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An Optimal Radial Profile Order Based on the Golden Ratio for Time-Resolved MRI

IEEE Transactions on Medical Imaging · 2007 · Vol. 26(1) · pp. 68–76
S. WinkelmannTobias SchaeffterThomas KœhlerHolger EggersOlaf Doessel

Abstract

In dynamic magnetic resonance imaging (MRI) studies, the motion kinetics or the contrast variability are often hard to predict, hampering an appropriate choice of the image update rate or the temporal resolution. A constant azimuthal profile spacing (111.246 degrees), based on the Golden Ratio, is investigated as optimal for image reconstruction from an arbitrary number of profiles in radial MRI. The profile order is evaluated and compared with a uniform profile distribution in terms of signal-to-noise ratio (SNR) and artifact level. The favorable characteristics of such a profile order are exemplified in two applications on healthy volunteers. First, an advanced sliding window reconstruction scheme is applied to dynamic cardiac imaging, with a reconstruction window that can be flexibly adjusted according to the extent of cardiac motion that is acceptable. Second, a contrast-enhancing k-space filter is presented that permits reconstructing an arbitrary number of images at arbitrary time points from one raw data set. The filter was utilized to depict the T1-relaxation in the brain after a single inversion prepulse. While a uniform profile distribution with a constant angle increment is optimal for a fixed and predetermined number of profiles, a profile distribution based on the Golden Ratio proved to be an appropriate solution for an arbitrary number of profiles.

MeSH terms

AlgorithmsImage EnhancementImage Interpretation, Computer-AssistedMagnetic Resonance ImagingSensitivity and SpecificityReproducibility of ResultsInformation Storage and RetrievalImaging, Three-Dimensional
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698
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References
Time Saving in Measurement of NMR and EPR Relaxation Times
Review of Scientific Instruments · 1970 · 805 citations
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