Background:
Performance of quantification methods utilized for proton magnetic resonance spectroscopy (1H-MRS), implemented either in time-domain or in frequency-domain, is limited due to static field (B0) inhomogeneities and the overlapping nature of metabolites in actual low-SNR environments. Sparse representation methods for MRS quantification have suggested robust and high performance algorithms which have been previously implemented based on Gaussian and Lorentzian models, to be selected by some pursuit methods, e.g. parallel basis selection method based on the focal underdetermined system solver (FOCUSS) algorithm. FOCUSS algorithm performs well in correlated environments, however it is computationally more intense compared to the selection methods.