Functional magnetic resonance imaging using non-fourier, spatially selective radiofrequency encoding

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Abstract

A new method for functional magnetic resonance imaging (fMRI) employing non-Fourier encoding using spatially selective radiofrequency (RF)excitation is presented. The method uses manipulation of spatially selective RF pulses to encode spins in the slice-select direction. The method has several advantages over standard multislice approaches. It provides a simple means for monitoring irregularly distributed sections throughout a volume without the need to encode the whole volume. It offers the potential for increased signal-to-noise ratio if an appropriate basis is used for encoding. With a unique design of excitation pulses, it also appears possible to significantly reduce in-flow effects. An interleaved echo-planar imaging (EPI) sequence was adapted for non-Fourier encoding in the slice-select direction and was implemented on a conventional 1.5-Telsa system. The method was then used for functional mapping of the visual and motor areas where significant reduction of in-flow effect was demonstrated. This approach can be adapted to other imaging sequences that are used for fMRI, such as single-shot EPI.

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Yoo, S. S., Guttmann, C. R. G., & Panych, L. P. (1999). Functional magnetic resonance imaging using non-fourier, spatially selective radiofrequency encoding. Magnetic Resonance in Medicine, 41(4), 759–766. https://doi.org/10.1002/(SICI)1522-2594(199904)41:4<759::AID-MRM15>3.0.CO;2-K

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