Optimized EPI for fMRI studies of the orbitofrontal cortex: compensation of susceptibility-induced gradients in the readout direction
Top Cited Papers
Open Access
- 1 February 2007
- journal article
- research article
- Published by Springer Nature in Magnetic Resonance Materials in Physics, Biology and Medicine
- Vol. 20 (1) , 39-49
- https://doi.org/10.1007/s10334-006-0067-6
Abstract
Object Most functional magnetic resonance imaging (fMRI) studies record the blood oxygen leveldependent (BOLD) signal using gradient-echo echo-planar imaging (GE EPI). EPI can suffer from substantial BOLD sensitivity loss caused by magnetic field inhomogeneities. Here, BOLD sensitivity losses due to susceptibility- induced gradients in the readout (RO) direction are characterized and a compensation approach is developed. Materials and Methods Based on a theory describing the dropout mechanism, an EPI sequence was optimized for maximal BOLD sensitivity in the orbitofrontal cortex (OFC) using a specific combination of an increased spatial resolution in the RO direction and a reduced echo time. Using measured BOLD sensitivity maps and a breath hold experiment, the model and compensation approach were tested. Results Using typical fMRI EPI parameters, susceptibility-induced gradients in the RO direction caused dropouts in the OFC and the inferior temporal lobe. Optimizing the echo time and spatial resolution effectively reduced the dropout as predicted by the theory. Conclusion The model-based compensation approach effectively reduces BOLD sensitivity losses due to susceptibility-induced gradients in the RO direction. It retains the high temporal resolution of single-shot EPI and can be readily combined with methods for the compensation of susceptibility-induced field gradients in the phase-encoding and through-plane direction.Keywords
This publication has 36 references indexed in Scilit:
- Effect of spatial smoothing on physiological noise in high-resolution fMRINeuroImage, 2006
- Single-shot compensation of image distortions and BOLD contrast optimization using multi-echo EPI for real-time fMRINeuroImage, 2005
- Point spread function mapping with parallel imaging techniques and high acceleration factors: Fast, robust, and flexible method for echo‐planar imaging distortion correctionMagnetic Resonance in Medicine, 2004
- Image Distortion Correction in fMRI: A Quantitative EvaluationNeuroImage, 2002
- Echo Time Dependence of BOLD Contrast and Susceptibility ArtifactsNeuroImage, 2002
- Trajectory measurement and generalised reconstruction in rectilinear EPINeuroImage, 2000
- Technical challenges of functional magnetic resonance imagingIEEE Engineering in Medicine and Biology Magazine, 2000
- Movement‐Related effects in fMRI time‐seriesMagnetic Resonance in Medicine, 1996
- Analysis of fMRI Time-Series Revisited—AgainNeuroImage, 1995
- Reduction of susceptibility artifact in gradient‐echo imagingMagnetic Resonance in Medicine, 1992