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Updated: Sep 5, 2025

External Excitation of Neurons Using Electric and Magnetic Fields in One- and Two-dimensional Cultures
Published on: May 7, 2017
Universal pulses for homogeneous excitation using single channel coils
Ronald Mooiweer1, Ian A Clark2, Eleanor A Maguire2
1School of Biomedical Engineering and Imaging Sciences, Faculty of Life Sciences and Medicine, King's College London, London, United Kingdom; Center for the Developing Brain, School of Biomedical Engineering and Imaging Sciences, King's College London, St. Thomas' Hospital, London, United Kingdom; MR Research Collaborations, Siemens Healthcare Limited, Camberley, United Kingdom.
Universal Pulses (UPs) improve MRI flip angle homogeneity on standard 3T systems. Single-channel UPs enhance brain imaging without subject-specific tuning, offering a valuable alternative to default excitation pulses.
Area of Science:
- Magnetic Resonance Imaging (MRI)
- Pulse Sequence Design
- Radiofrequency (RF) Engineering
Background:
- Flip angle inhomogeneity is a common issue in high-field MRI, particularly in single-channel (SC) transmit systems.
- This inhomogeneity can affect image quality and quantitative analysis in clinical and research settings.
- Universal Pulses (UPs) were previously developed for parallel transmit (PTX) systems to mitigate this problem.
Purpose of the Study:
- To investigate the efficacy of Universal Pulses (UPs) for single-channel (SC) transmit systems at 3 Tesla (3T).
- To assess the benefits of SC-UPs in reducing flip angle inhomogeneity in brain imaging.
- To compare SC-UP performance with standard excitation methods and PTX-based pulses.
Main Methods:
- SC-UPs were designed using spiral nonselective k-space trajectories for 3T brain imaging.
- Transmit field (B1+) and off-resonance (B0) maps were acquired on standard SC and PTX systems.
- The impact of training group size on SC-UP performance was evaluated using data from 200 subjects.
Main Results:
- SC-UPs reduced average flip angle homogeneity error from 9.5% to 3.0% compared to default excitation.
- Optimal SC-UP performance was achieved with approximately 15 training subjects.
- MP-RAGE imaging with SC-UPs demonstrated improved grey and white matter signal separation.
Conclusions:
- SC-UPs effectively improve excitation homogeneity in standard 3T MRI systems.
- These pulses offer a calibration-free alternative to default excitation for nonselective neuroimaging.
- SC-UPs represent a significant advancement for improving image quality in widely used clinical MRI systems.
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