SMACKER is a method of calculating sensitivity maps from k-space reconstruction coefficients using only a few lines of inner k-space. In this method the problem of sensitivities ending at object boundaries is eliminated, unlike in other established methods. The method allows for the rapid calculation of sensitivity profiles from images, and it is proposed here that the approach can be used in functional MRI to obtain reconstructed images in little time. Functional MRI relying on fast parallel reconstruction techniques naturally lends itself to a method that can generate and use sensitivity maps directly from images
Parallel imaging techniques enable the acceleration of MR image acquisition. This is made possible b...
Functional Magnetic Resonance Imaging (fMRI) requires ultra-fast imaging in order to capture the on-...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...
Functional MRI (fMRI) is a widely preferred imaging modality to detect the regional brain activation...
Functional MRI (fMRI) is a widely preferred imaging modality to detect the regional brain activation...
The determination of accurate coil sensitivity profiles is crucial for parallel MRI approaches such ...
58 p.The study was premised by relatively long scan times in producing an Magnetic Resonance Imaging...
Parallel imaging technique has been proposed to utilize simultaneous data acquisition from multiple ...
The problem of image reconstruction from sensitivity encoded data is formulated in a general fashion...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
In this paper, a novel sensitivity mapping method is proposed for the image domain parallel MRI (pMR...
The use of MRI for patient examinations has constantly increased as technical development has lead t...
[[abstract]]©2005 Wiley - Parallel MRI techniques reconstruct full-FOV images from undersampled k-sp...
Reconstruction of non-Cartesian SENSitivity-Encoded (SENSE) data often involves solving a large syst...
Parallel imaging techniques enable the acceleration of MR image acquisition. This is made possible b...
Functional Magnetic Resonance Imaging (fMRI) requires ultra-fast imaging in order to capture the on-...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...
Functional MRI (fMRI) is a widely preferred imaging modality to detect the regional brain activation...
Functional MRI (fMRI) is a widely preferred imaging modality to detect the regional brain activation...
The determination of accurate coil sensitivity profiles is crucial for parallel MRI approaches such ...
58 p.The study was premised by relatively long scan times in producing an Magnetic Resonance Imaging...
Parallel imaging technique has been proposed to utilize simultaneous data acquisition from multiple ...
The problem of image reconstruction from sensitivity encoded data is formulated in a general fashion...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
In this paper, a novel sensitivity mapping method is proposed for the image domain parallel MRI (pMR...
The use of MRI for patient examinations has constantly increased as technical development has lead t...
[[abstract]]©2005 Wiley - Parallel MRI techniques reconstruct full-FOV images from undersampled k-sp...
Reconstruction of non-Cartesian SENSitivity-Encoded (SENSE) data often involves solving a large syst...
Parallel imaging techniques enable the acceleration of MR image acquisition. This is made possible b...
Functional Magnetic Resonance Imaging (fMRI) requires ultra-fast imaging in order to capture the on-...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...