Purpose: In parallel transmission (pTX), subject-tailored RF pulses allow achieving excellent flip angle (FA) accuracy but often require computationally extensive online optimisations, precise characterisation of the the static field (ΔB0) and the transmit RF field (B+1 ) distributions. This costs time and requires expertise from the MR user. Universal Pulses (UP) have been proposed to reduce this burden, yet, with a penalty in FA accuracy. This study introduces the concept of standardised universal pulses (SUP), where pulses are designed offline and adjusted to the subject through a fast online calibration scan. Methods: A SUP is designed offline using a so-called standardised database, wherein each B+1 map has been normalised to a referen...
Magnetic Resonance Imaging (MRI) at higher magnetic fields (above 7 Tesla) suffers from radiofrequen...
Purpose A new framework for the design of parallel transmit (pTx) pulses is presented introducing...
International audiencePurpose: A calibration-free pulse design method is introduced to alleviate B$_...
Synopsis Parallel transmission allows flip angle homogenization at ultra-high field. The pulse desi...
This study introduces a parallel-transmission (pTx) radio-frequency (RF) pulse-design-method to crea...
T2-weigthed sequences are particularly sensitive to the RF field inhomogeneity problem due to the er...
Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit field i...
<div><p>Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit...
This study investigates different parallel transmission (PTx) pulse design methods to find a univers...
Purpose We propose a constrained optimization approach for designing parallel transmit (pTx) pulses...
Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit field i...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
Magnetic resonance imaging is a powerful, non-invasive technology to acquire anatomical images from...
PURPOSE: Universal Pulses (UPs) are excitation pulses that reduce the flip angle inhomogeneity in hi...
Magnetic Resonance Imaging (MRI) at higher magnetic fields (above 7 Tesla) suffers from radiofrequen...
Magnetic Resonance Imaging (MRI) at higher magnetic fields (above 7 Tesla) suffers from radiofrequen...
Purpose A new framework for the design of parallel transmit (pTx) pulses is presented introducing...
International audiencePurpose: A calibration-free pulse design method is introduced to alleviate B$_...
Synopsis Parallel transmission allows flip angle homogenization at ultra-high field. The pulse desi...
This study introduces a parallel-transmission (pTx) radio-frequency (RF) pulse-design-method to crea...
T2-weigthed sequences are particularly sensitive to the RF field inhomogeneity problem due to the er...
Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit field i...
<div><p>Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit...
This study investigates different parallel transmission (PTx) pulse design methods to find a univers...
Purpose We propose a constrained optimization approach for designing parallel transmit (pTx) pulses...
Parallel transmission (pTx) technology, despite its great potential to mitigate the transmit field i...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
Magnetic resonance imaging is a powerful, non-invasive technology to acquire anatomical images from...
PURPOSE: Universal Pulses (UPs) are excitation pulses that reduce the flip angle inhomogeneity in hi...
Magnetic Resonance Imaging (MRI) at higher magnetic fields (above 7 Tesla) suffers from radiofrequen...
Magnetic Resonance Imaging (MRI) at higher magnetic fields (above 7 Tesla) suffers from radiofrequen...
Purpose A new framework for the design of parallel transmit (pTx) pulses is presented introducing...
International audiencePurpose: A calibration-free pulse design method is introduced to alleviate B$_...