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Quantitative imaging of perfusion using a single subtraction (QUIPSS and QUIPSS II)

Magnetic Resonance in Medicine · 1998 · Vol. 39(5) · pp. 702–708
Eric C. WongRichard B. BuxtonLawrence R. Frank

Abstract

In the pulsed arterial spin labeling (ASL) techniques EPISTAR, PICORE, and FAIR, subtraction of two images in which inflowing blood is first tagged and then not tagged yields a qualitative map of perfusion. An important reason this map is not quantitative is that there is a spatially varying delay in the transit of blood from the tagging region to the imaging slice that cannot be measured from a single subtraction. We introduce here two modifications of pulsed ASL (QUIPSS and QUIPSS II) that avoid this problem by applying additional saturation pulses to control the time duration of the tagged bolus, rendering the technique relatively insensitive to transit delays and improving the quantitation of perfusion.

Advanced MRI Techniques and ApplicationsAtomic and Subatomic Physics ResearchCardiac Imaging and DiagnosticsSubtractionPerfusionTransit timeMean transit timeArterial spin labelingPerfusion scanningNuclear medicineComputer scienceImage subtractionArtificial intelligence

MeSH terms

BrainBrain MappingCerebrovascular CirculationHumansImage Processing, Computer-AssistedMagnetic Resonance ImagingSpin LabelsSubtraction TechniqueTime Factors
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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
Perfusion imaging
Magnetic Resonance in Medicine · 1992 · 1,558 citations
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