Purpose The robustness of a recently introduced globally convergent deconvolution algorithm with temporal and edge‐preserving spatial regularization for the deconvolution of dynamic susceptibility contrast perfusion magnetic resonance imaging is assessed in the context of ischemic stroke. Theory and Methods Ischemic tissues are not randomly distributed in the brain but form a spatially organized entity. The addition of a spatial regularization term allows to take into account this spatial organization contrarily to the sole temporal regularization approach which processes each voxel independently. The robustness of the spatial regularization in relation to shape variability, hemodynamic variability in tissues, noise in the magnetic resonanc...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
International audienceWe propose an original spatio-temporal deconvolution approach for perfusion-we...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
We propose an original spatio-temporal deconvolution approach for perfusion-weighted MRI applied to ...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
International audienceWe propose an original spatio-temporal deconvolution approach for perfusion-we...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
International audiencePurpose: The robustness of a recently introduced globally convergent deconvolu...
We propose an original spatio-temporal deconvolution approach for perfusion-weighted MRI applied to ...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
International audienceWe consider the ill-posed inverse problem encountered in perfusion magnetic re...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
Stroke – a neurological deficit resulting from blood supply perturbations in the brain – is a major ...
International audienceWe propose an original spatio-temporal deconvolution approach for perfusion-we...