Comparison of Body Composition Measurements in Amputees vs. Non-Amputees

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Please use this identifier to cite or link to this item: http://hdl.handle.net/1853/28684

Title: Comparison of Body Composition Measurements in Amputees vs. Non-Amputees
Author: Larkins, Denise
Abstract: Assessing body composition is important to provide information about nutritional status and health risks. Purpose: The purpose of this study was to examine if there is a significant difference in body composition depending on measurement method and if the discrepancy in measurement method is greater for amputees than for non-amputees. Methods: 23 subjects (12 lower limb amputees and 11 non-amputees) were matched based on sex, age, height, weight, ethnicity, and self-reported activity level. Subject’s body composition was assessed through Dual Energy X-Ray Absorptiometry (DEXA) using a Lunar Prodigy whole body scanner (GE Medical Systems, Madison, WI), Bioelectrical Impedance (BIA) using an OMRON (Bannockburn, IL) hand-held body fat analyzer, and the Skinfold Technique with calipers from Cambridge Scientific Industries, Inc. (Cambridge, Maryland). Results: 2-way ANOVA for % body fat by measurement method and percent body fatness showed a main effect for measurement method (p=0.02). Post hoc showed significant difference between BIA & DEXA (p=0.01). There was no interaction effect for measurement method and body fatness (average vs. above average) p=0.77. 2 way ANOVA for % body fat by measurement method and type of individual (amputee vs. non-amputee) showed a main effect for measurement method (p=0.03). Post hoc showed significant difference between BIA & DEXA (p=0.04). There was no interaction effect for measurement method and type of individual (p=0.70). Conclusions: There is a significant difference in body composition depending on measurement method. There is a trend for body composition to differ more by method for subjects with above average % body fat than for subjects with average % body fat. Likewise, there is a trend for body composition to differ more by method for amputees than for non-amputees.
Description: MSPO Research Presentation, April 15, 2009 at the Centennial Research Building (CRB) Room 119J on the Georgia Tech campus.
Type: Masters Project
Video
URI: http://hdl.handle.net/1853/28684
Date: 2009-04-15
Contributor: Georgia Institute of Technology. School of Applied Physiology
Publisher: Georgia Institute of Technology
Subject: Body composition
Amputees
Bioelectrical impedance
Dual Energy X-ray Absorptiometry
DEXA
Skinfold

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