DocumentCode :
1194894
Title :
Quantitative measurement of creatine content in skeletal muscle using 1H-MRS
Author :
Saotome, Takako ; Sekino, Masaki ; Eto, Fumio ; Ueno, Shoogo
Author_Institution :
Dept. of Biomed. Eng., Univ. of Tokyo, Japan
Volume :
41
Issue :
10
fYear :
2005
Firstpage :
4164
Lastpage :
4166
Abstract :
We obtained 1H magnetic resonance spectra of skeletal muscles, with and without atrophy, and quantitatively evaluated the content of creatine in the muscles. Wister rats at nine weeks old were subjected to sciatic nerve transection of the left hindlimb which caused neurogenic muscular atrophy at the left gastrocnemius muscle. The spectra were acquired from a 2×2×2-mm3 voxel located on the left gastrocnemius muscle with arrayed repetition times (TR) and echo times (TE). The signal intensities and the relaxation times of water and creatine were estimated by fitting a model equation to the measured spectra. The content of creatine was estimated from the signal intensities, the relaxation times, and the content of water. There was no significant difference in the relaxation times of water and creatine between the denervated group and the control group. The water content of the denervated group was significantly smaller than that of the control group (p<0.01). The creatine content of the denervated group was smaller than that of the control group, though the difference was not statistically significant. This method is useful for quantifying the creatine content on the order of 10-3 mol/kg.
Keywords :
biological techniques; biomedical measurement; magnetic resonance spectroscopy; muscle; H magnetic resonance spectra; H-MRS; creatine content; denervation; gastrocnemius muscle; model equation; neurogenic muscular atrophy; relaxation times; sciatic nerve transection; signal intensities; skeletal muscle; water content; Atrophy; Biochemistry; Biomedical measurements; Magnetic resonance; Magnetic resonance imaging; Muscles; Neoplasms; Rats; Spectroscopy; Tellurium; Creatine; denervation; muscle atrophy;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.854853
Filename :
1519568
Link To Document :
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