Purpose The purpose of this work is to explore the feasibility and performance of single‐shot spiral MRI at 7 T, using an expanded signal model for reconstruction. Methods Gradient‐echo brain imaging is performed on a 7 T system using high‐resolution single‐shot spiral readouts and half‐shot spirals that perform dual‐image acquisition after a single excitation. Image reconstruction is based on an expanded signal model including the encoding effects of coil sensitivity, static off‐resonance, and magnetic field dynamics. The latter are recorded concurrently with image acquisition, using NMR field probes. The resulting image resolution is assessed by point spread function analysis. Results Single‐shot spiral imaging is achieved at a nomin...
We systematically evaluated a variety of MR spiral imaging acquisition and reconstruction schemes us...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Purpose Functional MRI (fMRI) techniques that can provide excellent blood oxygen level dependent con...
Purpose The purpose of this work is to explore the feasibility and performance of single‐shot spira...
Purpose The purpose of this work is to explore the feasibility and performance of single-shot spiral...
Spiral fMRI has been put forward as a viable alternative to rectilinear echo-planar imaging, in part...
We report the deployment of spiral acquisition for high-resolution structural imaging at 7T. Long sp...
Purpose The purpose of this work was to improve the quality of single-shot spiral MRI and demonstrat...
We present data collected for the research article “Advances in Spiral fMRI: A High-resolution Study...
Purpose/Introduction: Short acquisition times and short effective echo times are of prime importance...
This thesis presents the design, implementation and testing of magnetic resonance imaging (MRI) sequ...
Diffusion MRI (dMRI) is a valuable imaging technique to study the brain in vivo. However, the resolu...
The dramatic improvement in magnetic resonance imaging (MRI) scan time over the past fifteen years t...
Purpose : Variable flip angle (VFA)-based T 1 quantification techniques are highly sensitive to B 1 ...
In this study a fully adiabatic volume selection sequence (LASER) with SPIRAL readout was developed ...
We systematically evaluated a variety of MR spiral imaging acquisition and reconstruction schemes us...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Purpose Functional MRI (fMRI) techniques that can provide excellent blood oxygen level dependent con...
Purpose The purpose of this work is to explore the feasibility and performance of single‐shot spira...
Purpose The purpose of this work is to explore the feasibility and performance of single-shot spiral...
Spiral fMRI has been put forward as a viable alternative to rectilinear echo-planar imaging, in part...
We report the deployment of spiral acquisition for high-resolution structural imaging at 7T. Long sp...
Purpose The purpose of this work was to improve the quality of single-shot spiral MRI and demonstrat...
We present data collected for the research article “Advances in Spiral fMRI: A High-resolution Study...
Purpose/Introduction: Short acquisition times and short effective echo times are of prime importance...
This thesis presents the design, implementation and testing of magnetic resonance imaging (MRI) sequ...
Diffusion MRI (dMRI) is a valuable imaging technique to study the brain in vivo. However, the resolu...
The dramatic improvement in magnetic resonance imaging (MRI) scan time over the past fifteen years t...
Purpose : Variable flip angle (VFA)-based T 1 quantification techniques are highly sensitive to B 1 ...
In this study a fully adiabatic volume selection sequence (LASER) with SPIRAL readout was developed ...
We systematically evaluated a variety of MR spiral imaging acquisition and reconstruction schemes us...
The long readout times of single-shot acquisitions and the high field strengths desired for function...
Purpose Functional MRI (fMRI) techniques that can provide excellent blood oxygen level dependent con...