Functional magnetic resonance imaging (fMRI) is most commonly based on echo-planar imaging (EPI). With higher field strengths, gradient performance, and computational power, real-time fMRI has become feasible; that is, brain activation can be monitored during the ongoing scan. However, EPI suffers from geometric distortions due to inhomogeneities of the magnetic field, especially close to air-tissue interfaces. Thus, functional activations might be mislocalized and assigned to the wrong anatomical structures. Several techniques have been reported which reduce geometric distortions, for example, mapping of the static magnetic field B(0) or the point spread function for all voxels. Yet these techniques require additional reference scans and i...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Motion correction is an important component in fMRI brain image analysis. Linear registration techni...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
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...
Functional MRI (fMRI) generally employs gradient-echo echo-planar imaging (GE-EPI) to measure blood ...
Functional MRI (fMRI) generally employs gradient-echo echo-planar imaging (GE-EPI) to measure blood ...
Introduction Echo-planar imaging (EPI) is a group of fast data acquisition methods commonly used in ...
Functional MRI (fMRI) generally employs gradient-echo echoplanar imaging (GE-EPI) to measure blood o...
Functional MRI (fMRI) generally employs gradient-echo echoplanar imaging (GE-EPI) to measure blood o...
Geometric distortions are a well-recognised problem in echo-planar imaging (EPI), the technique most...
Functional MRI studies on humans with BOLD contrast are increasingly performed at high static magnet...
High field MRI has been applied to high-resolution structural and functional imaging of the brain. E...
Echo-planar imaging (EPI) is a standard procedure in functional magnetic resonance imaging (fMRI) fo...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Motion correction is an important component in fMRI brain image analysis. Linear registration techni...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
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...
Functional MRI (fMRI) generally employs gradient-echo echo-planar imaging (GE-EPI) to measure blood ...
Functional MRI (fMRI) generally employs gradient-echo echo-planar imaging (GE-EPI) to measure blood ...
Introduction Echo-planar imaging (EPI) is a group of fast data acquisition methods commonly used in ...
Functional MRI (fMRI) generally employs gradient-echo echoplanar imaging (GE-EPI) to measure blood o...
Functional MRI (fMRI) generally employs gradient-echo echoplanar imaging (GE-EPI) to measure blood o...
Geometric distortions are a well-recognised problem in echo-planar imaging (EPI), the technique most...
Functional MRI studies on humans with BOLD contrast are increasingly performed at high static magnet...
High field MRI has been applied to high-resolution structural and functional imaging of the brain. E...
Echo-planar imaging (EPI) is a standard procedure in functional magnetic resonance imaging (fMRI) fo...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
Motion correction is an important component in fMRI brain image analysis. Linear registration techni...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...