• DocumentCode
    2609854
  • Title

    Spectral distribution of current during electrosurgery

  • Author

    Selikowitz, S.M. ; LaCourse, J.R.

  • Author_Institution
    VAM&ROC, White River Junction, VT, USA
  • fYear
    1991
  • fDate
    4-5 Apr 1991
  • Firstpage
    257
  • Lastpage
    258
  • Abstract
    A spectrum analysis of current in axial body structures during electrosurgery, utilizing a canine model in a simulated transurethral resection, has revealed a shift to lower frequency peaks as the power levels of the generator were increased. The authors verified prior investigations in the time domain, where greater collective current levels were observed in arteries, followed sequentially by vein, muscle, and nerve. Arterial/venous current ratios were in the range of 2:1 in the extremities. The levels of current in cylindrical structures were proportional to cross-sectional area and appeared to be conduit dependent. Great vessels, such as the aorta and the heart, appear to act as sinks for large amounts of current, sometimes exceeding 500 mA total with 3000 mA noted at peaks 40 Hz separate from the generator center frequency at 680 kHz. The cardiac muscle, likewise, contains substantial current at practically all frequencies measured within a 100 kHz range of center, and even beyond
  • Keywords
    bioelectric phenomena; surgery; 0.5 A; 100 kHz; 3 A; 40 Hz; 680 kHz; aorta; arterial/venous current ratios; axial body structures; canine model; cardiac muscle; current spectral distribution; cylindrical structures; electrosurgery; frequency peaks; heart; muscle; nerve; simulated transurethral resection; time domain; vein; Analytical models; Area measurement; Arteries; Bladder; Current measurement; Frequency; Muscles; Power generation; Probes; Veins;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Bioengineering Conference, 1991., Proceedings of the 1991 IEEE Seventeenth Annual Northeast
  • Conference_Location
    Hartford, CT
  • Print_ISBN
    0-7803-0030-0
  • Type

    conf

  • DOI
    10.1109/NEBC.1991.154672
  • Filename
    154672