-
Something wrong with this record ?
Intramyocellular lipid quantification from 1H long echo time spectra at 1.5 and 3 T by means of the LCModel technique
Skoch A, Jírů F, Dezortová M, Krusinová E, Kratochvílová S, Pelikánová T, Grodd W, Hájek M.
Language English Country United States
Document type Comparative Study, Controlled Clinical Trial
Grant support
NB7517
MZ0
CEP Register
Digital library NLK
Full text - Část
Source
NLK
Wiley Online Library (archiv)
from 1996-01-01 to 2012-12-31
Wiley Free Content
from 1999 to 5 years ago
- MeSH
- Algorithms MeSH
- Analysis of Variance MeSH
- Models, Biological MeSH
- Time Factors MeSH
- Diabetes Mellitus metabolism MeSH
- Adult MeSH
- Financing, Organized MeSH
- Image Interpretation, Computer-Assisted MeSH
- Muscle, Skeletal metabolism MeSH
- Middle Aged MeSH
- Humans MeSH
- Magnetic Resonance Spectroscopy methods MeSH
- Magnetics MeSH
- Lipid Metabolism physiology MeSH
- Reference Values MeSH
- Reproducibility of Results MeSH
- Check Tag
- Adult MeSH
- Middle Aged MeSH
- Humans MeSH
- Publication type
- Controlled Clinical Trial MeSH
- Comparative Study MeSH
PURPOSE: To introduce a method of independent determination of CH2 and CH3 components of intramyocellular lipids (IMCLs) by using long TE for spectra measurement and LCModel for spectra evaluation, to test this technique in controls and insulin-resistant subjects, and to compare results at 1.5 and 3 T. MATERIALS AND METHODS: Eight healthy volunteers and 11 patients with type 2 diabetes mellitus underwent measurement using a 1.5-T MR scanner; six healthy volunteers were measured using a 3-T MR scanner. Spectra from the tibialis anterior muscle were acquired by using a point resolved spectroscopy (PRESS) sequence with the following parameters: TR/TE/ACQ = 2000 msec/270 msec/256. Spectra were processed by LCModel 6.1 software with two types of adopted basis-set. RESULTS: Spectra with good separation of both CH2 and CH3 components of IMCL and extramyocellular lipids (EMCLs) were obtained and the LCModel routine was successfully applied. The reproducibility comparison (N= 7 at 1.5 T vs. N = 5 at 3 T) showed that better results can be obtained at higher B0 values. The comparison of the healthy and insulin-resistant subjects proved that both IMCL_CH2/Cr and IMCL_CH3/Cr ratios significantly differ. CONCLUSION: Long TE spectroscopy of the human muscle with IMCL quantification using the LCModel technique can detect changes in IMCL levels as well as help in the study of fatty acyl chain composition. Using a higher field strength increased the intra-individual reproducibility by approximately 150%. Copyright 2006 Wiley-Liss, Inc.
- 000
- 00000naa 2200000 a 4500
- 001
- bmc07522920
- 003
- CZ-PrNML
- 005
- 20130312112001.0
- 008
- 090511s2006 xxu e eng||
- 009
- AR
- 040 __
- $a ABA008 $b cze $c ABA008 $d ABA008 $e AACR2
- 041 0_
- $a eng
- 044 __
- $a xxu
- 100 1_
- $a Škoch, Antonín, $7 xx0071615 $d 1976-
- 245 10
- $a Intramyocellular lipid quantification from 1H long echo time spectra at 1.5 and 3 T by means of the LCModel technique / $c Skoch A, Jírů F, Dezortová M, Krusinová E, Kratochvílová S, Pelikánová T, Grodd W, Hájek M.
