Effects of equilibrium exchange on diffusion‐weighted NMR signals: The diffusigraphic “shutter‐speed”
Open Access
- 18 March 2003
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 49 (3) , 450-458
- https://doi.org/10.1002/mrm.10402
Abstract
A general picture is presented of the implications for diffusion-weighted NMR signals of the parsimonious two-site-exchange (2SX) paradigm. In particular, it is shown that the diffusigraphic “shutter-speed,” τ−1 ≡ |q2(DA – DB)|, is a useful concept. The “wave-number” q has its standard definition (given in the text), and DA and DB are the apparent diffusion coefficients (ADCs) of molecules in the two “sites,” A and B, if there is no exchange between them. At low gradient strengths (center of q-space), τ−1 is less than rate constants for intercompartmental water molecule exchange in most tissue cases. Thus, the exchange reaction appears fast. However, q is increased during the course of most experiments and, as it is, the shutter-speed becomes “faster” and the exchange reaction, the kinetics of which do not change, appears to slow down. This causes a multiexponential behavior in the diffusion-weighting dimension, b, which also has its standard definition. This picture is found to be in substantial agreement with a number of different experimental observations. It is applied here to literature 1H2O data from a yeast cell suspension and from the human and the rat brain. Since the equilibrium transcytolemmal water exchange reaction appears to be in the fast-exchange-limit at small b, the initial slope represents the weighted-average of the ADCs of intra- and extracellular water. Of course, in tissue the former is in the significant majority. Furthermore, a consideration of reasonable values for the other 2SX parameters suggests that, for resting brain tissue, the intracellular water ADC may be larger than the extracellular water ADC. There are some independent inferences of this, which would have ramifications for many applications of diffusion-weighted MRI. Magn Reson Med 49:450–458, 2003. Published 2003 Wiley-Liss, Inc.Keywords
This publication has 33 references indexed in Scilit:
- High b‐value q‐space analyzed diffusion‐weighted MRI: Application to multiple sclerosisMagnetic Resonance in Medicine, 2001
- Transient decrease in water diffusion observed in human occipital cortex during visual stimulationProceedings of the National Academy of Sciences, 2001
- In vivo fiber tractography using DT-MRI dataMagnetic Resonance in Medicine, 2000
- Multi-component apparent diffusion coefficients in human brainNMR in Biomedicine, 1999
- Clinical utility of diffusion‐weighted magnetic resonance imaging in the assessment of ischemic strokeAnnals of Neurology, 1997
- Biexponential diffusion attenuation in various states of brain tissue: Implications for diffusion‐weighted imagingMagnetic Resonance in Medicine, 1996
- Spin Echoes in a Constant Gradient and in the Presence of Simple RestrictionJournal of Magnetic Resonance, Series A, 1995
- Diffraction-like effects in NMR diffusion studies of fluids in porous solidsNature, 1991
- Measurement of translational displacement probabilities by NMR: An indicator of compartmentationMagnetic Resonance in Medicine, 1990
- Spin Diffusion Measurements: Spin Echoes in the Presence of a Time-Dependent Field GradientThe Journal of Chemical Physics, 1965