## Abstract Patient motion and image distortion induced by eddy currents cause artifacts in maps of diffusion parameters computed from diffusion‐weighted (DW) images. A novel and comprehensive approach to correct for spatial misalignment of DW imaging (DWI) volumes acquired with different strengths
Distortion correction for diffusion-weighted MRI tractography and fMRI in the temporal lobes
✍ Scribed by Karl V. Embleton; Hamied A. Haroon; David M. Morris; Matthew A. Lambon Ralph; Geoff J.M. Parker
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 1014 KB
- Volume
- 31
- Category
- Article
- ISSN
- 1065-9471
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Single shot echo‐planar imaging (EPI) sequences are currently the most commonly used sequences for diffusion‐weighted imaging (DWI) and functional magnetic resonance imaging (fMRI) as they allow relatively high signal to noise with rapid acquisition time. A major drawback of EPI is the substantial geometric distortion and signal loss that can occur due to magnetic field inhomogeneities close to air‐tissue boundaries. If DWI‐based tractography and fMRI are to be applied to these regions, then the distortions must be accurately corrected to achieve meaningful results. We describe robust acquisition and processing methods for correcting such distortions in spin echo (SE) EPI using a variant of the reversed direction k space traversal method with a number of novel additions. We demonstrate that dual direction k space traversal with maintained diffusion‐encoding gradient strength and direction results in correction of the great majority of eddy current‐associated distortions in DWI, in addition to those created by variations in magnetic susceptibility. We also provide examples to demonstrate that the presence of severe distortions cannot be ignored if meaningful tractography results are desired. The distortion correction routine was applied to SE‐EPI fMRI acquisitions and allowed detection of activation in the temporal lobe that had been previously found using PET but not conventional fMRI. Hum Brain Mapp, 2010. © 2010 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES
## Abstract ## Purpose: To provide a quantitative assessment of motion and distortion correction of diffusion‐weighted images (DWIs) of the breast and to evaluate the effects of registration on the mean apparent diffusion coefficient (mADC). ## Materials and Methods: Eight datasets from four pat
## Abstract Nonuniformities of magnetic field gradients can cause serious artifacts in diffusion imaging. While it is well known that nonlinearities of the imaging gradients lead to image warping, those imperfections can also cause spatially dependent errors in the direction and magnitude of the di
## Abstract ## Purpose: To retrospectively determine the additional value of diffusion‐weighted magnetic resonance imaging (MRI) to T2‐weighted imaging in the evaluation of anal fistulae in comparison with gadolinium (Gd)‐enhanced imaging. ## Materials and Methods: Thirteen patients (mean age, 3
## Abstract To clarify the result that marked diffusional anisotropy had been found in nonmyelinated nerve, and in completion of an evaluation of the role of all longitudinal axonal structures, we report NMR measurements of water diffusion in the giant axon of the squid, where diffusional anisotrop