4.6 Article

A Parametric Computational Analysis Into Galvanic Coupling Intrabody Communication

Journal

IEEE JOURNAL OF BIOMEDICAL AND HEALTH INFORMATICS
Volume 22, Issue 4, Pages 1087-1096

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JBHI.2017.2734939

Keywords

Bioimpedance; electric current density; finite element model; galvanic coupling; intrabody communication; skin-electrode interface; tissue anisotropy

Funding

  1. Consejeria de Economia, Innovacion y Ciencia, Government of Andalucia [P08-TIC-04069, P10-TIC-6214]
  2. Fondo de Investigaciones Sanitarias, Instituto de Salud Carlos III [PI15/00306]
  3. CIBER-BBN under Grant NeuroIBC
  4. Grant AlbuMark
  5. Grant INT-2-CARE
  6. VI National RAMP
  7. DAMP
  8. i Plan, Iniciativa Ingenio 2010, Consolider Program
  9. Instituto de Salud Carlos III

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Intrabody Communication (IBC) uses the human body tissues as transmission media for electrical signals to interconnect personal health devices in wireless body area networks. The main goal of this work is to conduct a computational analysis covering some bioelectric issues that still have not been fully explained, such as the modeling of skin-electrode impedance, the differences associated with the use of constant voltage, or current excitation modes, or the influence on attenuation of the subject's anthropometrical and bioelectric properties. With this aim, a computational finite element model has been developed, allowing the IBC channel attenuation as well as the electric field and current density through arm tissues to be computed as a function of these parameters. As a conclusion, this parametric analysis has in turn permitted us to disclose some knowledge about the causes and effects of the above-mentioned issues, thus, explaining and complementing previous results reported in the literature.

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