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Local perturbation responses and checkerboard tests: Characterization tools for nonlinear MRI methods.
Chin-Cheng Chan1,2, Justin P Haldar1,2
1Electrical and Computer Engineering, University of Southern California, Los Angeles, California, USA.
Magnetic Resonance in Medicine
|June 3, 2021
Summary
New Local Perturbation Responses (LPRs) help assess confidence in nonlinear MR imaging methods. These LPRs offer insights into spatial resolution and aliasing, complementing traditional quality assessments for improved MRI analysis.
Area of Science:
- Medical Imaging
- Magnetic Resonance Imaging (MRI)
- Image Processing
Background:
- Modern MRI methods (reconstruction, denoising, parameter mapping) are increasingly nonlinear and opaque.
- Traditional confidence assessment tools (e.g., PSFs, g-factor maps) are becoming less effective for these complex methods.
- There is a growing need for reliable methods to evaluate the confidence in images generated by arbitrary nonlinear MRI techniques.
Purpose of the Study:
- To introduce and evaluate a novel approach for assessing confidence in images produced by nonlinear MRI methods.
- To develop a flexible tool applicable to various nonlinear reconstruction, denoising, and parameter mapping applications.
- To provide insights into image characteristics without requiring a ground truth image.
Main Methods:
- Characterize nonlinear MRI methods by analyzing image responses to controlled perturbations in measured data.
- Introduce Local Perturbation Responses (LPRs) as functions generalizing classical Point Spread Functions (PSFs).
- Demonstrate impulse-based and checkerboard-pattern LPRs in MRI reconstruction and denoising scenarios.
Main Results:
- LPRs provide unique insights into spatial resolution, signal leakage, and aliasing not captured by other methods.
- Demonstrated LPRs' flexibility across diverse nonlinear MRI applications.
- Observed that popular reference-based image quality metrics do not always correlate with desirable LPR characteristics.
Conclusions:
- Local Perturbation Responses (LPRs) are valuable for characterizing nonlinear MRI methods and assessing image confidence.
- LPRs offer distinct and complementary insights compared to existing image quality assessment techniques.
- This approach enhances the reliability and interpretability of advanced MRI data.

