Journal of Tissue Viability
Volume 17, Issue 4 , Pages 110-114 , November 2008

Multi-frequency bioelectrical impedance analysis of skin rubor with two-electrode technique

  • Tomoka Uchiyama

      Affiliations

    • Department of Human Environmental Sciences, Graduate School of Humanities and Sciences, Ochanomizu University, 2-1-1 Otsuka Bunkyou-ku, Tokyo 112-8610, Japan
    • TANITA Body Weight Institute, Japan
    • Corresponding Author InformationCorresponding author. Department of Human Environmental Sciences, Graduate School of Humanities and Sciences, Ochanomizu University, 2-1-1 Otsuka Bunkyou-ku, Tokyo 112-8610, Japan. Tel.: +81 3 5978 5739; fax: +81 3 5978 5899.
  • ,
  • Shoko Ishigame

      Affiliations

    • Department of Human Environmental Sciences, Graduate School of Humanities and Sciences, Ochanomizu University, 2-1-1 Otsuka Bunkyou-ku, Tokyo 112-8610, Japan
  • ,
  • Junko Niitsuma

      Affiliations

    • National Rehabilitation Center for Persons with Disabilities, Japan
  • ,
  • Yoshihiro Aikawa

      Affiliations

    • Department of Human Environmental Sciences, Graduate School of Humanities and Sciences, Ochanomizu University, 2-1-1 Otsuka Bunkyou-ku, Tokyo 112-8610, Japan
  • ,
  • Yuji Ohta

      Affiliations

    • Department of Human Environmental Sciences, Graduate School of Humanities and Sciences, Ochanomizu University, 2-1-1 Otsuka Bunkyou-ku, Tokyo 112-8610, Japan

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  2. Riedel CH, Dössel O. Non-contact measurement of the electrical impedance of biological tissue. IEEE Engineering in Medicine and Biology. 2001;3:3077–3080
  3. Riedel CH, Keppelen M, Nani S, Dössel O. Post mortem conductivity measurement of liver tissue using a contact free magnetic induction sensor. In: Proceedings of the 25th silver anniversary international conference of the IEEE engineering in medicine and biology society. 2003;p. 3126–3129
  4. Martinsen ØG, Grimnes S, Kirkhus T, Mørkrid L, Aas K. Increased moisture content in children's atopic skin. European Journal of Pediatric Dermatology. 2007;17:
  5. Scharfetter H, Brunner P, Mayer M, Brandstätter B, Hinghofer-Szalkay H. Fat and hydration monitoring by abdominal bioimpedance analysis: data interpretation by hierarchical electrical modeling. IEEE Transactions on Bio-medical Engineering. 2005;52(6):975–982
  6. Zlochiver S, Rosenfeld M, Abboud S. Contactless bio-impedance monitoring technique for brain cryosurgery in a 3D head model. Annals of Biomedical Engineering. 2005;33(5):616–625
  7. Ahn H, Shin H, Yun S, Kim J, Choi J. Measurement of bioimpedance and cell viability during ischemia–reperfusion in the rat liver. Conference Proceedings IEEE Engineering in Medicine and Biology Society. 2005;2:1945–1947
  8. Jansen DF, Korbijn CM, Deurenberg P. Variability of body density and body impedance at different frequencies. European Journal of Clinical Nutrition. 1992;46(12):865–871
  9. Higuchi S, Muramatsu T, Saito M, Sasao M, Maruyama K, Kono H, et al. Ethanol patch test for low Km aldehyde dehydrogenase deficiency. Lancet. 1987;1(8533):629
  10. Muramatsu T, Higuchi S, Shigemori K, Saito M, Sasao M, Harada S, et al. Ethanol patch test – a simple and sensitive method for identifying ALDH phenotype. Alcoholism, Clinical and Experimental Research. 1989;13(2):229–231
  11. Grimnes S, Martinsen ØG. Chapter 4: Electrical properties of tissue. In: Bioimpedance and bioelectricity basics. London, UK: Academic Press; 2003;p. 105–110
  12. Quintavalle PR, Lyder CH, Mertz PJ, Phillips-Jones C, Dyson M. Use of high-resolution, high-frequency diagnostic ultrasound to investigate the pathogenesis of pressure ulcer development. Advances in Skin & Wound Care. 2006;19(9):498–505
  13. Niitsuma J, Yano H, Togawa T. Experimental study of decubitus ulcer formation in the rabbit ear lobe. Journal of Rehabilitation Research and Development. 2003;40(1):67–73

PII: S0268-0009(08)00012-7

doi: 10.1016/j.jtv.2008.01.002

Journal of Tissue Viability
Volume 17, Issue 4 , Pages 110-114 , November 2008