Reliable Bioelectrical Impedance Analysis Estimate of Fat‐free Mass in Liver, Lung, and Heart Transplant Patients
- 1 March 2001
- journal article
- research article
- Published by Wiley in Journal of Parenteral and Enteral Nutrition
- Vol. 25 (2) , 45-51
- https://doi.org/10.1177/014860710102500245
Abstract
Background: Bioelectrical impedance analysis (BIA) can be valuable in evaluating the fat-free (FFM) and fat masses (FM) in patients, provided that the BIA equation is valid in the subjects studied. The purpose of the clinical evaluation was to evaluate the applicability of a single BIA equation to predict FFM in pre- and posttransplant patients and to compare FFM and FM in transplant patients with healthy controls. Methods: Pre- and posttransplant liver, lung, and heart patients (159 men, 86 women) were measured by two methods—50-kHz BIA-derived FFM (FFMBIA) by Xitron instrument and DXA-derived FFM (FFMDXA) by Hologic QDR-4500 instrument—and compared with healthy controls (196 men, 129 women), aged 20 to 79 years. Results: The high correlation coefficient (r = .974), small bias (0.3 ± 2.3 kg), and small SEE (2.3 kg) suggest that BIA using the GENEVA equation is able to predict FFM in pre- and posttransplant patients. The study shows that the lower weight seen in transplant men and women than in controls was due to lower FFM, which was partially offset by higher FM in men but not in women. Furthermore, the higher weights in posttransplant than in pretransplant patients were due to higher FM and % FM that was confirmed by lower FFM/FM ratio in posttransplant patients. Conclusions: Single 50-kHz frequency BIA permits measurement of FFM in pre- and posttransplant patients. (journal of Parenteral and Enteral Nutrition 25:45-51, 2001)Keywords
This publication has 25 references indexed in Scilit:
- Dynamic assessment of fat-free mass during catabolism and recoveryCurrent Opinion in Clinical Nutrition and Metabolic Care, 2000
- Single- and multifrequency models for bioelectrical impedance analysis of body water compartmentsJournal of Applied Physiology, 1999
- Six-compartment body composition model: Inter-method comparisons of total body fat measurementInternational Journal of Obesity, 1998
- Evaluation of Multi-Frequency Bio-Impedance Analysis for the Assessment of Extracellular and Total Body Water in Surgical PatientsClinical Science, 1994
- Patient dose in dual x-ray absorptiometryOsteoporosis International, 1994
- Assessment of whole-body composition with dual-energy x-ray absorptiometry.Radiology, 1992
- Protein-calorie malnutrition in liver cirrhosisJournal of Molecular Medicine, 1992
- Body composition and exercise performance in patients with chronic obstructive pulmonary disease.Thorax, 1991
- Comparison of different bioelectrical impedance analyzers in the prediction of body compositionAmerican Journal of Human Biology, 1989
- STATISTICAL METHODS FOR ASSESSING AGREEMENT BETWEEN TWO METHODS OF CLINICAL MEASUREMENTThe Lancet, 1986