International audienceStandard detection of evoked brain activity in functional MRI (fMRI) relies on a fixed and known shape of the impulse response of the neurovascular coupling, namely the hemodynamic response function (HRF). To cope with this issue, the joint detection-estimation (JDE) framework has been proposed. This formalism enables to estimate a HRF per region but for doing so, it assumes a prior brain partition (or parcellation) regarding hemodynamic territories. This partition has to be accurate enough to recover accurate HRF shapes but has also to overcome the detection-estimation issue: the lack of hemodynamics information in the non-active positions. An hemodynamically-based parcellation method is proposed, consisting first of ...
Deriving a meaningful functional brain parcellation is a very challenging issue in task-related fMRI...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
International audienceWe address the issue of jointly detecting brain activity and estimating brain ...
International audienceStandard detection of evoked brain activity in functional MRI (fMRI) relies on...
International audienceStandard detection of evoked brain activity in functional MRI (fMRI) relies on...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
International audienceWe address the issue of jointly detecting brain activity and estimating brain ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
Identifying brain hemodynamics in event-related functional MRI (fMRI) data is a crucial issue to dis...
Deriving a meaningful functional brain parcellation is a very challenging issue in task-related fMRI...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
International audienceWe address the issue of jointly detecting brain activity and estimating brain ...
International audienceStandard detection of evoked brain activity in functional MRI (fMRI) relies on...
International audienceStandard detection of evoked brain activity in functional MRI (fMRI) relies on...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
International audienceWe address the issue of jointly detecting brain activity and estimating brain ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
International audienceIdentifying brain hemodynamics in event-related functional MRI (fMRI) data is ...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
Identifying brain hemodynamics in event-related functional MRI (fMRI) data is a crucial issue to dis...
Deriving a meaningful functional brain parcellation is a very challenging issue in task-related fMRI...
Submitted to IEEE Transactions on Medical ImagingIdentifying brain hemodynamics in event-related fun...
International audienceWe address the issue of jointly detecting brain activity and estimating brain ...