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Correction of aliasing artifact in accelerated echo-planar imaging
Silu Han1, Chidi P Ugonna1, Nan-Kuei Chen2
1Department of Biomedical Engineering, University of Arizona, Tucson, AZ, USA.
This study introduces a new echo-planar imaging (EPI) reconstruction pipeline to fix 2D Nyquist and aliasing artifacts. The method improves image quality and functional sensitivity across various EPI acquisition schemes.
Area of Science:
- Magnetic Resonance Imaging
- Neuroimaging
- Image Reconstruction
Background:
- Echo-planar imaging (EPI) is crucial for functional MRI (fMRI) but suffers from artifacts.
- 2D Nyquist and aliasing artifacts degrade image quality and affect downstream analysis.
- Existing correction methods often address artifacts in isolation.
Purpose of the Study:
- To develop a unified reconstruction pipeline for simultaneous correction of 2D Nyquist and aliasing artifacts in EPI.
- To address artifacts across diverse EPI acquisition schemes (single-shot, multi-shot, parallel, multi-band).
Main Methods:
- Introduced a novel 2D Nyquist artifact correction extending a phase-search reconstruction.
- Generated phase-corrected images and used coil sensitivity profiles for optimal phase correction.
- Integrated a procedure to correct aliasing from 2D Nyquist effects, motion, and acceleration.
Main Results:
- Substantially reduced residual artifacts in EPI data, improving the ghost-to-signal ratio.
- Resulting default-mode network maps showed better alignment with reference networks.
- Outperformed conventional 1D Nyquist artifact correction methods.
Conclusions:
- The developed pipeline effectively corrects multiple aliasing artifact sources in EPI.
- Achieved improved image quality and functional sensitivity for various EPI acquisitions.
- Offers a comprehensive solution for EPI artifact correction in neuroimaging.
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