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G B Matson

Explore the profile of G B Matson including associated specialties, affiliations and a list of published articles. Areas
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Articles 62
Citations 696
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Recent Articles
1.
Kaiser L, Young K, Meyerhoff D, Mueller S, Matson G
NMR Biomed . 2007 Mar; 21(1):22-32. PMID: 17377933
The problem of low signal-to-noise ratio for gamma-aminobutyric acid (GABA) in vivo is exacerbated by inefficient detection schemes and non-optimal experimental parameters. To analyze the mechanisms for GABA signal loss...
2.
Mueller S, Laxer K, Barakos J, Cashdollar N, Flenniken D, Vermathen P, et al.
J Neurol . 2005 May; 252(9):1082-92. PMID: 15868069
Purpose: Cortical malformations (CMs) are increasingly recognized as the epileptogenic substrate in patients with medically refractory neocortical epilepsy (NE). The aim of this study was to test the hypotheses that:...
3.
Vermathen P, Ende G, Laxer K, Walker J, Knowlton R, Barbaro N, et al.
Neurology . 2002 Aug; 59(4):633-6. PMID: 12196667
(1)H MRS imaging was obtained from 10 patients with mesial temporal lobe epilepsy before and after surgery. After surgery, metabolic recovery in the contralateral hippocampus was detected. Preoperatively, reduced N-acetylaspartate...
4.
Suhy J, Laxer K, Capizzano A, Vermathen P, Matson G, Barbaro N, et al.
Neurology . 2002 Mar; 58(5):821-3. PMID: 11889252
1H MRS imaging (MRSI) was performed on 15 patients with MRI-negative temporal lobe epilepsy (TLE) who underwent seizure surgery. The non-seizure-free patients (NSF) ipsilateral hippocampal N-acetylaspartate (NAA)/(Cr+Cho) z scores were...
5.
Wiedermann D, Schuff N, Matson G, Soher B, Du A, Maudsley A, et al.
Magn Reson Imaging . 2001 Nov; 19(8):1073-80. PMID: 11711231
Multislice proton magnetic resonance spectroscopic imaging (1H MRSI) at 25 ms echo time was used to measure concentrations of myo-inositol (mI), N-acetylaspartate (NAA), and creatine (Cr) and choline (Cho) in...
6.
Estilaei M, Matson G, Payne G, Leach M, Fein G, Meyerhoff D
Alcohol Clin Exp Res . 2001 Aug; 25(8):1213-20. PMID: 11505053
Background: In vivo phosphorus magnetic resonance spectroscopy (31P MRS) at a magnetic field strength of 1.5 T allows measurement of fairly mobile membrane phospholipids in the human brain. We previously...
7.
Estilaei M, Matson G, Payne G, Leach M, Fein G, Meyerhoff D
Alcohol Clin Exp Res . 2001 Feb; 25(1):89-97. PMID: 11198719
Background: Phosphorus magnetic resonance spectroscopy (31P MRS) allows for the measurement of phospholipids and their breakdown products in the human brain. Fairly mobile membrane phospholipids give rise to a broad...
8.
Capizzano A, Vermathen P, Laxer K, Ende G, Norman D, Rowley H, et al.
Radiology . 2001 Jan; 218(1):144-51. PMID: 11152793
Purpose: To study the feasibility and clinical potential of visual inspection of hydrogen 1 magnetic resonance (MR) spectroscopic metabolite images for the lateralization of unilateral nonlesional temporal lobe epilepsy (TLE)....
9.
Vermathen P, Laxer K, Matson G, Weiner M
Radiology . 2000 Feb; 214(2):403-10. PMID: 10671587
Purpose: To determine the distribution of proton metabolites along the long axis of the hippocampus. Materials And Methods: Proton magnetic resonance (MR) spectroscopic imaging measurements were performed in the hippocampi...
10.
Young K, Matson G, Govindaraju V, Maudsley A
J Magn Reson . 1999 Sep; 140(1):146-52. PMID: 10479557
Computer-aided methods can considerably simplify the use of the product operator formalism for theoretical analysis of NMR phenomena, which otherwise becomes unwieldy for anything but simple spin systems and pulse...