Effects of Body Positioning When Assessing Lymphedema of the Lower Limb Using Bioimpedance Spectroscopy.

IF 1.6 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL
Lymphatic research and biology Pub Date : 2024-02-01 Epub Date: 2023-10-17 DOI:10.1089/lrb.2022.0108
Louise A Koelmeyer, Katrina Gaitatzis, Belinda Thompson, Leigh C Ward
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引用次数: 0

Abstract

Background: Bioimpedance spectroscopy (BIS) measurements are conventionally performed in supine position with a lead device attached to gel-backed electrodes, and more recently, with a stand-on device that uses fixed stainless-steel electrodes under the hands and feet. The aim of this study was to assess and compare BIS measurements made in supine, sitting, and standing positions using lead and stand-on impedance devices in participants with and without unilateral leg lymphedema. Materials and Methods: Participants with self-ascribed unilateral leg lymphedema (n = 24) and healthy controls (n = 71) were recruited using a cross-sectional study design. Triplicate BIS measurements were taken for each device in each position. Results: Impedance measurements with either device were reliable with coefficient of variation of 0.6% or lower. The magnitude of mean differences in absolute impedance values between devices were between 1% and 6% dependent on condition. L-Dex scores between the two devices were highly correlated (r = 0.82) and ∼70% of participants in the lymphedema group were classified as having lymphedema using the recommended cut-off with either device. There was no significant interleg difference of controls using the lead device; however, small, but significant differences (p = 0.0001) were found when using the stand-on device. Conclusion: The findings demonstrate that reliable impedance measurements of the legs can be made with either device in lying, sitting, or standing positions. However, data between the devices were not directly interchangeable. Although the risk of misidentification was small, reference ranges appropriate to the device and measurement position should be used when converting data to L-Dex scores.

使用生物阻抗谱评估下肢淋巴水肿时身体定位的影响。
背景:生物阻抗谱(BIS)测量通常在仰卧位进行,导线装置连接在凝胶背电极上,最近使用的是在手和脚下使用固定不锈钢电极的立式装置。本研究的目的是评估和比较在有和没有单侧腿部淋巴水肿的参与者中,使用导线和站立阻抗设备在仰卧、坐姿和站姿下进行的BIS测量。材料和方法:患有单侧腿部淋巴水肿(n = 24)和健康对照组(n = 71)采用横断面研究设计招募。对每个位置的每个装置进行三次BIS测量。结果:任何一种装置的阻抗测量都是可靠的,变异系数为0.6%或更低。设备之间的绝对阻抗值的平均差异幅度在1%和6%之间,这取决于条件。两种装置之间的L-Dex评分高度相关(r = 0.82)和~70%的淋巴水肿组参与者被分类为患有淋巴水肿,使用任何一种设备的推荐截止线。使用引导装置的对照组没有显著的组间差异;然而,微小但显著的差异(p = 0.0001)。结论:研究结果表明,无论是躺着、坐着还是站着,都可以对腿部进行可靠的阻抗测量。然而,设备之间的数据不能直接互换。尽管误认的风险很小,但在将数据转换为L-Dex评分时,应使用适用于设备和测量位置的参考范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Lymphatic research and biology
Lymphatic research and biology Medicine-Cardiology and Cardiovascular Medicine
CiteScore
3.10
自引率
7.10%
发文量
85
审稿时长
>12 weeks
期刊介绍: Lymphatic Research and Biology delivers the most current peer-reviewed advances and developments in lymphatic biology and pathology from the world’s leading biomedical investigators. The Journal provides original research from a broad range of investigative disciplines, including genetics, biochemistry and biophysics, cellular and molecular biology, physiology and pharmacology, anatomy, developmental biology, and pathology. Lymphatic Research and Biology coverage includes: -Vasculogenesis and angiogenesis -Genetics of lymphatic disorders -Human lymphatic disease, including lymphatic insufficiency and associated vascular anomalies -Physiology of intestinal fluid and protein balance -Immunosurveillance and immune cell trafficking -Tumor biology and metastasis -Pharmacology -Lymphatic imaging -Endothelial and smooth muscle cell biology -Inflammation, infection, and autoimmune disease
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