[Abstract] Background Diffusion MRI is the preferred non-invasive in vivo modality for the study of brain white matter connections. Tractography datasets contain 3D streamlines that can be analyzed to study the main brain white matter tracts. Fiber clustering methods have been used to automatically group similar fibers into clusters. However, due to inter-subject variability and artifacts, the resulting clusters are difficult to process for finding common connections across subjects, specially for superficial white matter. Methods We present an automatic method for labeling of short association bundles on a group of subjects. The method is based on an intra-subject fiber clustering that generates compact fiber clusters. Posteriorly, ...
It is estimated that in the human brain, short association fibres (SAF) represent more than half of ...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
Figure 1: (a)Cluttered image showing the fibers in a healthy brain by seeding in the whole volume. T...
Human brain white matter (WM) structure and organisation are not yet completely known. Diffusion-Wei...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Mapping of structural and functional connectivity may provide deeper understanding of brain function...
Abstract—We present a method for clustering diffusion-tensor imaging (DTI) integral curves into anat...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
International audienceDiffusion-weighted Magnetic Resonance Imaging (dMRI) can unveil the microstruc...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
White matter fiber clustering is an important strategy for white matter parcellation, which enables ...
<div><p>Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebra...
With the increasing importance of fiber tracking in diffusion tensor images for clinical needs, ther...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
It is estimated that in the human brain, short association fibres (SAF) represent more than half of ...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
Figure 1: (a)Cluttered image showing the fibers in a healthy brain by seeding in the whole volume. T...
Human brain white matter (WM) structure and organisation are not yet completely known. Diffusion-Wei...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Mapping of structural and functional connectivity may provide deeper understanding of brain function...
Abstract—We present a method for clustering diffusion-tensor imaging (DTI) integral curves into anat...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
International audienceDiffusion-weighted Magnetic Resonance Imaging (dMRI) can unveil the microstruc...
To understand factors that affect brain connectivity and integrity, it is beneficial to automaticall...
White matter fiber clustering is an important strategy for white matter parcellation, which enables ...
<div><p>Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebra...
With the increasing importance of fiber tracking in diffusion tensor images for clinical needs, ther...
BACKGROUND/PURPOSE: Despite its potential for visualizing white matter fiber tracts in vivo, diffusi...
It is estimated that in the human brain, short association fibres (SAF) represent more than half of ...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
Figure 1: (a)Cluttered image showing the fibers in a healthy brain by seeding in the whole volume. T...