Difference between revisions of "Ngridpts.m"
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{{DISPLAYTITLE:ngridpts.m}} __NOTOC__ | {{DISPLAYTITLE:ngridpts.m}} __NOTOC__ | ||
| − | Estimates the minimum number of spatial grid points | + | Estimates the minimum number of spatial grid points needed for a valid explicit spatial-grid treatment of gradient-driven experiments by checking the Larmor condition for the tightest possible gradient spiral. |
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==Syntax== | ==Syntax== | ||
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==See also== | ==See also== | ||
| − | [[imaging.m]], [[fdmat.m]], [[hydrodynamics.m]] | + | [[imaging.m]], [[fdmat.m]], [[hydrodynamics.m]], [[g2fplanck.m]], [[mri_2d_plot.m]], [[phantoms.m]], [[v2fplanck.m]], [[Imaging_module]] |
''Version 2.1, authors: [[Ilya Kuprov]]'' | ''Version 2.1, authors: [[Ilya Kuprov]]'' | ||
Latest revision as of 19:39, 6 June 2026
Estimates the minimum number of spatial grid points needed for a valid explicit spatial-grid treatment of gradient-driven experiments by checking the Larmor condition for the tightest possible gradient spiral.
Syntax
n=ngridpts(grad_amps,grad_durs,isotope,max_coh_order)
Parameters
grad_amps - a row vector of all gradient amplitudes
in the sequence, T/m
grad_durs - a row vector of all gradient durations
in the sequence, s
isotope - the highest magnetogyric ratio isotope in
the spin system, e.g. '1H'
max_coh_order - maximum order of coherence (either positive
or negative) expected during the experiment
being simulated
sample_size - spatial extent of the sample, m
Outputs
n - the minimum recommended number of discretisation points
Notes
The function returns the minimum number of points, it may in practice be necessary to have several times the number, depending on your accuracy requirements.
See also
imaging.m, fdmat.m, hydrodynamics.m, g2fplanck.m, mri_2d_plot.m, phantoms.m, v2fplanck.m, Imaging_module
Version 2.1, authors: Ilya Kuprov