• DocumentCode
    1396478
  • Title

    Geometric effects on resistivity measurements with four-electrode probes in isotropic and anisotropic tissues

  • Author

    Wang, Yanqun ; Schimpf, Paul H. ; Haynor, David R. ; Kim, Yongmin

  • Author_Institution
    Center for Bioeng., Washington Univ., Seattle, WA, USA
  • Volume
    45
  • Issue
    7
  • fYear
    1998
  • fDate
    7/1/1998 12:00:00 AM
  • Firstpage
    877
  • Lastpage
    884
  • Abstract
    We studied via computer simulation the effects of electrode diameter, electrode length, interelectrode spacing, and tissue size on the accuracy of measured tissue resistivities and anisotropy ratios obtained with the widely used four-electrode technique. Such measurements commonly assume an ideal situation in which the four electrodes are infinitesimally small and the tissue is semi-infinite. Our study shows that these geometric factors can significantly affect measured resistivities, particularly for anisotropic tissues. The measured anisotropy ratio is decreased by either (1) increasing the electrode diameter or length relative to the interelectrode spacing of the probe or (2) decreasing tissue size. We have provided an equation for estimating errors in the measured anisotropy ratio from the parameters of electrode and tissue geometries. The simulation findings are supported by our in vitro experimental results.
  • Keywords
    bioelectric phenomena; biomedical measurement; digital simulation; electric resistance measurement; electrical conductivity measurement; electrodes; finite element analysis; measurement errors; anisotropic tissues; anisotropy ratios; computer simulation; electrode diameter; electrode length; errors; four-electrode probes; four-electrode technique; geometric factors; interelectrode spacing; isotropic tissues; measured anisotropy ratio; measured tissue resistivities; resistivity measurements; tissue geometries; tissue size; Anisotropic magnetoresistance; Computer simulation; Conductivity measurement; Electrodes; Equations; Geometry; Length measurement; Particle measurements; Probes; Size measurement; Animals; Anisotropy; Biocompatible Materials; Computer Simulation; Electric Impedance; Electrodes; Equipment Design; Materials Testing; Muscle, Skeletal; Plastics; Platinum; Silver; Silver Compounds; Swine;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.686795
  • Filename
    686795