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Distal versus proximal electrode placement in the prediction of total body water and extracellular water from multifrequency bioelectrical impedance

Bibliographic Data

ID19459703
AuthorsPaul Deurenberg (Wageningen University & Research, corresponding author), E van Malkenhorst (Wageningen University & Research), T Schoen (Wageningen University & Research)
Year1995
Volume7
Issue1
Pages77-83
Publication date1995-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAmerican Journal of Human Biology (JOURNAL)
Journal identifiersISSN: 1042-0533 • E-ISSN: 1520-6300
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ajhb.1310070110
PMID28557222
OpenAlexW2150415518
LanguageEN
References cited18

In 48 normal weight subjects, 25 females and 23 males, body impedance was measured at multiple frequencies. Two different electrode placements were used, one the commonly used distal electrode placement, in which the source electrodes are on the dorsal sides of the hand and foot and the sensor electrodes are on ankle and wrist, and a second placement, in which the sensor electrodes are placed more proximally, at the knee and elbow. Theoretically a proximal electrode placement could result in more precise estimates of body water compartments. Total body water (TBW) and extracellular water (ECW) were determined using deuterium oxide dilution and bromide dilution, respectively. The aim of the study was to investigate whether proximal electrode placement results in a more precise estimation of TBW and ECW using multifrequency impedance analysis. Correlation coefficients of impedance and the impedance index stature 2 /impedance) with TBW and ECW were not or were only slightly higher using proximal impedance values, resulting in slight improvement of the estimation error for TBW (0.13 kg) and ECW (0.04 kg). The differences between measured and predicted values (residuals) of TBW and ECW were not correlated with TBW and ECW, but they were correlated with body fat and body water distribution (ECW/TBW). These correlations did not differ between distal and proximal impedance measurements. It is concluded that proximal impedance measurements do not substantially improve the prediction of body water compartments. © 1995 Wiley‐Liss, Inc

Bioelectrical impedance analysis · Body mass index · Body water · Body weight · Electrical impedance · Electrode · Extracellular · Extracellular fluid · Physics · Body Composition Measurement Techniques · Chemistry · Electrical and Bioimpedance Tomography · Materials Science · Medicine · Thermoregulation and physiological responses · Anatomy · Biomedical Engineering · Internal Medicine

  • Statistical Methods for Assessing Agreement Between Two Methods of Clinical Measurement

    Open Access•J Martin Bland, DouglasG Altman•The Lancet•1986

  • Comparison of two bioelectrical impedance analysis models for total body water measurement in children

    Open Access•Lynn C Danford, Dale A Schoeller et al.•Annals of Human Biology•1992

Citation velocityhistorical
Highly citedNo

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