Body cell mass: model development and validation at the cellular level of body composition
- 1 January 2004
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 286 (1) , E123-E128
- https://doi.org/10.1152/ajpendo.00227.2003
Abstract
Existing models to estimate the metabolically active body cell mass (BCM) component in vivo remain incompletely developed. The classic Moore model is based on an assumed BCM potassium content of 120 mmol/kg. Our objectives were to develop an improved total body potassium (TBK)-independent BCM prediction model on the basis of an earlier model (Cohn SH, Vaswani AN, Yasumura S, Yuen K, and Ellis KJ. J Lab Clin Med 105: 305-311, 1985), to apply this improved model in subjects to explore the sex and age dependence of the TBK/BCM ratio, to develop a new TBK/BCM model on the basis of physiological associations between TBK and total body water (TBW) at the cellular level of body composition, and to fit this new model with available reference data. Subjects were 112 healthy adults who had the following components measured: TBW by 2H2O or 3H2O, extracellular water by NaBr, total body nitrogen by in vivo neutron activation, bone mineral by dual-energy X-ray absorptiometry, and TBK by whole body counting. Human reference data were collected from earlier published reports. The improved Cohn model-derived TBK/BCM ratio was (mean ± SD) 109.0 ± 10.9 mmol/kg and was not significantly related to sex and age. A simplified version of the new TBK-TBW model provided a TBK/BCM ratio almost identical (109.1 mmol/kg) to that derived by the improved Cohn model. The TBK-BCM prediction formula derived from the improved and new models [BCM (kg) = 1/109 × TBK (mmol); or BCM = 0.0092 × TBK] gives BCM estimates ∼11% higher than the classic Moore model (BCM = 0.0083 × TBK) formulated on rough tissue composition estimates. The present analyses provide a physiologically based, improved, and validated TBK-BCM prediction formula that should prove useful in body composition and metabolism research.Keywords
This publication has 13 references indexed in Scilit:
- Total body protein: a new cellular level mass and distribution prediction modelThe American Journal of Clinical Nutrition, 2003
- Differences in resting metabolic rate between paraplegic and able-bodied subjects are explained by differences in body compositionThe American Journal of Clinical Nutrition, 2003
- Organ-tissue mass measurement allows modeling of REE and metabolically active tissue massAmerican Journal of Physiology-Endocrinology and Metabolism, 1998
- The five-level model: a new approach to organizing body-composition researchThe American Journal of Clinical Nutrition, 1992
- Chemical and elemental analysis of humans in vivo using improved body composition modelsAmerican Journal of Physiology-Endocrinology and Metabolism, 1991
- In vivo determination of body fat by measuring total body carbonThe American Journal of Clinical Nutrition, 1991
- Performance of the Delayed- and Prompt-Gamma Neutron Activation Systems at Brookhaven National LaboratoryPublished by Springer Nature ,1990
- Dual-photon absorptiometry: comparison of bone mineral and soft tissue mass measurements in vivo with established methodsThe American Journal of Clinical Nutrition, 1989
- STATISTICAL METHODS FOR ASSESSING AGREEMENT BETWEEN TWO METHODS OF CLINICAL MEASUREMENTThe Lancet, 1986
- BODY CELL MASS AND LIMITS OF HYDRATION OF THE FAT‐FREE BODY: THEIR RELATION TO ESTIMATED SKELETAL WEIGHT*Annals of the New York Academy of Sciences, 1963