Detection and correction of patient motion in dynamic 15O-water PET MPI

J Nucl Cardiol. 2023 Dec;30(6):2736-2749. doi: 10.1007/s12350-023-03358-5. Epub 2023 Aug 28.

Abstract

Background: Patient motion constitutes a limitation to 15O-water cardiac PET imaging. We examined the ability of image readers to detect and correct patient motion using simulated motion data and clinical patient scans.

Methods: Simulated data consisting of 16 motions applied to 10 motion-free scans were motion corrected using two approaches, pre-analysis and post-analysis for motion identification. Both approaches employed a manual frame-by-frame correction method. In addition, a clinical cohort was analyzed for assessment of prevalence and effect of motion and motion correction.

Results: Motion correction was performed on 94% (pre-analysis) and 64% (post-analysis) of the scans. Large motion artifacts were corrected in 91% (pre-analysis) and 74% (post-analysis) of scans. Artifacts in MBF were reduced in 56% (pre-analysis) and 58% (post-analysis) of the scans. The prevalence of motion in the clinical patient cohort (n = 762) was 10%. Motion correction altered exam interpretation in only 10 (1.3%) clinical patient exams.

Conclusion: Frame-by-frame motion correction after visual inspection is useful in reducing motion artifacts in cardiac 15O-water PET. Reviewing the initial results (parametric images and polar maps) as part of the motion correction process, reduced erroneous corrections in motion-free scans. In a large clinical cohort, the impact of motion correction was limited to few patients.

Keywords: PET; image analysis; myocardial blood flow; perfusion agents.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Artifacts
  • Heart / diagnostic imaging
  • Humans
  • Image Processing, Computer-Assisted / methods
  • Motion
  • Myocardial Perfusion Imaging* / methods
  • Positron-Emission Tomography / methods
  • Water*

Substances

  • Water