Purpose To obtain whole-brain high-resolution T-2 maps in 2 minutes by combining simultaneous multislice excitation and low-power PINS (power independent of number of slices) refocusing pulses with undersampling and a model-based reconstruction. Methods A multi-echo spin-echo sequence was modified to acquire multiple slices simultaneously, ensuring low specific absorption rate requirements. In addition, the acquisition was undersampled to achieve further acceleration. Data were reconstructed by subsequently applying parallel imaging to separate signals from different slices, and a model-based reconstruction to estimate quantitative T-2 from the undersampled data. The signal model used is based on extended phase graph simulations that also a...
Single slice triple echo steady-state (TESS) imaging has demonstrated potential for robust highly B1...
Magnetic Resonance Imaging techniques such as Turbo Spin Echo (TSE) are routinely used in the clinic...
Purpose: Low magnetic field systems provide an important opportunity to expand MRI to new and divers...
Purpose: To obtain whole-brain high-resolution T2 maps in 2 minutes by combining simultaneous multis...
To obtain whole-brain high-resolution T <sub>2</sub> maps in 2 minutes by combining sim...
Purpose High-resolution isotropic T-2 mapping of the human brain with multi-echo spin-echo (MESE) ac...
High-resolution isotropic T <sub>2</sub> mapping of the human brain with multi-echo spin...
A model-based reconstruction technique for accelerated T2 mapping with improved accuracy is proposed...
Purpose: Multi-echo spin-echo sequence is commonly used for T2 mapping. The estimated values using c...
Quantitative MRI (qMRI) provides accurate and direct information of biological or pathological chara...
A novel, fully 3D, high-resolution T-1 and T-2 relaxation time mapping method is presented. The meth...
Abstract—A model-based reconstruction technique for accel-erated T2 mapping with improved accuracy i...
Purpose. To develop a high-speed multislice T1 mapping method based on a single-shot inversion-recov...
The work presented in this dissertation involves the development of parametric magnetic resonance im...
Our novel ultrafast T2 mapping framework, which uniquely integrates echo-split GRASE acquisition and...
Single slice triple echo steady-state (TESS) imaging has demonstrated potential for robust highly B1...
Magnetic Resonance Imaging techniques such as Turbo Spin Echo (TSE) are routinely used in the clinic...
Purpose: Low magnetic field systems provide an important opportunity to expand MRI to new and divers...
Purpose: To obtain whole-brain high-resolution T2 maps in 2 minutes by combining simultaneous multis...
To obtain whole-brain high-resolution T <sub>2</sub> maps in 2 minutes by combining sim...
Purpose High-resolution isotropic T-2 mapping of the human brain with multi-echo spin-echo (MESE) ac...
High-resolution isotropic T <sub>2</sub> mapping of the human brain with multi-echo spin...
A model-based reconstruction technique for accelerated T2 mapping with improved accuracy is proposed...
Purpose: Multi-echo spin-echo sequence is commonly used for T2 mapping. The estimated values using c...
Quantitative MRI (qMRI) provides accurate and direct information of biological or pathological chara...
A novel, fully 3D, high-resolution T-1 and T-2 relaxation time mapping method is presented. The meth...
Abstract—A model-based reconstruction technique for accel-erated T2 mapping with improved accuracy i...
Purpose. To develop a high-speed multislice T1 mapping method based on a single-shot inversion-recov...
The work presented in this dissertation involves the development of parametric magnetic resonance im...
Our novel ultrafast T2 mapping framework, which uniquely integrates echo-split GRASE acquisition and...
Single slice triple echo steady-state (TESS) imaging has demonstrated potential for robust highly B1...
Magnetic Resonance Imaging techniques such as Turbo Spin Echo (TSE) are routinely used in the clinic...
Purpose: Low magnetic field systems provide an important opportunity to expand MRI to new and divers...