Alternate Electrode Positions for the Measurement of Hand Volumes Using Bioimpedance Spectroscopy

被引:1
|
作者
Edwick, Dale O. [1 ,2 ,3 ]
Hince, Dana A. [4 ]
Rawlins, Jeremy M. [1 ,5 ]
Wood, Fiona M. [1 ,3 ,6 ]
Edgar, Dale W. [1 ,3 ,4 ]
机构
[1] Fiona Stanley Hosp, State Adult Burns Unit, CD15,102-118 Murdoch Dr, Murdoch, WA 6150, Australia
[2] Univ Notre Dame Australia, Sch Physiotherapy, Fremantle, WA, Australia
[3] Fiona Stanley Hosp, Fiona Wood Fdn, Murdoch, WA, Australia
[4] Univ Notre Dame Australia, Inst Hlth Res, Fremantle, WA, Australia
[5] Royal Perth Hosp, Dept Plast & Maxillofacial Surg, Perth, WA, Australia
[6] Univ Western Australia, Burn Injury Res Unit, Nedlands, WA, Australia
关键词
bioelectrical impedance analysis; electrode sites; body composition; body fluid distribution; wounds; hand volume; BIOELECTRICAL-IMPEDANCE ANALYSIS; CONCURRENT VALIDITY; EDEMA; LYMPHEDEMA; WATER; BODY; RELIABILITY; FREQUENCY; AGREEMENT; SITES;
D O I
10.1089/lrb.2019.0078
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Background: Bioimpedance spectroscopy (BIS) is a tool that can be used to measure body composition in a variety of populations. Previous studies have investigated novel applications to utilize BIS to measure localized body composition, including in the hand. According to BIS guidelines, there should be no skin wounds at the site of electrodes, and that electrode positions may be modified in specific circumstances, as our group has validated previously in burn wound populations. Methods and Results: To determine in noninjured participants, whether BIS measurements recorded using alternate electrode positions on the palm of the hand and forearm, or a combination of electrodes on the dorsum and volar surface of the hand and forearm, were comparable with electrode positions on the dorsum of the hand and forearm. The study demonstrated that drive and sense electrodes on the palm of the hand and volar forearm, and a combination of electrodes on the palm of the hand and dorsum of the forearm, resulted in comparable measures of impedance of extracellular water (difference from reference position: 1.26%-4.75%, p = 0.411-0.558) and total water (difference from reference: 2.15%-2.40%, p = 0.258-0.781). Electrodes on the dorsum of the hand and volar forearm resulted in significantly different measures for the same BIS variables (percentage difference range 4.66%-6.15%, p < 0.001-0.003). Conclusion: Electrode positions on the palm of the hand and volar forearm, or on the palm of the hand and dorsum of the forearm, are interchangeable as clinical measures of hand lymphedema and total water impedance.
引用
收藏
页码:560 / 571
页数:12
相关论文
共 50 条
  • [1] Alternate electrode placement for whole body and segmental bioimpedance spectroscopy
    Grisbrook, T. L.
    Kenworthy, P.
    Phillips, M.
    Gittings, P. M.
    Wood, F. M.
    Edgar, D. W.
    PHYSIOLOGICAL MEASUREMENT, 2015, 36 (10) : 2189 - 2201
  • [2] Addressing the Barriers to Bioimpedance Spectroscopy Use in Major Burns: Alternate Electrode Placement
    Kenworthy, Pippa
    Grisbrook, Tiffany L.
    Phillips, Michael
    Gibson, William
    Wood, Fiona M.
    Edgar, Dale W.
    JOURNAL OF BURN CARE & RESEARCH, 2017, 38 (06): : E952 - E959
  • [3] Evaluation of bioimpedance spectroscopy for the measurement of body fluid compartment volumes in rats
    Hu, Lufei
    Maslanik, Tom
    Zerebeckyj, Mykolai
    Plato, Craig F.
    JOURNAL OF PHARMACOLOGICAL AND TOXICOLOGICAL METHODS, 2012, 65 (02) : 75 - 82
  • [4] Bioimpedance Spectroscopy Measurements Comparing Different Body Positions and Electrode Types in Men and Women
    Moon, Jordan R.
    Lane, Michael T.
    Doernte, Lee A.
    Bean, Ryan M.
    Spears, April M.
    Cicone, Zackary S.
    Holmes, Clifton J.
    Welborn, Bailey A.
    Freeborn, Todd
    Esco, Michael R.
    MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2018, 50 (05): : 482 - 482
  • [5] Bioimpedance Measurement of Knee Injuries Using Bipolar Electrode Configuration
    Ye, Xuanjie
    Wu, Lexi
    Mao, Kaining
    Feng, Yiwei
    Li, Jiajun
    Ning, Lei
    Chen, Jie
    IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, 2022, 16 (05) : 962 - 971
  • [6] Cell growth characterization using multi-electrode bioimpedance spectroscopy
    Lu, Yi-Yu
    Huang, Ji-Jer
    Huang, Yu-Jie
    Cheng, Kuo-Sheng
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2013, 24 (03)
  • [7] Bioimpedance Spectroscopy for the Estimation of Body Fluid Volumes in Mice
    Chapman, Mark Edward
    Kohan, Donald
    Plato, Craig
    Hu, Lufei
    FASEB JOURNAL, 2010, 24
  • [8] Bioimpedance spectroscopy for the estimation of body fluid volumes in mice
    Chapman, M. E.
    Hu, L.
    Plato, C. F.
    Kohan, D. E.
    AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2010, 299 (01) : F280 - F283
  • [9] Bioimpedance Measurement of Avocado Fruit Using Magnetic Induction Spectroscopy
    O'Toole, Michael D.
    Glowacz, Marcin
    Peyton, Anthony J.
    IEEE Transactions on AgriFood Electronics, 2023, 1 (02): : 99 - 107
  • [10] Influence of Electrode Positions on Performance of Hand Motion Capture Using EIT
    Yoshimoto, Shunsuke
    Toyoda, Yumi
    Yamamoto, Akio
    IEEE TRANSACTIONS ON MEDICAL ROBOTICS AND BIONICS, 2022, 4 (01): : 285 - 288