Estimation of water extraction fractions in rat brain using magnetic resonance measurement of perfusion with arterial spin labeling
- 1 January 1997
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 37 (1) , 58-68
- https://doi.org/10.1002/mrm.1910370110
Abstract
The model used for calculating perfusion by MRI techniques that use endogenous water as a tracer assumes that arterial water is a freely diffusible tracer. Evidence shows that this assumption is not valid in the brain at high blood flow rates, at which movement of water into and out of the microvasculature becomes limited by diffusion across the blood‐brain barrier. In this work, the arterial spin‐labeling technique is used to show that fraction of arterial water that is dependent on blood flow rate remains in the vasculature and does not exchange with brain tissue water. By using perfusion measurements without and with magnetization transfer (MT) effects, one can distinguish arterial label that exchanges into tissue because blood has much smaller MT than brain tissue. Using this technique, the extraction fraction for water is measured in the rat brain at various cerebral blood flow rates. At high flow rates (‐5 ml/g/min), the extraction fraction for water is found to be about 45% in rat brain. Disruption of the blood‐brain barrier with D‐mannitol caused an increase in the extraction fraction for water. It was possible to form an image related to the extraction fraction for water. The ability to estimate the amount of vascular water exchanging with tissue water by MRI may represent a noninvasive approach to detect the integrity of the blood‐brain barrier.Keywords
This publication has 27 references indexed in Scilit:
- Quantitative magnetic resonance imaging of perfusion using magnetic labeling of water proton spins within the detection sliceMagnetic Resonance in Medicine, 1996
- Tissue specific perfusion imaging using arterial spin labelingNMR in Biomedicine, 1994
- Radioactive microsphere validation of a volume localized continuous saturation perfusion measurementMagnetic Resonance in Medicine, 1994
- Magnetic resonance imaging of perfusion in the isolated rat heart using spin inversion of arterial waterMagnetic Resonance in Medicine, 1993
- The use of freely diffusible, NMR-detectable tracers for measuring organ perfusionConcepts in Magnetic Resonance, 1991
- Tracer-Kinetic Models for Measuring Cerebral Blood Flow Using Externally Detected RadiotracersJournal of Cerebral Blood Flow & Metabolism, 1987
- Localized proton spectroscopy using stimulated echoesJournal of Magnetic Resonance (1969), 1987
- Continuous measurement of cerebral blood volume in rats with the photoelectric technique: Effect of morphine and naloxoneLife Sciences, 1986
- Projection angiograms of blood labeled by adiabatic fast passageMagnetic Resonance in Medicine, 1986
- The Effects of Changes in Pa CO 2 Cerebral Blood Volume, Blood Flow, and Vascular Mean Transit TimeStroke, 1974