International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and blurring during acquisitions with long echo times, as in susceptibility-weighted imaging. Most correction methods require collecting an additional ΔB0 field map. To avoid that, we propose a method to approximate this field map using the single echo acquisition only. The main component of the observed phase is linearly related to ΔB0 and TE, and the relative impact of non-ΔB0 terms becomes insignificant with TE>20ms at 3T. The estimated 3D field maps, produced at 0.6 mm isotropic under 3 minutes, provide equivalent corrections to acquired ones.Les inhomogénéités de champs induites par les patients sont à l'origine de distorsions et de floutages ...
Magnetic resonance imaging (MRI) is a highly versatile imaging modality with excellent soft-tissue c...
It is well known that spatial variations of the main magnetic field can cause large geometric distor...
International audienceGeometrical distortion in Magnetic Resonance Images can be classified in two m...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
Magnetic Resonance Imaging (MRI) became one of the most important imaging modalities by providing no...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Magnetic field inhomogeneities cause distortions in the reconstructed images for non-cartesian k-spa...
In fast magnetic resonance (MR) imaging with long readout times, such as echo-planar imaging (EPI) a...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
In fast MR imaging with long readout times, such as echo-planar imaging (EPI) and spiral scans, it i...
Geometric distortion is a highly prevalent issue for echo-planar imaging (EPI), due to long readout ...
Magnetic resonance imaging (MRI) is a highly versatile imaging modality with excellent soft-tissue c...
It is well known that spatial variations of the main magnetic field can cause large geometric distor...
International audienceGeometrical distortion in Magnetic Resonance Images can be classified in two m...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
International audiencePatient-induced inhomogeneities in the magnetic field cause distortions and bl...
Magnetic Resonance Imaging (MRI) became one of the most important imaging modalities by providing no...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Magnetic field inhomogeneities cause distortions in the reconstructed images for non-cartesian k-spa...
In fast magnetic resonance (MR) imaging with long readout times, such as echo-planar imaging (EPI) a...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
Inhomogeneities of the main magnetic field cause geometric distortion in echo-planar imaging, a meth...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
In fast MR imaging with long readout times, such as echo-planar imaging (EPI) and spiral scans, it i...
Geometric distortion is a highly prevalent issue for echo-planar imaging (EPI), due to long readout ...
Magnetic resonance imaging (MRI) is a highly versatile imaging modality with excellent soft-tissue c...
It is well known that spatial variations of the main magnetic field can cause large geometric distor...
International audienceGeometrical distortion in Magnetic Resonance Images can be classified in two m...