Modified acquisition strategy for reduced motion artifact in super resolution T2 FSE multislice MRI: Application to

Soudabeh Kargar1,2,3, Eric A Borisch2, Adam T Froemming2

  • 1Biomedical Engineering and Physiology, Mayo Clinic, Rochester, MN, USA.

Abstract

Insights

A new segmented acquisition strategy significantly reduces scalloping artifacts in multislice T2-weighted fast-spin-echo (T2 FSE) MRI reformats. This method improves image quality for prostate MRI by minimizing motion effects between slice acquisitions.

Area of Science:

  • Magnetic Resonance Imaging (MRI)
  • Medical Imaging Techniques
  • Radiology

Background:

  • Multislice T2-weighted fast-spin-echo (T2 FSE) imaging is susceptible to slice-to-slice motion artifacts, known as "scalloping," particularly in reformatted images.
  • These artifacts arise from subtle movements between acquisition passes, degrading image quality for applications like prostate MRI.

Purpose of the Study:

  • To reduce slice-to-slice motion artifacts in T2 FSE imaging by modifying the acquisition strategy.
  • To demonstrate the applicability of the modified acquisition in prostate MRI.

Main Methods:

  • A novel segmented acquisition approach was developed, subdividing each pass into multiple segments and interleaving them.
  • This interleaving minimizes the time lag between acquiring adjacent or overlapping slices, thereby reducing motion.
  • The method was implemented for acquiring T2 FSE axial slices and evaluated in phantoms and 14 prostate MRI patients.

Main Results:

  • Segmented acquisition demonstrated statistically superior performance for all criteria in sagittal reformats compared to the original method.
  • While the original acquisition trended slightly better for axial image sharpness, the difference was not statistically significant.
  • The segmented acquisition was significantly superior in reducing artifacts in axial images.

Conclusions:

  • The new segmented acquisition strategy effectively reduces scalloping motion artifacts in T2 FSE MRI reformats.
  • This technique maintains image sharpness in acquired axial slices, proving beneficial for prostate MRI.
  • The modified approach enhances diagnostic accuracy by minimizing motion-related artifacts.