Title of article :
Incorporating reversible and irreversible transverse relaxation effects into Steady State Free Precession (SSFP) signal intensity expressions for fMRI considerations
Author/Authors :
Mulkern، نويسنده , , Robert V. and Balasubramanian، نويسنده , , Mukund and Orbach، نويسنده , , Darren B. and Mitsouras، نويسنده , , Dimitrios and Haker، نويسنده , , Steven J.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
Among the multiple sequences available for functional magnetic resonance imaging (fMRI), the Steady State Free Precession (SSFP) sequence offers the highest signal-to-noise ratio (SNR) per unit time as well as distortion free images not feasible with the more commonly employed single-shot echo planar imaging (EPI) approaches. Signal changes occurring with activation in SSFP sequences reflect underlying changes in both irreversible and reversible transverse relaxation processes. The latter are characterized by changes in the central frequencies and widths of the inherent frequency distribution present within a voxel. In this work, the well-known frequency response of the SSFP signal intensity is generalized to include the widths and central frequencies of some common frequency distributions on SSFP signal intensities. The approach, using a previously unnoted series expansion, allows for a separation of reversible from irreversible transverse relaxation effects on SSFP signal intensity changes. The formalism described here should prove useful for identifying and modeling mechanisms associated with SSFP signal changes accompanying neural activation.
Keywords :
Transverse relaxation , Irreversible , Reversible , Steady state free precession , FMRI
Journal title :
Magnetic Resonance Imaging
Journal title :
Magnetic Resonance Imaging