- 314 __
- $a MR Unit, Department of Diagnostic and Interventional Radiology, Institute for Clinical and Experimental Medicine, Prague, Czech Republic
- 520 9_
- $a PURPOSE: To introduce a method of independent determination of CH2 and CH3 components of intramyocellular lipids (IMCLs) by using long TE for spectra measurement and LCModel for spectra evaluation, to test this technique in controls and insulin-resistant subjects, and to compare results at 1.5 and 3 T. MATERIALS AND METHODS: Eight healthy volunteers and 11 patients with type 2 diabetes mellitus underwent measurement using a 1.5-T MR scanner; six healthy volunteers were measured using a 3-T MR scanner. Spectra from the tibialis anterior muscle were acquired by using a point resolved spectroscopy (PRESS) sequence with the following parameters: TR/TE/ACQ = 2000 msec/270 msec/256. Spectra were processed by LCModel 6.1 software with two types of adopted basis-set. RESULTS: Spectra with good separation of both CH2 and CH3 components of IMCL and extramyocellular lipids (EMCLs) were obtained and the LCModel routine was successfully applied. The reproducibility comparison (N= 7 at 1.5 T vs. N = 5 at 3 T) showed that better results can be obtained at higher B0 values. The comparison of the healthy and insulin-resistant subjects proved that both IMCL_CH2/Cr and IMCL_CH3/Cr ratios significantly differ. CONCLUSION: Long TE spectroscopy of the human muscle with IMCL quantification using the LCModel technique can detect changes in IMCL levels as well as help in the study of fatty acyl chain composition. Using a higher field strength increased the intra-individual reproducibility by approximately 150%. Copyright 2006 Wiley-Liss, Inc.
- 650 _2
- $a financování organizované $7 D005381
- 650 _2
- $a dospělí $7 D000328
- 650 _2
- $a algoritmy $7 D000465
- 650 _2
- $a analýza rozptylu $7 D000704
- 650 _2
- $a diabetes mellitus $x metabolismus $7 D003920
- 650 _2
- $a lidé $7 D006801
- 650 _2
- $a interpretace obrazu počítačem $7 D007090
- 650 _2
- $a metabolismus lipidů $x fyziologie $7 D050356
- 650 _2
- $a magnetická rezonanční spektroskopie $x metody $7 D009682
- 650 _2
- $a magnetismus $7 D008280
- 650 _2
- $a lidé středního věku $7 D008875
- 650 _2
- $a biologické modely $7 D008954
- 650 _2
- $a kosterní svaly $x metabolismus $7 D018482
- 650 _2
- $a referenční hodnoty $7 D012016
- 650 _2
- $a reprodukovatelnost výsledků $7 D015203
- 650 _2
- $a časové faktory $7 D013997
- 655 _2
- $a srovnávací studie $7 D003160
- 655 _2
- $a klinické zkoušky kontrolované $7 D018848
- 700 1_
- $a Jírů, Filip, $d 1976- $7 xx0074154
- 700 1_
- $a Dezortová, Monika, $d 1970- $7 xx0061339
- 700 1_
- $a Krušinová, Eva $7 xx0082037
- 700 1_
- $a Kratochvílová, Simona $7 xx0133418
- 700 1_
- $a Pelikánová, Terezie, $d 1954- $7 jn20000807012
- 700 1_
- $a Grodd, Wolfgang
- 700 1_
- $a Hájek, Milan, $d 1947- $7 xx0074172
- 773 0_
- $w MED00004911 $t Journal of magnetic resonance imaging $g Roč. 23, č. 5 (2006), s. 728-735 $x 1053-1807
- 910 __
- $a ABA008 $b x $y 9
- 990 __
- $a 20090506084234 $b ABA008
- 991 __
- $a 20130312112216 $b ABA008
- 999 __
- $a ok $b bmc $g 651010 $s 504178
- BAS __
- $a 3
- BMC __
- $a 2006 $b 23 $c 5 $d 728-735 $i 1053-1807 $m Journal of magnetic resonance imaging $x MED00004911
- GRA __
- $a NB7517 $p MZ0
- LZP __
- $a 2009-B2/vtme