PURPOSE: At 7 Tesla (T), conventional static field (B0 ) projection mapping techniques, e.g., FASTMAP, FASTESTMAP, lead to elevated specific absorption rates (SAR), requiring longer total acquisition times (TA). In this work, the series of adiabatic pulses needed for slab selection in FASTMAP is replaced by a single two-dimensional radiofrequency (2D-RF) pulse to minimize TA while ensuring equal shimming performance. METHODS: Spiral gradients and 2D-RF pulses were designed to excite thin slabs in the small tip angle regime. The corresponding selection profile was characterized in phantoms and in vivo. After optimization of the shimming protocol, the spectral linewidths obtained after 2D localized shimming were compared with conventional tec...
Objective: To provide a numerical and experimental investigation of the static RF shimming capabi...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...
PURPOSE: At 7 Tesla (T), conventional static field (B0 ) projection mapping techniques, e.g., FASTMA...
Spectroscopic imaging of the human head at short echo times (≤15 ms) typically requires suppression ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
The implementation of a "fast, automatic shimming technique by mapping along projections" (FASTMAP) ...
Purpose: Magnetic resonance-guided radiation therapy (MRgRT) has shown great promise for localizatio...
Designing multidimensional radiofrequency pulses for clinical application must take into account the...
Purpose: To obtain whole-brain high-resolution T2 maps in 2 minutes by combining simultaneous multis...
Purpose: To optimize a whole-brain magnetization transfer saturation (MTsat) protocolat 7T, focusing...
Robust and fast measurements of the transmit field strength is of great importance particularly in p...
Purpose To obtain whole-brain high-resolution T-2 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...
Objective: To provide a numerical and experimental investigation of the static RF shimming capabi...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...
PURPOSE: At 7 Tesla (T), conventional static field (B0 ) projection mapping techniques, e.g., FASTMA...
Spectroscopic imaging of the human head at short echo times (≤15 ms) typically requires suppression ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
The implementation of a "fast, automatic shimming technique by mapping along projections" (FASTMAP) ...
Purpose: Magnetic resonance-guided radiation therapy (MRgRT) has shown great promise for localizatio...
Designing multidimensional radiofrequency pulses for clinical application must take into account the...
Purpose: To obtain whole-brain high-resolution T2 maps in 2 minutes by combining simultaneous multis...
Purpose: To optimize a whole-brain magnetization transfer saturation (MTsat) protocolat 7T, focusing...
Robust and fast measurements of the transmit field strength is of great importance particularly in p...
Purpose To obtain whole-brain high-resolution T-2 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...
Objective: To provide a numerical and experimental investigation of the static RF shimming capabi...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...