This paper proposes a method for the registration of white matter tract bundles traced from diffusion images and its extension to atlas generation. Our framework is based on a Gaussian process representation of tract density maps. Such a representation avoids the need for point-to point correspondences, is robust to tract interruptions and reconnections and seamlessly handles the comparison and combination of white matter tract bundles. Moreover, being a parametric model, this approach has the potential to be defined in the Gaussian processes’ parameter space, without the need for resampling the fiber bundles during the registration process. We use the similarity measure of our Gaussian process framework, which is in fact an inner product, ...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
We provide a Bayesian framework for measuring similarity in white matter fiber bundles based on Gaus...
<div><p>We present an example-based multi-atlas approach for classifying white matter (WM) tracts in...
This paper proposes a method for the registration of white matter tract bundles traced from diffusio...
International audienceThis paper proposes a generic framework for the registration, the template est...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
International audienceThe purpose of this paper is to measure the variability of a population of whi...
International audienceWe present a novel technique for the tract-based statistical analysis of diffu...
Abstract. This paper proposes a method to infer a high level model of the white matter organization ...
International audienceThis paper proposes a method to infer a high level model of the white matter o...
Abstract—In this paper we present a robust approach to the registration of white matter tractographi...
We present what we believe to be the first investigation into unbiased multi-subject registration of...
With the increasing importance of fiber tracking in diffusion tensor images for clinical needs, ther...
We introduce a framework for population analysis of white matter tracts in diffusion weighted images...
International audienceThe neuroscientific community today is very much interested in analyzing speci...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
We provide a Bayesian framework for measuring similarity in white matter fiber bundles based on Gaus...
<div><p>We present an example-based multi-atlas approach for classifying white matter (WM) tracts in...
This paper proposes a method for the registration of white matter tract bundles traced from diffusio...
International audienceThis paper proposes a generic framework for the registration, the template est...
We introduce a framework for population analysis of white matter tracts based on diffusion-weighted ...
International audienceThe purpose of this paper is to measure the variability of a population of whi...
International audienceWe present a novel technique for the tract-based statistical analysis of diffu...
Abstract. This paper proposes a method to infer a high level model of the white matter organization ...
International audienceThis paper proposes a method to infer a high level model of the white matter o...
Abstract—In this paper we present a robust approach to the registration of white matter tractographi...
We present what we believe to be the first investigation into unbiased multi-subject registration of...
With the increasing importance of fiber tracking in diffusion tensor images for clinical needs, ther...
We introduce a framework for population analysis of white matter tracts in diffusion weighted images...
International audienceThe neuroscientific community today is very much interested in analyzing speci...
International audienceWhite matter fiber bundles of the human brain form a spatial pattern defined b...
We provide a Bayesian framework for measuring similarity in white matter fiber bundles based on Gaus...
<div><p>We present an example-based multi-atlas approach for classifying white matter (WM) tracts in...