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Image-based method for retrospective correction of physiological motion effects in fMRI: RETROICOR

Magnetic Resonance in Medicine · 2000 · Vol. 44(1) · pp. 162–167
Gary H. GloverTie‐Qiang LiDavid Ress

Abstract

Respiration effects and cardiac pulsatility can induce signal modulations in functional MR image time series that increase noise and degrade the statistical significance of activation signals. A simple image-based correction method is described that does not have the limitations of k-space methods that preclude high spatial frequency correction. Low-order Fourier series are fit to the image data based on time of each image acquisition relative to the phase of the cardiac and respiratory cycles, monitored using a photoplethysmograph and pneumatic belt, respectively. The RETROICOR method is demonstrated using resting-state experiments on three subjects and compared with the k-space method. The method is found to perform well for both respiration- and cardiac-induced noise without imposing spatial filtering on the correction. Magn Reson Med 44:162-167, 2000.

Advanced MRI Techniques and ApplicationsFunctional Brain Connectivity StudiesAtomic and Subatomic Physics ResearchNoise (video)Computer scienceSIGNAL (programming language)Image (mathematics)PhotoplethysmogramCommunication noiseArtificial intelligenceComputer visionPattern recognition (psychology)Filter (signal processing)

MeSH terms

BrainHeartHumansImage Processing, Computer-AssistedMagnetic Resonance ImagingMovementRespiratory Physiological PhenomenaArtifacts

Funding

  • Lucas Foundation
  • National Institutes of Health
  • National Center for Research Resources
Citations
2,067
FWCI
5.69
field-weighted impact
References
16
Percentile
96%
vs. same field & year
Citations per year
References
Dynamic magnetic resonance imaging of human brain activity during primary sensory stimulation.
Proceedings of the National Academy of Sciences · 1992 · 4,233 citations
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