A random-walk simulation program was developed to study the effect of dephasing spins in a uniform magnetic-field gradient in a porous material. It is shown that this simulation program correctly reproduces basic nuclear magnetic resonance behavior, such as the formation of a spin echo. The spin-echo decay due to dephasing in a nonrestricted medium gives the well-known exponential relation containing the cube of time, whereas the spin-echo decay due to dephasing in a porous material gives a monoexponential decay. By varying the pore size and magnetic-field gradient, the motional averaging regime and the localization regime can be simulated. Moreover, the unknown intermediate regime is investigated. By choosing the right scaling parameters, ...
AbstractIn NMR or MRI of complex materials, including biological tissues and porous materials, magne...
A fast random walk (FRW) algorithm is adapted to compute diffusion-weighted NMR signals in a Menger ...
In this thesis the Monte Carlo translational diffusion simulation method is used to calculate 1H (wa...
A random-walk simulation program was developed to study the effect of dephasing spins in a uniform m...
The NMR dephasing behavior of the nuclear spins of a fluid confined in a porous material can be inve...
The random walk method is used to simulate magnetization decay in porous media. The simulations were...
Under ideal conditions, in an isotropic homogeneous system, pulsed field gradient spin-echo (PFGSE) ...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
We derive an expression for the magnetization M(k,) in a pulsed-field-gradient experiment for spins ...
We derive an expression for the magnetization M(k,t) in a pulsed fiield gradient spin echo (PFGSE) e...
The NMR pulsed field gradient spin-echo (PFGSE) amplitude M(k,t) is a direct measure of the diffusio...
Nuclear magnetic resonance (NMR) relaxation experimentation is an e ective technique for non-destruc...
The determination of penetration depth and distribution of water at surfaces is essential to knowled...
The work presented in this thesis introduces a novel Monte Carlo simulation algorithm designed to re...
Pulsed gradient spin-echo nuclear magnetic resonance (PGSE NMR) diffusion measurements provide a pow...
AbstractIn NMR or MRI of complex materials, including biological tissues and porous materials, magne...
A fast random walk (FRW) algorithm is adapted to compute diffusion-weighted NMR signals in a Menger ...
In this thesis the Monte Carlo translational diffusion simulation method is used to calculate 1H (wa...
A random-walk simulation program was developed to study the effect of dephasing spins in a uniform m...
The NMR dephasing behavior of the nuclear spins of a fluid confined in a porous material can be inve...
The random walk method is used to simulate magnetization decay in porous media. The simulations were...
Under ideal conditions, in an isotropic homogeneous system, pulsed field gradient spin-echo (PFGSE) ...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
We derive an expression for the magnetization M(k,) in a pulsed-field-gradient experiment for spins ...
We derive an expression for the magnetization M(k,t) in a pulsed fiield gradient spin echo (PFGSE) e...
The NMR pulsed field gradient spin-echo (PFGSE) amplitude M(k,t) is a direct measure of the diffusio...
Nuclear magnetic resonance (NMR) relaxation experimentation is an e ective technique for non-destruc...
The determination of penetration depth and distribution of water at surfaces is essential to knowled...
The work presented in this thesis introduces a novel Monte Carlo simulation algorithm designed to re...
Pulsed gradient spin-echo nuclear magnetic resonance (PGSE NMR) diffusion measurements provide a pow...
AbstractIn NMR or MRI of complex materials, including biological tissues and porous materials, magne...
A fast random walk (FRW) algorithm is adapted to compute diffusion-weighted NMR signals in a Menger ...
In this thesis the Monte Carlo translational diffusion simulation method is used to calculate 1H (wa...