Multishot Dual Polarity GRAPPA: Robust Nyquist Ghost Correction for Multishot EPI.
Yuancheng Jiang1, Yohan Jun2,3, Qiang Liu4
1Center for Biomedical Imaging Research, School of Biomedical Engineering, Tsinghua University, Beijing, China.
Magnetic Resonance in Medicine
|December 26, 2025
Summary
A new multishot dual-polarity GRAPPA (msDPG) method effectively corrects Nyquist ghosts in echo-planar imaging (EPI). This technique improves image fidelity for submillimeter diffusion imaging, especially on advanced MRI scanners.
Area of Science:
- Magnetic Resonance Imaging
- Image Reconstruction
- Medical Physics
Background:
- Nyquist ghosts are artifacts in multishot echo-planar imaging (EPI).
- Existing correction methods like linear and non-linear phase correction struggle with complex phase variations, especially on high-performance scanners.
- Robust ghost correction is crucial for high-fidelity, submillimeter imaging.
Purpose of the Study:
- To develop a robust Nyquist ghost correction method for multishot EPI.
- To address challenging ghost artifacts on scanners with high-performance gradients and ultra-high fields.
- To enhance image quality and fidelity in advanced MRI applications.
Main Methods:
- Developed multishot dual-polarity GRAPPA (msDPG) by extending the dual-polarity GRAPPA concept to multishot readouts.
- Employed tailored DPG kernels to correct high-order phase differences not handled by linear phase correction (LPC) or non-linear phase correction (nLPC).
- Integrated advanced regularizers for physiologic inter-shot phase variation correction and proposed a calibration refinement method.
Main Results:
- msDPG demonstrated superior ghost correction compared to LPC and nLPC, reducing the ghost-to-signal ratio (GSR) by over 50% in phantom and in vivo experiments.
- Achieved lower noise amplification than conventional DPG, particularly with large in-plane acceleration.
- Enabled high-fidelity, submillimeter diffusion imaging using msDPG with regularized reconstruction.
Conclusions:
- The proposed msDPG method offers robust Nyquist ghost correction for multishot EPI.
- This technique facilitates high-fidelity submillimeter imaging, overcoming limitations of previous methods.
- msDPG is particularly beneficial for advanced MRI systems with high-performance gradients and ultra-high fields.


