber pathways connecting different re...
International audienceNew magnetic resonance imaging processing tools allow white-matter fiber bundl...