Literature DB >> 9134904

Predicting body cell mass with bioimpedance by using theoretical methods: a technological review.

A De Lorenzo1, A Andreoli, J Matthie, P Withers.   

Abstract

The body cell mass (BCM), defined as intracellular water (ICW), was estimated in 73 healthy men and women by total body potassium (TBK) and by bioimpedance spectroscopy (BIS). In 14 other subjects, extracellular water (ECW) and total body water (TBW) were measured by bromide dilution and deuterium oxide dilution, respectively. For all subjects, impedance spectral data were fit to the Cole model, and ECW and ICW volumes were predicted by using model electrical resistance terms RE and Rt in an equation derived from Hanai mixture theory, respectively. The BIS ECW prediction bromide dilution was r = 0.91, standard error of the estimate (SEE) 0.90 liter. The BIS TBW prediction of deuterium space was r = 0.95, SEE 1.33 liters. The BIS ICW prediction of the dilution-determined ICW was r = 0.87, SEE 1.69 liters. The BIS ICW prediction of the TBK-determined ICW for the 73 subjects was r = 0.85, SEE = 2.22 liters. These results add further support to the validity of the Hanai theory, the equation used, and the conclusion that ECW and ICW volume can be predicted by an approach based solely on fundamental principles.

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Year:  1997        PMID: 9134904     DOI: 10.1152/jappl.1997.82.5.1542

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  95 in total

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9.  How do walking, standing, and resting influence transtibial amputee residual limb fluid volume?

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