AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These field maps can be used to correct the corresponding magnitude images for distortion caused by inhomogeneity in the static magnetic field. In contrast to conventional static distortion correction, in which one ‘snapshot’ field map is applied to all subsequent fMRI time points, our method also captures dynamic changes to B0 which arise due to motion and respiration. The approach is based on the assumption that the non-B0-related contribution to the phase measured by each radio-frequency coil, which is dominated by the coil sensitivity, is stable over time and can therefore be removed to yield a field map from EPI.Our solution addresses...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Purpose To develop a postprocessing algorithm that corrects geometric distortions due to spatial va...
International audiencePurpose: To retrospectively correct for geometrical distortions , a new dynami...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
Purpose: To develop a distortion correction method for echo planar imaging (EPI) that is able to mea...
Field inhomogeneities caused by variations in magnetic susceptibility throughout the head lead to ge...
Functional magnetic resonance imaging (fMRI) is most commonly based on echo-planar imaging (EPI). Wi...
Inhomogeneities of the static magnetic field cause geometric distortions in echo-planar imaging (EPI...
Purpose: To develop a distortion correction method for echo planar imaging (EPI) that is able to mea...
Presurgical planning with fMRI benefits from increased reliability and the possibility to reduce mea...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Purpose To develop a postprocessing algorithm that corrects geometric distortions due to spatial va...
International audiencePurpose: To retrospectively correct for geometrical distortions , a new dynami...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
Purpose: To develop a distortion correction method for echo planar imaging (EPI) that is able to mea...
Field inhomogeneities caused by variations in magnetic susceptibility throughout the head lead to ge...
Functional magnetic resonance imaging (fMRI) is most commonly based on echo-planar imaging (EPI). Wi...
Inhomogeneities of the static magnetic field cause geometric distortions in echo-planar imaging (EPI...
Purpose: To develop a distortion correction method for echo planar imaging (EPI) that is able to mea...
Presurgical planning with fMRI benefits from increased reliability and the possibility to reduce mea...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Purpose To develop a postprocessing algorithm that corrects geometric distortions due to spatial va...
International audiencePurpose: To retrospectively correct for geometrical distortions , a new dynami...