Heat analysis of biological tissue exposed to microwave by using thermal wave model of bio-heat transfer (TWMBT)

Thermal analyses of biological tissues exposed to microwaves were studied by using thermal wave model of bio-heat transfer (TWMBT). As a model, skin stratified as three layers with various thermal physical properties were simulated and thermal wave model of bio-heat transfer equations were solved by...

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Publicado en:Burns (03054179) Vol. 34; no. iss1; pp. 45 - 50
Autores principales: Ozen S, Helhel S, Cerezci O
Formato: Journal Article
Publicado: Elsevier B.V. Feb2008
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Feb2008
      vid: 34
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        atl: Heat analysis of biological tissue exposed to microwave by using thermal wave model of bio-heat transfer (TWMBT)
      aug:
        au:
          Ozen S
          Helhel S
          Cerezci O
        affil: Akdeniz University, Engineering Faculty, Department of Electrical & Electronics Engineering, 07058, Antalya, Turkey.
      sug:
        subj:
          Heat
          Microwaves
          Models, Biological
          Skin Radiation Effects
          Blood Circulation Radiation Effects
          Epidermis Radiation Effects
          Physics
          Skin Temperature Radiation Effects
          Skin Blood Supply
      ab: Thermal analyses of biological tissues exposed to microwaves were studied by using thermal wave model of bio-heat transfer (TWMBT). As a model, skin stratified as three layers with various thermal physical properties were simulated and thermal wave model of bio-heat transfer equations were solved by using finite difference method. Finally, the thermal variations were simulated in the cross section of the model. Comparative studies on the traditional Pennes' equations and thermal wave model of bio-heat transfer were performed and evaluated. Furthermore, temperature variations in the skin exposed to microwave were predicted depending on blood perfusion rate, thermal conductivity, frequency and power density of microwave, and exposure time. Thermal wave model of bio-heat transfer gives lower heat rise predictions than that of Pennes' equation, initially. When it approaches to steady state, it overlaps with the Pennes' equation.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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