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Impedance of Extracellular Fluid, Volume, and Local Tissue Water Can Be Reliably Measured in People with Lower Limb Lymphedema

Jönsson, Charlotta LU ; Johansson, Karin LU ; Bjurberg, Maria LU and Brogårdh, Christina LU (2022) In Physical Therapy 102(5).
Abstract

OBJECTIVE: Lower limb lymphedema (LLL) is a chronic condition. To be able to evaluate changes of LLL over time and effects of interventions reliable measurement methods are important. Currently, there is limited knowledge of the reliability of commonly used measurement methods in LLL. The study objective was to evaluate the test-retest (intrarater) reliability of impedance of extracellular fluid, volume, and local tissue water measurements in people with unilateral or bilateral LLL and measurement errors both for a group of people and for a single individual.

METHODS: Forty-two people with mild to moderate unilateral or bilateral, primary or secondary LLL were measured twice, 2 weeks apart. Impedance of extracellular fluid was... (More)

OBJECTIVE: Lower limb lymphedema (LLL) is a chronic condition. To be able to evaluate changes of LLL over time and effects of interventions reliable measurement methods are important. Currently, there is limited knowledge of the reliability of commonly used measurement methods in LLL. The study objective was to evaluate the test-retest (intrarater) reliability of impedance of extracellular fluid, volume, and local tissue water measurements in people with unilateral or bilateral LLL and measurement errors both for a group of people and for a single individual.

METHODS: Forty-two people with mild to moderate unilateral or bilateral, primary or secondary LLL were measured twice, 2 weeks apart. Impedance of extracellular fluid was measured by bioimpedance spectroscopy and calculated as arm-to-leg ratio, volume with circumference measurements every 4 cm, and local tissue water with tissue dielectric constant at 14 points. Test-retest reliability was evaluated using the ICC(2,1), changes in the mean, standard error of measurement in relative terms (SEM%), and the smallest real difference in relative terms (SRD%).

RESULTS: For the impedance ratio, the reliability was high [ICC(2,1) = 0.79 to 0.90] and the measurement errors were acceptable (SEM% = 5.0%-5.2%; SRD% = 14.0%-14.4%). For volume, the reliability was high (ICC = 0.99) and the measurement errors were low (SEM% = 1.1%-1.7%; SRD% = 3.1%-4.6%). For the tissue dielectric constant, the reliability was fair to excellent [ICC(2,1) = 0.68 to 0.96] and the measurement errors were acceptable (SEM% = 4.2%-9.7%; SRD% = 11.7%-26.8%).

CONCLUSIONS: Impedance of extracellular fluid, volume, and local tissue water are reliable in people with mild to moderate LLL. The measurement errors were acceptable in all 3 methods indicating that real, clinical changes in lymphedema can be measured both for a group of people and a single individual.

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author
; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
Physical Therapy
volume
102
issue
5
publisher
Oxford University Press
external identifiers
  • scopus:85131225636
  • pmid:35229160
ISSN
0031-9023
DOI
10.1093/ptj/pzac025
language
English
LU publication?
yes
additional info
© The Author(s) 2022. Published by Oxford University Press on behalf of the American Physical Therapy Association. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
id
7b52eb33-a64e-422e-a994-fab5da98d5c4
date added to LUP
2022-04-06 08:27:50
date last changed
2024-04-18 05:06:04
@article{7b52eb33-a64e-422e-a994-fab5da98d5c4,
  abstract     = {{<p>OBJECTIVE: Lower limb lymphedema (LLL) is a chronic condition. To be able to evaluate changes of LLL over time and effects of interventions reliable measurement methods are important. Currently, there is limited knowledge of the reliability of commonly used measurement methods in LLL. The study objective was to evaluate the test-retest (intrarater) reliability of impedance of extracellular fluid, volume, and local tissue water measurements in people with unilateral or bilateral LLL and measurement errors both for a group of people and for a single individual.</p><p>METHODS: Forty-two people with mild to moderate unilateral or bilateral, primary or secondary LLL were measured twice, 2 weeks apart. Impedance of extracellular fluid was measured by bioimpedance spectroscopy and calculated as arm-to-leg ratio, volume with circumference measurements every 4 cm, and local tissue water with tissue dielectric constant at 14 points. Test-retest reliability was evaluated using the ICC(2,1), changes in the mean, standard error of measurement in relative terms (SEM%), and the smallest real difference in relative terms (SRD%).</p><p>RESULTS: For the impedance ratio, the reliability was high [ICC(2,1) = 0.79 to 0.90] and the measurement errors were acceptable (SEM% = 5.0%-5.2%; SRD% = 14.0%-14.4%). For volume, the reliability was high (ICC = 0.99) and the measurement errors were low (SEM% = 1.1%-1.7%; SRD% = 3.1%-4.6%). For the tissue dielectric constant, the reliability was fair to excellent [ICC(2,1) = 0.68 to 0.96] and the measurement errors were acceptable (SEM% = 4.2%-9.7%; SRD% = 11.7%-26.8%).</p><p>CONCLUSIONS: Impedance of extracellular fluid, volume, and local tissue water are reliable in people with mild to moderate LLL. The measurement errors were acceptable in all 3 methods indicating that real, clinical changes in lymphedema can be measured both for a group of people and a single individual.</p>}},
  author       = {{Jönsson, Charlotta and Johansson, Karin and Bjurberg, Maria and Brogårdh, Christina}},
  issn         = {{0031-9023}},
  language     = {{eng}},
  number       = {{5}},
  publisher    = {{Oxford University Press}},
  series       = {{Physical Therapy}},
  title        = {{Impedance of Extracellular Fluid, Volume, and Local Tissue Water Can Be Reliably Measured in People with Lower Limb Lymphedema}},
  url          = {{http://dx.doi.org/10.1093/ptj/pzac025}},
  doi          = {{10.1093/ptj/pzac025}},
  volume       = {{102}},
  year         = {{2022}},
}