Volumetric spectroscopic imaging with spiral-based k-space trajectories

Adalsteinsson E.; Spielman D.M.; Meyer C.; MACOVSKI, A; IRARRAZABAL, P; Topp, S

Keywords: spectroscopy, systems, energy, acid, algorithm, brain, choline, metabolism, ratio, experiment, humans, resonance, human, imaging, image, signal, transformation, computer, article, values, noise, magnetic, mapping, fourier, creatine, reference, radiofrequency, normal, n, aspartic, Processing,, Computer-Assisted, biophysics, acetylaspartic

Abstract

Spiral-based k-space trajectories were applied in a spectroscopic imaging sequence with time-varying readout gradients to collect volumetric chemical shift information. In addition to spectroscopic imaging of low signal-to-noise ratio (SNR) brain metabolites, the spiral trajectories were used to rapidly collect reference signals from the high SNR water signal to automatically phase the spectra and to aid the reconstruction of metabolite maps. Spectral-spatial pulses were used for excitation and water suppression. The pulses were designed to achieve stable phase profiles in the presence of up to 20% variation in the radiofrequency field. A gridding algorithm was used to resample the data onto a rectilinear grid before fast Fourier transforms. This method was demonstrated by in vivo imaging of brain metabolites at 1.5 T with 10 slices of 18 x 18 pixels each. Nominal voxel size was 1.1 cc, spectral bandwidth was 400 Hz, scan time was 18 min for the metabolite scan and 3 min for the reference scan.

Más información

Título de la Revista: Magnetic Resonance in Medicine
Volumen: 39
Número: 6
Editorial: John Wiley & Sons Inc.
Fecha de publicación: 1998
Página de inicio: 889
Página final: 898
URL: http://www.scopus.com/inward/record.url?eid=2-s2.0-0031836131&partnerID=q2rCbXpz