Purpose To calibrate a pre-emphasis to sufficiently compensate eddy currents for application of dynamic shim updating to fMRI without extension of scan times. Methods Eddy current effects induced into all shim terms up to third-order were characterized by spatiotemporal field monitoring, using a third-order field camera. Pre-emphasis settings were derived from the measurements and iteratively evaluated and refined. The calibrated pre-emphasis was applied to slice-wise dynamic shim updating in combination with a dynamic excitation frequency (F0) determination and a slice-wise B0 optimization routine for in vivo echo planar imaging and resting-state functional MRI. Results The described method for pre-emphasis calibration led to settling time...
AbstractIn functional MRI, magnetic field inhomogeneities due to air-tissue susceptibility differenc...
The goal of this contribution is to enhance the fidelity and switching speed of gradient and shim fi...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
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...
The transition to ultra high field strengths yields advantages as increased SNR and higher BOLD cont...
EPI, the “work horse” of fMRI, is prone to artifacts, induced by B0 inhomogeneities. Therefore, soph...
Purpose/Introduction: The promising advantages resulting from a transition to ultra-high-field in MR...
Purpose/Introduction: The application of ultra-high static magnetic field strengths to functional MR...
EPI allows for very fast acquisition, and is the “work horse” of conventional fMRI. To exploit the f...
Magnetic resonance imaging requires a homogeneous B0 magnetic field, however the field is often dist...
PURPOSE: We assessed how improved static magnetic field (B0 ) homogeneity with a dynamic multicoil s...
At higher field strengths, spin echo (SE) functional MRI (fMRI) is an attractive alternative to grad...
In functional MRI, magnetic field inhomogeneities due to air-tissue susceptibility differences may l...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
AbstractIn functional MRI, magnetic field inhomogeneities due to air-tissue susceptibility differenc...
The goal of this contribution is to enhance the fidelity and switching speed of gradient and shim fi...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...
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...
The transition to ultra high field strengths yields advantages as increased SNR and higher BOLD cont...
EPI, the “work horse” of fMRI, is prone to artifacts, induced by B0 inhomogeneities. Therefore, soph...
Purpose/Introduction: The promising advantages resulting from a transition to ultra-high-field in MR...
Purpose/Introduction: The application of ultra-high static magnetic field strengths to functional MR...
EPI allows for very fast acquisition, and is the “work horse” of conventional fMRI. To exploit the f...
Magnetic resonance imaging requires a homogeneous B0 magnetic field, however the field is often dist...
PURPOSE: We assessed how improved static magnetic field (B0 ) homogeneity with a dynamic multicoil s...
At higher field strengths, spin echo (SE) functional MRI (fMRI) is an attractive alternative to grad...
In functional MRI, magnetic field inhomogeneities due to air-tissue susceptibility differences may l...
We propose a method to calculate field maps from the phase of each EPI in an fMRI time series. These...
AbstractIn functional MRI, magnetic field inhomogeneities due to air-tissue susceptibility differenc...
The goal of this contribution is to enhance the fidelity and switching speed of gradient and shim fi...
AbstractWe propose a method to calculate field maps from the phase of each EPI in an fMRI time serie...