International audienceThis paper presents a method for automatic segmentation of white matter fiber bundles from massive dMRI tractography datasets. The method is based on a multi-subject bundle atlas derived from a two-level intra-subject and inter-subject clustering strategy. This atlas is a model of the brain white matter organization, computed for a group of subjects, made up of a set of generic fiber bundles that can be detected in most of the population. Each atlas bundle corresponds to several inter-subject clusters manually labeled to account for subdivisions of the underlying pathways often presenting large variability across subjects. An atlas bundle is represented by the multi-subject list of the centroids of all intra-subject cl...
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...
Mapping of structural and functional connectivity may provide deeper understanding of brain function...
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 ...
Abstract. We present a two-step process including white matter atlas generation and automatic segmen...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
International audienceThis paper presents a method inferring a model of the brain white matter organ...
<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 ...
Abstract. This paper presents a method inferring a model of the brain white matter organisation from...
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...
Virtual delineation of white matter bundles in the human brain is of paramount importance for multip...
Superficial white matter bundle atlas constructed using fiber clustering algorithms, based on 100 su...
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...
Mapping of structural and functional connectivity may provide deeper understanding of brain function...
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 ...
Abstract. We present a two-step process including white matter atlas generation and automatic segmen...
Diffusion Tensor Imaging (DTI) and fiber tractography are important tools to map the cerebral white ...
International audienceThis paper presents a method inferring a model of the brain white matter organ...
<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 ...
Abstract. This paper presents a method inferring a model of the brain white matter organisation from...
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...
Virtual delineation of white matter bundles in the human brain is of paramount importance for multip...
Superficial white matter bundle atlas constructed using fiber clustering algorithms, based on 100 su...
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...
Mapping of structural and functional connectivity may provide deeper understanding of brain function...