2010
DOI: 10.1002/nbm.1622
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In vivo characterization of the liver fat 1H MR spectrum

Abstract: A theoretical triglyceride model was developed for in vivo human liver fat 1H MRS characterization, using the number of double bonds (–CH=CH–), number of methylene-interrupted double bonds (–CH=CH–CH2–CH=CH–) and average fatty acid chain length. Five 3 T, single-voxel, stimulated echo acquisition mode spectra (STEAM) were acquired consecutively at progressively longer TEs in a fat–water emulsion phantom and in 121 human subjects with known or suspected nonalcoholic fatty liver disease. T2-corrected peak areas … Show more

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Cited by 492 publications
(694 citation statements)
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“…Regression lines and coefficients are shown with the 95% prediction intervals and 95% confidence intervals. signal in MRI fat quantification techniques [17], since any signal from non-triglyceride lipids (e.g. free fatty acids, phospholipids, cholesterol) can be considered negligible.…”
Section: Discussionmentioning
confidence: 99%
“…Regression lines and coefficients are shown with the 95% prediction intervals and 95% confidence intervals. signal in MRI fat quantification techniques [17], since any signal from non-triglyceride lipids (e.g. free fatty acids, phospholipids, cholesterol) can be considered negligible.…”
Section: Discussionmentioning
confidence: 99%
“…However, going into detail, conditions are more complex since there are several fat components, cf. [24]. Hernando et al demonstrate the influence of this factor for R 2 * determination [25,26].…”
Section: Signal Noise (Snr)mentioning
confidence: 99%
“…The analyses were performed according to the method described in detail by Hamilton et al (22). The mean value of the two voxels acquired was reported as the MRS-determined fat fraction.…”
Section: Mr Spectroscopymentioning
confidence: 99%
“…The algorithm simultaneously estimated T2* and PDFF in each pixel on the image by using nonlinear least squares fitting from all seven echoes. A triglyceride model of human liver fat spectra, described by Hamilton et al (22), was used to incorporate spectral correction of multifrequency interference effects of the protons in the fat. The PDFF in each pixel then was calculated as the ratio of the fat proton density to the total (fat and water) proton density (15).…”
Section: Fat Fraction Calculationmentioning
confidence: 99%