Purpose: Simultaneous multislice (SMS) acquisition enables increased temporal efficiency of MRI. Nonetheless, MultiBand (MB) radiofrequency (RF) pulses used for SMS can cause large energy deposition. Power independent of number of slices (PINS) pulses reduce RF power at cost of reduced bandwidth and increased off-resonance dependency. This work improves PINS design to further reduce energy deposition, off-resonance dependency and peak power. Theory and Methods: Modifying the shape of MB RF-pulses allows for mixing with PINS excitation, creating a new pulse type with reduced energy deposition and SMS excitation characteristics. Bloch Simulations were used to evaluate excitation and off-resonance behavior of this MultiPINS pulse. In this work...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
PURPOSE: To enable highly accelerated RARE/Turbo Spin Echo (TSE) imaging using Simultaneous MultiSli...
Purpose: Simultaneous multislice (SMS) acquisition enables increased temporal efficiency of MRI. Non...
Purpose To explore the use of PINS radiofrequency (RF) pulses to reduce RF power deposition in multi...
This communication describes radiofrequency pulses capable of performing spatially periodic excitati...
This communication describes radiofrequency pulses capable of performing spatially periodic excitati...
PurposeSimultaneous multislice (SMS) imaging can significantly increase image acquisition rates and ...
Simultaneous multislice imaging (SMS) using parallel image reconstruction has rapidly advanced to be...
A method for simultaneous multislice (SMS) inversion contrast imaging is presented using a combinati...
Purpose A technique is described for simultaneous multislice (SMS) excitation using radiofrequency (...
A method for simultaneous multislice (SMS) inversion contrast imaging is presented using a combinati...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
PURPOSE: To enable highly accelerated RARE/Turbo Spin Echo (TSE) imaging using Simultaneous MultiSli...
Purpose: Simultaneous multislice (SMS) acquisition enables increased temporal efficiency of MRI. Non...
Purpose To explore the use of PINS radiofrequency (RF) pulses to reduce RF power deposition in multi...
This communication describes radiofrequency pulses capable of performing spatially periodic excitati...
This communication describes radiofrequency pulses capable of performing spatially periodic excitati...
PurposeSimultaneous multislice (SMS) imaging can significantly increase image acquisition rates and ...
Simultaneous multislice imaging (SMS) using parallel image reconstruction has rapidly advanced to be...
A method for simultaneous multislice (SMS) inversion contrast imaging is presented using a combinati...
Purpose A technique is described for simultaneous multislice (SMS) excitation using radiofrequency (...
A method for simultaneous multislice (SMS) inversion contrast imaging is presented using a combinati...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
A new method for designing radiofrequency (RF) pulses with numerical optimization in the wavelet dom...
PURPOSE: To enable highly accelerated RARE/Turbo Spin Echo (TSE) imaging using Simultaneous MultiSli...