arrow
Return

Self-navigation for 3D multishot EPI with data-reference

delete2020-03-02
delete20
delete
OA
AI
S
Steen Moeller *
S
Sudhir Ramanna
C
Christophe Lenglet
P
Pramod Kumar Pisharady
E
Edward J. Auerbach
X
Xiaoping Wu
M
Mehmet Akçakaya
K
Kâmil Uǧurbil
DOI:10.1002/mrm.28231delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Purpose In this study, we sought to develop a self-navigation strategy for improving the reconstruction of diffusion weighted 3D multishot echo planar imaging (EPI). We propose a method for extracting the phase correction information from the acquisition itself, eliminating the need for a 2D navigator, further accelerating the acquisition. Methods In-vivo acquisitions at 3T with 0.9 mm and 1.5 mm isotropic resolutions were used to evaluate the performance of the self-navigation strategy. Sensitivity to motion was tested using a large difference in pitch position of the head. Using a multishell diffusion weighted acquisition, tractography results were obtained at (0.9 mm)(3) to validate the quality with conventional acquisition. Results The use of 3D multislab EPI with self-navigation enables 3D diffusion-weighted spin echo EPI acquisitions that have the same efficiency as 2D single-shot acquisition. For matched acquisition time the image signal-to-noise ratio (SNR) between 3D and 2D acquisition is shown to be comparable for whole-brain coverage with (1.5 mm)(3) resolution and for (0.9 mm)(3) resolution the 3D acquisition has higher SNR than what can be obtained with 2D acquisitions using current state-of-art multiband techniques. The self-navigation technique was shown to be stable under inter-volume motion. In tractography analysis, the higher resolution afforded by our technique enabled clear delineation of the tapetum and posterior corona radiata. Conclusion The proposed self-navigation approach utilized a self-consistent phase in 3D diffusion weighted acquisitions. Its efficiency and stability were demonstrated for a plurality of common acquisitions. The proposed self-navigation approach allows for faster acquisition of 3D multishot EPI desirable for large field of view and/or higher resolution.
Keywords:
3D EPI
diffusion
dMRI
high resolution
navigator correction
SQUASHER
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Magnetic Resonance in Medicine cover
Magnetic Resonance in Medicine
IF:
3
Papers:
1.2W
Citations:
3.1W

Organization

No organization information available