Literature DB >> 9716465

In vivo lactate editing with simultaneous detection of choline, creatine, NAA, and lipid singlets at 1.5 T using PRESS excitation with applications to the study of brain and head and neck tumors.

J Star-Lack1, D Spielman, E Adalsteinsson, J Kurhanewicz, D J Terris, D B Vigneron.   

Abstract

Two T2-independent J-difference lactate editing schemes for the PRESS magnetic resonance spectroscopy localization sequence are introduced. The techniques, which allow for simultaneous acquisition of the lactate doublet (1.3 ppm) and edited singlets upfield of and including choline (3.2 ppm), exploit the dependence of the in-phase intensity of the methyl doublet upon the time interval separating two inversion (BASING) pulses applied to its coupling partner after initial excitation. Editing method 1, which allows for echo times TE = n/J (n = 1, 2, 3, . . . . ), alters the BASING carrier frequency for each of two cycles so that, for one cycle, the quartet is inverted, whereas, for the other cycle, the quartet is unaffected. Method 2, which also provides water suppression, allows for editing for TE > 1/J by alternating, between cycles, the time interval separating the inversion pulses. Experimental results were obtained at 1.5 T using a Shinnar Le-Roux-designed maximum phase inversion pulse with a filter transition bandwidth of 55 Hz. Spectra were acquired from phantoms and in vivo from the human brain and neck. In a neck muscle study, the lipid suppression factor, achieved partly through the use of a novel phase regularization algorithm, was measured to be over 10(3). Spectra acquired from a primary brain and a metastatic neck tumor demonstrated the presence of lactate and choline signals consistent with abnormal spectral patterns. The advantages and limitations of the methods are analyzed theoretically and experimentally, and significance of the results is discussed. Copyright 1998 Academic Press.

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Year:  1998        PMID: 9716465     DOI: 10.1006/jmre.1998.1458

Source DB:  PubMed          Journal:  J Magn Reson        ISSN: 1090-7807            Impact factor:   2.229


  48 in total

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4.  Tumor regrowth between surgery and initiation of adjuvant therapy in patients with newly diagnosed glioblastoma.

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5.  FID modulus: a simple and efficient technique to phase and align MR spectra.

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7.  Relationship of MR-derived lactate, mobile lipids, and relative blood volume for gliomas in vivo.

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Review 8.  Probing carbohydrate metabolism using hyperpolarized 13 C-labeled molecules.

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9.  Evaluation of MR markers that predict survival in patients with newly diagnosed GBM prior to adjuvant therapy.

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Review 10.  Current practice in the use of MEGA-PRESS spectroscopy for the detection of GABA.

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