At ultra-high magnetic field (≥ 7T), B1 and ΔB0 non-uniformities cause undesired inhomogeneities in image signal and contrast. Tailored radiofrequency pulses exploiting parallel transmission have been shown to mitigate these phenomena. However, the design of large flip angle excitations, a prerequisite for many clinical applications, remains challenging due the non-linearity of the Bloch equation. In this work, we explore the potential of gradient ascent pulse engineering to design non-selective spin-echo refocusing pulses that simultaneously mitigate severe B1 and ΔB0 non-uniformities. The originality of the method lays in the optimization of the rotation matrices themselves as opposed to magnetization states. Consequently, the commonly us...
Attempts to optimize the magnetization transfer ratio (MTR) obtained from spoiled gradient echo MRI ...
Multi-Slice T2-weighted MR imaging is a fundamental technique in brain imaging but suffers from fiel...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
International audiencePurposeIn MRI at ultra‐high field, the $K_T$point and spiral nonselective (SPI...
T2-weigthed sequences are particularly sensitive to the RF field inhomogeneity problem due to the er...
Optimizing pulse performance often requires a compromise between maximizing signal amplitude and min...
OBJECTIVE: Ultrahigh field MRI provides great opportunities for medical diagnostics and research. Ho...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
International audienceA new pulse technique for counteracting RF inhomogeneity at high fields is rep...
The radiofrequency (RF) transmit field is severely inhomogeneous at ultrahigh field due to both RF p...
It is an efficient protocol to use the refocusing flip angle pulse optimization technique to solve s...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
Broadband inversion pulses that rotate all magnetization components 180 degrees about a given fixed ...
The radiofrequency pulses used in NMR are subject to a number of imperfections such as those caused ...
This work presents a novel approach for designing RF pulses to achieve excellent whole-brain excitat...
Attempts to optimize the magnetization transfer ratio (MTR) obtained from spoiled gradient echo MRI ...
Multi-Slice T2-weighted MR imaging is a fundamental technique in brain imaging but suffers from fiel...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
International audiencePurposeIn MRI at ultra‐high field, the $K_T$point and spiral nonselective (SPI...
T2-weigthed sequences are particularly sensitive to the RF field inhomogeneity problem due to the er...
Optimizing pulse performance often requires a compromise between maximizing signal amplitude and min...
OBJECTIVE: Ultrahigh field MRI provides great opportunities for medical diagnostics and research. Ho...
Brain images acquired at 3T often display central brightening with spatially varying tissue contrast...
International audienceA new pulse technique for counteracting RF inhomogeneity at high fields is rep...
The radiofrequency (RF) transmit field is severely inhomogeneous at ultrahigh field due to both RF p...
It is an efficient protocol to use the refocusing flip angle pulse optimization technique to solve s...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
Broadband inversion pulses that rotate all magnetization components 180 degrees about a given fixed ...
The radiofrequency pulses used in NMR are subject to a number of imperfections such as those caused ...
This work presents a novel approach for designing RF pulses to achieve excellent whole-brain excitat...
Attempts to optimize the magnetization transfer ratio (MTR) obtained from spoiled gradient echo MRI ...
Multi-Slice T2-weighted MR imaging is a fundamental technique in brain imaging but suffers from fiel...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...