Accurate identification of white matter structures and segmentation of fibers into tracts is important in neuroimaging and has many potential applications. Even so, it is not trivial because whole brain tractography generates hundreds of thousands of streamlines that include many false positive fibers. We developed and tested an automatic tract labeling algorithm to segment anatomically meaningful tracts from diffusion weighted images. Our multi-atlas method incorporates information from multiple hand-labeled fiber tract atlases. In validations, we showed that the method outperformed the standard ROI-based labeling using a deformable, parcellated atlas. Finally, we show a high-throughput application of the method to genetic population studi...
Diffusion tensor imaging (DTI) has become a standard clinical procedure in assessing the health of w...
We introduce a framework for population analysis of white matter tracts in diffusion weighted images...
International audienceWhite matter (WM) fiber bundles of the brain can be delineated by diffusion tr...
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...
Automatic labeling of white matter fibres in diffusion-weighted brain MRI is vital for comparing bra...
Automatic labeling of white matter fibres in diffusion-weighted brain MRI is vital for comparing bra...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Diffusion tensor imaging (DTI) has become a standard clinical procedure in assessing the health of w...
We introduce a framework for population analysis of white matter tracts in diffusion weighted images...
International audienceWhite matter (WM) fiber bundles of the brain can be delineated by diffusion tr...
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...
Automatic labeling of white matter fibres in diffusion-weighted brain MRI is vital for comparing bra...
Automatic labeling of white matter fibres in diffusion-weighted brain MRI is vital for comparing bra...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Diffusion tensor imaging (DTI) has become a standard clinical procedure in assessing the health of w...
We introduce a framework for population analysis of white matter tracts in diffusion weighted images...
International audienceWhite matter (WM) fiber bundles of the brain can be delineated by diffusion tr...