A new image reconstruction method to correct for the effects of magnetic field inhomogeneity in non-Cartesian sampled magnetic resonance imaging (MRI) is proposed. The conjugate phase reconstruction method, which corrects for phase accumulation due to applied gradients and magnetic field inhomogeneity, has been commonly used for this case. This can lead to incomplete correction, in part, due to the presence of gradients in the field inhomogeneity function. Based on local distortions to the k-space trajectory from these gradients, a spatially variant sample density compensation function is introduced as part of the conjugate phase reconstruction. This method was applied to both simulated and experimental spiral imaging data and shown to prod...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...
To improve image quality in susceptibility-weightedMR imag-ing, it is important to correct for the e...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...
A new image reconstruction method to correct for the effects of magnetic field inhomogeneity in non-...
The conjugate phase method is a general effective reconstruction method for magnetic resonance imagi...
In some types of magnetic resonance (MR) imaging, particularly functional brain scans, the conventio...
Magnetic field inhomogeneities cause distortions in the reconstructed images for non-cartesian k-spa...
Abstract — In magnetic resonance imaging (MRI), the spatial inhomogeneity of the static magnetic fie...
Abstract — In some types of magnetic resonance (MR) imaging, particularly functional brain scans, th...
In magnetic resonance imaging, magnetic field inhomogeneities cause distortions in images that are r...
In magnetic resonance (MR), imaging methods that use a non-Cartesian (e.g. spiral) sampling grid in ...
Reconstruction of magnetic resonance images from data not falling on a Cartesian grid is widely used...
Magnetic resonance imaging (MRI) is a highly versatile imaging modality with excellent soft-tissue c...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Image reconstruction from nonuniformly sampled spatial frequency domain data is an important problem...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...
To improve image quality in susceptibility-weightedMR imag-ing, it is important to correct for the e...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...
A new image reconstruction method to correct for the effects of magnetic field inhomogeneity in non-...
The conjugate phase method is a general effective reconstruction method for magnetic resonance imagi...
In some types of magnetic resonance (MR) imaging, particularly functional brain scans, the conventio...
Magnetic field inhomogeneities cause distortions in the reconstructed images for non-cartesian k-spa...
Abstract — In magnetic resonance imaging (MRI), the spatial inhomogeneity of the static magnetic fie...
Abstract — In some types of magnetic resonance (MR) imaging, particularly functional brain scans, th...
In magnetic resonance imaging, magnetic field inhomogeneities cause distortions in images that are r...
In magnetic resonance (MR), imaging methods that use a non-Cartesian (e.g. spiral) sampling grid in ...
Reconstruction of magnetic resonance images from data not falling on a Cartesian grid is widely used...
Magnetic resonance imaging (MRI) is a highly versatile imaging modality with excellent soft-tissue c...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Image reconstruction from nonuniformly sampled spatial frequency domain data is an important problem...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...
To improve image quality in susceptibility-weightedMR imag-ing, it is important to correct for the e...
In the thesis the effects of macroscopic field inhomogeneities in MR imaging are analyzed and manipu...