Zugriffsnummer 13019
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel Quantitative MRS : comparison of time domain and time domain frequency domain methods using a novel test procedure
Autor(in); Institution
Elster, Clemens; 8.31, Softwarequalitätssicherung und Messdatenverarbeitung, PTB-Berlin
Link, Alfred; 8.31, Softwarequalitätssicherung und Messdatenverarbeitung, PTB-Berlin
Schubert, Florian; 8.12, Biomedizinische Optik und NMR-Messtechnik, PTB-Berlin
Seifert, Frank; 8.12, Biomedizinische Optik und NMR-Messtechnik, PTB-Berlin
Walzel, Monika; 8.31, Softwarequalitätssicherung und Messdatenverarbeitung, PTB-Berlin
Rinneberg, Herbert; 8, Medizinphysik und metrologische Informationstechnik, PTB-Berlin
Quelle/Jahr Magnetic Resonance Imaging: 18 (2000), 5, 597 - 606
ISSN 0730-725X
DOI
Verlag Amsterdam [u.a.]: Elsevier
Freie Schlagworte MRS quantification ; Model fitting ; Overlapping background ; Time domain ; Frequency domain
Zusammenfassung For quantitative analysis of in vivo MR spectra, a state-of-the-art time domain method was compared with a recently reported time domain frequency domain method which uses wavelets for background characterization. The comparison was made on the basis of results for simulated test problems that were constructed by combining measured and simulated MRS data at different signal-to-noise ratios in order to simultaneously reflect real world difficulties, in particular the overlapping background problem, and to allow for quantitative judgment of a method's accuracy. Incorporating prior knowledge was also considered. The results obtained give insight into the accuracy of the methods when applied to measured MRS data. Due to the improved background characterization, the time domain frequency domain method outperformed the time domain method in some of the test cases. Both methods were also applied to serial brain MR spectra of a healthy volunteer on 10 occasions.

Zitierung

Elster, C., Link, A., Schubert, F., Seifert, F., Walzel, M., & Rinneberg, H. (2000). Quantitative MRS : comparison of time domain and time domain frequency domain methods using a novel test procedure. Magnetic Resonance Imaging, 18(5), 597–606. https://doi.org/10.1016/s0730-725x(00)00140-5

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