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Processing strategies for time‐course data sets in functional mri of the human brain

Magnetic Resonance in Medicine · 1993 · Vol. 30(2) · pp. 161–173
Peter A. BandettiniAndrzej JesmanowiczEric C. WongJames S. Hyde

Abstract

Image processing strategies for functional magnetic resonance imaging (FMRI) data sets acquired using a gradient-recalled echo-planar imaging sequence are considered. The analysis is carried out using the mathematics of vector spaces. Data sets consisting of N sequential images of the same slice of brain tissue are analyzed in the time-domain and also, after Fourier transformation, in the frequency domain. A technique for thresholding is introduced that uses the shape of the response in a pixel compared with the shape of a reference waveform as the decision criterion. A method is presented to eliminate drifts in data that arise from subject movement. The methods are applied to experimental FMRI data from the motor-cortex and compared with more conventional image-subtraction methods. Several finger motion paradigms are considered in the context of the various image processing strategies. The most effective method for image processing involves thresholding by shape as characterized by the correlation coefficient of the data with respect to a reference waveform followed by formation of a cross-correlation image. Emphasis is placed not only on image formation, but also on the use of signal processing techniques to characterize the temporal response of the brain to the paradigm.

Advanced MRI Techniques and ApplicationsAdvanced Neuroimaging Techniques and ApplicationsFunctional Brain Connectivity StudiesThresholdingArtificial intelligenceComputer sciencePattern recognition (psychology)Image processingFunctional magnetic resonance imagingComputer visionContext (archaeology)Transformation (genetics)Subtraction

MeSH terms

BrainHumansImage Processing, Computer-AssistedMagnetic Resonance Imaging
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References
Dynamic magnetic resonance imaging of human brain activity during primary sensory stimulation.
Proceedings of the National Academy of Sciences · 1992 · 4,233 citations
Time course EPI of human brain function during task activation
Magnetic Resonance in Medicine · 1992 · 1,940 citations
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