2000 Mar;11(3):330-5. Links 3.0.CO;2-F" toner cartridge how to lose weight

gainingmuscle mass, microsoftexcel body fat calculator, computer language, lanier, how to lose weight, environment, sourcesfat diet, grabber, food processing, human body composition, sportline, askthe dietitian, mortality, cellular, extension, inkjet, donkeys, nuclear weapons, missile defense, pig weaning, and the ratio of body fat to lean body mass (r = 0.9169). This MR spectroscopy-based technique is sufficiently accurate and may be applicable to assessment of human body composition.PMID: 10739566 [PubMed - indexed for MEDLINE]  Display  Summary Brief Abstract Citation MEDLINE XML UI List LinkOut ASN.1 Related Articles Cited Articles Cited in Books CancerChrom Links Domain Links 3D Domain Links toner cartridge GEO DataSet Links Gene Links toner cartridge Gene (GeneRIF) Links Genome Links Project Links GENSAT Links GEO Profile toner cartridge Links HomoloGene Links Nucleotide Links OMIA Links OMIM (calculated) Links OMIM (cited) Links BioAssay Links Compound Links Compound via MeSH Substance Links Substance via MeSH PMC Links Cited in PMC PopSet Links Probe Links Protein Links SNP Links Structure Links UniGene Links UniSTS Links  Show  5 10 20 50 100 200 500 Sort by Pub Date First Author Last Author Journal Send to Text File Printer Clipboard E-mail Order Write to the Help Desk NCBI | NLM | NIH Department of Health & Human Services Privacy Statement | Freedom of Information Act | Disclaimer Mar 13 2006 06:33:20 bgcolor="#336699" align="left">My NCBI[Sign In] [Register]
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2000 Mar;11(3):330-5. Links 3.0.CO;2-F" target="_blank"> Measurement of relative fat content by proton magnetic resonance spectroscopy using a clinical imager.Kamba M, Meshitsuka S, Iriguchi N, Koda M, Kimura K, Ogawa T.Department of Radiology, Tottori University Faculty of Medicine, how to lose weight Yonago, Japan.The aim of this how to lose weight study was to determine how to lose weight the applicability of a proton magnetic resonance (MR) spectroscopy-based technique using a clinical 1.5-T MR imager for assessment of relative fat content. Proton MR spectra were obtained from a trunk phantom and 23 volunteers using a single free induction decay measurement. The ratios of fat methyl and methylene proton resonance to the water proton resonance were compared with the ratio of oil weight to water weight for the phantom, and with the ratio of body fat to lean body mass estimated by bioelectrical impedance analysis for the human subjects. Good linear relationships were found between the MR metabolite ratio and the ratio of oil weight to water weight (r = 0.9989),
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