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Pulsed-gradient spin-echo monitoring of restricted diffusion in multilayered structures: Challenges and solutions

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Résumé

A general mathematical basis is developed for computation of the pulsed-gradient spin-echo signal attenuated due to restricted diffusion in multilayered structures (e.g., multiple slabs, cylindrical or spherical shells). Individual layers are characterized by (different) diffusion coefficients and relaxation times, while boundaries between adjacent layers are characterized by (different) permeabilities. Arbitrary temporal profile of the applied magnetic field can be incorporated. The signal is represented in a compact matrix form and the explicit analytical formulas for the elements of the underlying matrices are derived. The implemented algorithm is faster and much more accurate than classical techniques such as Monte Carlo simulations or numerical resolutions of the Bloch-Torrey equation. The algorithm can be applied for studying restricted diffusion in biological systems which exhibit a multilayered structure such as composite tissues, axons and living cells.

langue originaleAnglais
titreMagnetic Resonance in Porous Media - Proc. of the 10th Intl. Bologna Conference on Magnetic Resonance in Porous Media, MRPM10, including the 10th Colloquium on Mobile Magnetic Resonance, CMMR10
Pages65-68
Nombre de pages4
Les DOIs
étatPublié - 27 avr. 2011
Evénement10th International Bologna Conference on Magnetic Resonance in Porous Media, MRPM10, including the 10th Colloquium on Mobile Magnetic Resonance, CMMR10 - Leipzig, Allemagne
Durée: 12 sept. 201016 sept. 2010

Série de publications

NomAIP Conference Proceedings
Volume1330
ISSN (imprimé)0094-243X
ISSN (Electronique)1551-7616

Une conférence

Une conférence10th International Bologna Conference on Magnetic Resonance in Porous Media, MRPM10, including the 10th Colloquium on Mobile Magnetic Resonance, CMMR10
Pays/TerritoireAllemagne
La villeLeipzig
période12/09/1016/09/10

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