Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5407509 | Journal of Magnetic Resonance | 2007 | 8 Pages |
Abstract
The recent re-introduction of the two-dimensional Fourier transformation (2D-FT) has allows for the transformation of arbitrarily sampled time domain signals. In this respect, radial sampling, where two incremented time dimensions (t1 and t2) are sampled such that t1 = Ïcos α and t2 = Ïsin α, is especially appealing because of the relatively small leakage artifacts that occur upon Fourier transformation. Unfortunately radially sampled time domain data results in a fundamental artifact in the frequency domain manifested as a ridge of intensity extending through the peak positions perpendicular to +/â the radial sampling angle. Successful removal of the ridge artifacts using existing algorithms requires absorptive line shapes. Here we present two procedures for retrospective phase correction of arbitrarily sampled data.
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Physical and Theoretical Chemistry
Authors
John M. Gledhill, A. Joshua Wand,