Article ID Journal Published Year Pages File Type
5407509 Journal of Magnetic Resonance 2007 8 Pages PDF
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 = τcos α and t2 = τsin 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 +/− 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.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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