Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns

The control of edema in burn injured patients is a priority as it can impede the wound healing process. Bioimpedance spectroscopy (BIS) has been identified as a method of swelling assessment that has merit after burns. The aim of this study was to examine the reliability and validity of BIS in the m...

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Main Authors: Kenworthy, P., Grisbrook, Tiffany, Phillips, M., Gittings, P., Wood, F., Gibson, W., Edgar, D.
Format: Journal Article
Published: Pergamon Press 2017
Online Access:http://hdl.handle.net/20.500.11937/56580
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author Kenworthy, P.
Grisbrook, Tiffany
Phillips, M.
Gittings, P.
Wood, F.
Gibson, W.
Edgar, D.
author_facet Kenworthy, P.
Grisbrook, Tiffany
Phillips, M.
Gittings, P.
Wood, F.
Gibson, W.
Edgar, D.
author_sort Kenworthy, P.
building Curtin Institutional Repository
collection Online Access
description The control of edema in burn injured patients is a priority as it can impede the wound healing process. Bioimpedance spectroscopy (BIS) has been identified as a method of swelling assessment that has merit after burns. The aim of this study was to examine the reliability and validity of BIS in the measurement of localised burn wound edema across (1) different dressing conditions (no dressing, non silver and silver dressings) and (2) three electrode positions. BIS resistance (R) was hypothesised to be inversely proportional to fluid (edema) volume. BIS was collected in triplicate for all conditions of interest. BIS repeated measures demonstrated excellent concordance for all BIS resistance variables (R0, Ri, Rinf) (intraclass correlation coefficient = 0.999–1.00, 95% confidence intervals 0.999–1.00) without a systematic difference. Multilevel mixed effects linear regression analysis examined the effect of electrode position and dressing condition on BIS resistance variables. R0, Ri and Rinf significantly increased with decreasing localised limb segment volume (p ≤ 0.01). Resistance was significantly (1) reduced when a silver dressing was in situ (p < 0.01) and (2) increased when a non-silver dressing was insitu (p < 0.01). There was a significant interaction between each dressing condition and localised limb segment volume (p < 0.01). An algorithm was developed to adjust resistance values when a silver dressing is in use. BIS may be used clinically to monitor localised changes in burn wound edema.
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spelling curtin-20.500.11937-565802018-01-11T08:19:29Z Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns Kenworthy, P. Grisbrook, Tiffany Phillips, M. Gittings, P. Wood, F. Gibson, W. Edgar, D. The control of edema in burn injured patients is a priority as it can impede the wound healing process. Bioimpedance spectroscopy (BIS) has been identified as a method of swelling assessment that has merit after burns. The aim of this study was to examine the reliability and validity of BIS in the measurement of localised burn wound edema across (1) different dressing conditions (no dressing, non silver and silver dressings) and (2) three electrode positions. BIS resistance (R) was hypothesised to be inversely proportional to fluid (edema) volume. BIS was collected in triplicate for all conditions of interest. BIS repeated measures demonstrated excellent concordance for all BIS resistance variables (R0, Ri, Rinf) (intraclass correlation coefficient = 0.999–1.00, 95% confidence intervals 0.999–1.00) without a systematic difference. Multilevel mixed effects linear regression analysis examined the effect of electrode position and dressing condition on BIS resistance variables. R0, Ri and Rinf significantly increased with decreasing localised limb segment volume (p ≤ 0.01). Resistance was significantly (1) reduced when a silver dressing was in situ (p < 0.01) and (2) increased when a non-silver dressing was insitu (p < 0.01). There was a significant interaction between each dressing condition and localised limb segment volume (p < 0.01). An algorithm was developed to adjust resistance values when a silver dressing is in use. BIS may be used clinically to monitor localised changes in burn wound edema. 2017 Journal Article http://hdl.handle.net/20.500.11937/56580 10.1016/j.burns.2017.04.022 Pergamon Press restricted
spellingShingle Kenworthy, P.
Grisbrook, Tiffany
Phillips, M.
Gittings, P.
Wood, F.
Gibson, W.
Edgar, D.
Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title_full Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title_fullStr Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title_full_unstemmed Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title_short Bioimpedance spectroscopy: A technique to monitor interventions for swelling in minor burns
title_sort bioimpedance spectroscopy: a technique to monitor interventions for swelling in minor burns
url http://hdl.handle.net/20.500.11937/56580