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Interleaved multishot imaging by spatiotemporal encoding: A fast, self-referenced method for high-definition

Rita Schmidt1, Amir Seginer1, Lucio Frydman1

  • 1Chemical Physics Department, Weizmann Institute of Science, Rehovot, Israel.

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Summary

An interleaved spatiotemporal encoding (SPEN) method offers improved imaging by correcting motion and artifacts. This advanced technique enables high-definition functional and diffusion MRI in challenging environments.

Keywords:
full refocusinghigh-definition fMRIhigh-resolution ADCsinterleaved MRIreferenceless reconstructionspatiotemporal encoding

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Area of Science:

  • Magnetic Resonance Imaging (MRI)
  • Image Reconstruction
  • Biomedical Engineering

Background:

  • Single-shot imaging by spatiotemporal encoding (SPEN) offers artifact immunity compared to echo planar imaging.
  • Further enhancements in resolution and signal-to-noise ratio are possible by moving beyond single-scan limitations.

Purpose of the Study:

  • To develop and evaluate an interleaved SPEN sequence for improved image quality.
  • To explore the potential of a referenceless correction algorithm for optimized image acquisition.

Main Methods:

  • Exploited SPEN's lack of aliasing during undersampling for interleaved shot segmentation.
  • Implemented a navigator-free image reconstruction analysis for automatic correction of inaccuracies.
  • Accounted for phase noises and object motion during signal acquisition.

Main Results:

  • The interleaved SPEN method produced high-quality images in phantoms and human volunteers, even in challenging environments.
  • Achieved submillimeter functional MRI activation maps localized to gray matter.
  • Obtained submillimeter diffusion coefficient maps of human brains.

Conclusions:

  • Developed an interleaved SPEN approach for high-definition image acquisition.
  • This technique shows promise for expanded functional and diffusion MRI applications.
  • Enables advanced imaging in inhomogeneous or mobile environments.