A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) MRI was proposed in this paper. The essence of the algorithm was that it iteratively solved the model of simple SENSE on a pixel-by-pixel basis in the region of support (ROS). The ROS was obtained from scout images of eight channels by morphological operations such as opening and filling. All the pixels in the FOV were paired and classified into four types, according to their spatial locations with respect to the ROS, and each with corresponding procedures of solving the inverse problem for image reconstruction. The sensitivity maps, used for the image reconstruction and covering only the ROS, were obtained by a polynomial regression model wi...
International audienceTo reduce scanning time and/or improve spatial/temporal resolution in some Mag...
To reduce scanning time and/or improve spatial/temporal resolution in some Magnetic Resonance Imagin...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
The problem of image reconstruction from sensitivity encoded data is formulated in a general fashion...
The use of MRI for patient examinations has constantly increased as technical development has lead t...
ABSTRACT: Parallel acquisition of Magnetic Resonance Imaging (MRI) has the poten-tial to significant...
Reconfigurable hardware based architectures that could provide good quality image reconstruction fo...
Abstract Background One of the major limitations of MRI is its slow acquisition speed. To accelerate...
The method of enforcing sparsity during magnetic resonance imaging reconstruction has been successfu...
Parallel imaging and compressed sensing have been arguably the most successful and widely used techn...
The performance of scanners for magnetic resonance imaging (MRI) had a leap in the last decade thank...
Magnetic Resonance Imaging ( MRI) is widely used as a clinical diagnostic tool for many benefits it ...
Magnetic Resonance Imaging ( MRI) is widely used as a clinical diagnostic tool for many benefits it ...
International audienceTo reduce scanning time and/or improve spatial/temporal resolution in some Mag...
International audienceTo reduce scanning time and/or improve spatial/temporal resolution in some Mag...
To reduce scanning time and/or improve spatial/temporal resolution in some Magnetic Resonance Imagin...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...
A novel, rapid algorithm to speed up and improve the reconstruction of sensitivity encoding (SENSE) ...
The problem of image reconstruction from sensitivity encoded data is formulated in a general fashion...
The use of MRI for patient examinations has constantly increased as technical development has lead t...
ABSTRACT: Parallel acquisition of Magnetic Resonance Imaging (MRI) has the poten-tial to significant...
Reconfigurable hardware based architectures that could provide good quality image reconstruction fo...
Abstract Background One of the major limitations of MRI is its slow acquisition speed. To accelerate...
The method of enforcing sparsity during magnetic resonance imaging reconstruction has been successfu...
Parallel imaging and compressed sensing have been arguably the most successful and widely used techn...
The performance of scanners for magnetic resonance imaging (MRI) had a leap in the last decade thank...
Magnetic Resonance Imaging ( MRI) is widely used as a clinical diagnostic tool for many benefits it ...
Magnetic Resonance Imaging ( MRI) is widely used as a clinical diagnostic tool for many benefits it ...
International audienceTo reduce scanning time and/or improve spatial/temporal resolution in some Mag...
International audienceTo reduce scanning time and/or improve spatial/temporal resolution in some Mag...
To reduce scanning time and/or improve spatial/temporal resolution in some Magnetic Resonance Imagin...
Parallel magnetic resonance imaging offers a framework for acceleration of conventional MRI encoding...