We propose a novel, fast and robust technique for the computation of anatomical connectivity in the brain. Our approach exploits the information provided by Diffusion Tensor Magnetic Resonance Imaging (or DTI) and models the white matter by using Riemannian geometry and control theory. We show that it is possible, from a region of interest, to compute the geodesic distance to any other point and the associated optimal vector field. The latter can be used to trace shortest paths coinciding with neural fiber bundles. We also demonstrate that no explicit computation of those 3D curves is necessary to assess the degree of connectivity of the region of interest with the rest of the brain. We finally introduce a general local connectivity measure...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
In this paper we discuss new measures for connectivity analysis of brain white matter, using MR diff...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
We propose a novel, fast and robust technique for the computation of anatomical connectivity in the ...
We propose a novel, fast and robust technique for the computation of anatomical connectivity in the ...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
In this paper we discuss new measures for connectivity analysis of brain white matter, using MR diff...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
International audienceWe propose a novel, fast and robust technique for the computation of anatomica...
We propose a novel, fast and robust technique for the computation of anatomical connectivity in the ...
We propose a novel, fast and robust technique for the computation of anatomical connectivity in the ...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe develop an algorithm for brain connectivity assessment using geodesics in H...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
International audienceWe introduce an original approach for the cerebral white matter connectivity m...
In this paper we discuss new measures for connectivity analysis of brain white matter, using MR diff...