Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white matter microstructure in vivo and to model the underlying axonal pathways in the brain with three-dimensional fiber tracts. As the fast and consistent extraction of anatomically correct fiber bundles for multiple datasets is still challenging, we present a novel atlas-guided clustering framework for exploratory data analysis of large tractography datasets. The framework uses an hierarchical cluster analysis approach that exploits the inherent redundancy in large datasets to time-efficiently group fiber tracts. Structural information of a white matter atlas can be incorporated into the clustering to achieve an anatomically correct and reproduc...
Abstract—We present a method for clustering diffusion-tensor imaging (DTI) integral curves into anat...
Fiber tracking is a standard approach for the visualization of the results of diffusion tensor imagi...
Abstract. This paper presents a method inferring a model of the brain white matter organisation from...
<div><p>Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebra...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
Diffusion tensor magnetic resonance imaging (DTI) provides a promising way of estimating the neural ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
Human brain white matter (WM) structure and organisation are not yet completely known. Diffusion-Wei...
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...
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...
Abstract—We present a method for clustering diffusion-tensor imaging (DTI) integral curves into anat...
Fiber tracking is a standard approach for the visualization of the results of diffusion tensor imagi...
Abstract. This paper presents a method inferring a model of the brain white matter organisation from...
<div><p>Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebra...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
Diffusion tensor magnetic resonance imaging (DTI) provides a promising way of estimating the neural ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
International audienceThis paper presents a method for automatic segmentation of white matter fiber ...
Human brain white matter (WM) structure and organisation are not yet completely known. Diffusion-Wei...
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...
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...
Abstract—We present a method for clustering diffusion-tensor imaging (DTI) integral curves into anat...
Fiber tracking is a standard approach for the visualization of the results of diffusion tensor imagi...
Abstract. This paper presents a method inferring a model of the brain white matter organisation from...