Evaluation of variable line‐shape models and prior information in automated 1H spectroscopic imaging analysis
Open Access
- 23 November 2004
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 52 (6) , 1246-1254
- https://doi.org/10.1002/mrm.20295
Abstract
Analysis of in vivo short TE 1H spectra is complicated by broad baseline signal contributions and resonance line-shape distortions. Although the assumptions of ideal metabolite resonance line-shapes and slowly varying baseline signals can be used to separate these signals, the presence of broad or asymmetric line-shapes can invalidate this model. More complex line-shape models are computationally expensive or difficult to constrain, particularly for the low signal-to-noise commonly found for in vivo MR spectroscopic imaging applications. In this study, two time-domain models for fitting variable spectral line-shapes are examined, one using B-splines and another using summed sinusoids. The methods were verified using both phantom and human data, and Monte Carlo simulations were used to evaluate variations in calculated metabolite amplitudes due to interactions between the baseline and line-shape estimations. Additional studies investigated the use of prior line-shape information, obtained from either a water MRSI measurement or calculations from B0 maps, to determine parameter starting values or optimization constraints. Both line-shape models showed the ability to fit the variety of line-shapes present in both the phantom and human MRSI data, with similar or improved accuracy over a Gaussian line-shape model; however, this improvement resulted in only minor improvement for the high-SNR phantom data and moderate improvements in regions with asymmetry for the fitted in vivo metabolite images. The use of prior line-shape information was of most benefit when applied toward setting optimization constraints but was of limited benefit when used to define initial starting values. Magn Reson Med 52:1246–1254, 2004.Keywords
This publication has 13 references indexed in Scilit:
- Automated spectral analysis II: Application of wavelet shrinkage for characterization of non‐parameterized signalsMagnetic Resonance in Medicine, 1998
- Automated spectral analysis III: Application to in Vivo proton MR Spectroscopy and spectroscopic imagingMagnetic Resonance in Medicine, 1998
- Automated spectral analysis I: Formation of a priori information by spectral simulationMagnetic Resonance in Medicine, 1998
- Accurate Numerical Approximation to the Gauss–Lorentz LineshapeJournal of Magnetic Resonance, 1997
- Analysis of macromolecule resonances in 1H NMR spectra of human brainMagnetic Resonance in Medicine, 1994
- Computer Simulations in Magnetic Resonance. An Object-Oriented Programming ApproachJournal of Magnetic Resonance, Series A, 1994
- Estimation of metabolite concentrations from localized in vivo proton NMR spectraMagnetic Resonance in Medicine, 1993
- Inhomogeneity correction for in vivo spectroscopy by high‐resolution water referencingMagnetic Resonance in Medicine, 1992
- Improved quantification of in vivo1H NMR spectra by optimization of signal acquisition and processing and by incorporation of prior knowledge into the spectral fittingMagnetic Resonance in Medicine, 1990
- Water referencing for spectroscopic imagingMagnetic Resonance in Medicine, 1989