The goal of this contribution is to enhance the fidelity and switching speed of gradient and shim fields by advancing pre-emphasis toward broadband and full cross-term correction.The proposed approach is based on viewing gradient and shim chains as linear, time-invariant (LTI) systems. Pre-emphasis is accomplished by inversion of a broadband digital system model. In the multiple-channel case, it amounts to a matrix of broadband filters that perform concerted self- and cross-term correction. This approach is demonstrated with gradients and shims up to the third order in a 7 Tesla whole-body MR system.Pre-emphasis by LTI model inversion is first verified by studying settling speeds and response behavior without and with the correction. It is ...
© 2021 International Society for Magnetic Resonance in MedicinePurpose: Brain imaging exams typicall...
This paper focuses on the optimization of gradient-pulse shapes in MRI measurement. The main topic i...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/145297/1/cpmib0500.pd
Purpose/Introduction: The promising advantages resulting from a transition to ultra-high-field in MR...
PURPOSE: Gradient imperfections remain a challenge in MRI, especially for sequences relying on long ...
Purpose To calibrate a pre-emphasis to sufficiently compensate eddy currents for application of dyna...
PURPOSE: To calibrate a pre-emphasis to sufficiently compensate eddy currents for application of dyn...
Purpose: To provide multidimensional velocity compensation for real-time phase-contrast flow MRI. Me...
Echo planar imaging (EPI) is widely used for applications where speed and/or sensitivity are essenti...
The transition to ultra high field strengths yields advantages as increased SNR and higher BOLD cont...
Purpose: To develop a gradient pre-emphasis scheme that prospectively counteracts the effects of the...
Purpose To describe the process of calibrating a B0 shim system using high-degree (or high order) sp...
Abstract Special magnetic resonance (MR) scans, such as spiral imaging and echo-planar imaging, requ...
The implementation of a "fast, automatic shimming technique by mapping along projections" (FASTMAP) ...
Signal generation in magnetic resonance imaging is driven by either of two fundamental mechanisms: s...
© 2021 International Society for Magnetic Resonance in MedicinePurpose: Brain imaging exams typicall...
This paper focuses on the optimization of gradient-pulse shapes in MRI measurement. The main topic i...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/145297/1/cpmib0500.pd
Purpose/Introduction: The promising advantages resulting from a transition to ultra-high-field in MR...
PURPOSE: Gradient imperfections remain a challenge in MRI, especially for sequences relying on long ...
Purpose To calibrate a pre-emphasis to sufficiently compensate eddy currents for application of dyna...
PURPOSE: To calibrate a pre-emphasis to sufficiently compensate eddy currents for application of dyn...
Purpose: To provide multidimensional velocity compensation for real-time phase-contrast flow MRI. Me...
Echo planar imaging (EPI) is widely used for applications where speed and/or sensitivity are essenti...
The transition to ultra high field strengths yields advantages as increased SNR and higher BOLD cont...
Purpose: To develop a gradient pre-emphasis scheme that prospectively counteracts the effects of the...
Purpose To describe the process of calibrating a B0 shim system using high-degree (or high order) sp...
Abstract Special magnetic resonance (MR) scans, such as spiral imaging and echo-planar imaging, requ...
The implementation of a "fast, automatic shimming technique by mapping along projections" (FASTMAP) ...
Signal generation in magnetic resonance imaging is driven by either of two fundamental mechanisms: s...
© 2021 International Society for Magnetic Resonance in MedicinePurpose: Brain imaging exams typicall...
This paper focuses on the optimization of gradient-pulse shapes in MRI measurement. The main topic i...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/145297/1/cpmib0500.pd