• DocumentCode
    1159343
  • Title

    Uncertainty evaluation of an in vivo near-field exposure setup for testing biological effects of cellular phones

  • Author

    Wang, Jianqing ; Fujita, Masanori ; Fujiwara, Osamu ; Wake, Kanako ; Watanabe, Soichi

  • Author_Institution
    Graduate Sch. of Eng., Nagoya Inst. of Technol.
  • Volume
    48
  • Issue
    3
  • fYear
    2006
  • Firstpage
    545
  • Lastpage
    551
  • Abstract
    In designing an in vivo near-field exposure setup for testing biological effects of cellular phones, one generally uses a small still animal because a plastic holder is used to restrain it. One also takes no account of the exposure box with radio wave absorbers as well as the plastic holder. In this paper, for the in vivo exposure setup developed in the National Institute of Information and Communications Technology (NICT), which was used for testing the promoting effect of 1.439- and 1.95-GHz digital cellular phones on rat brain carcinogenesis, we investigated the effects of the above-mentioned factors on the dosimetry design using the finite-difference time-domain (FDTD) method in conjunction with an anatomical rat model. As a result, we found that the specific absorption rate (SAR) averaged in the brain was 18% higher at maximum than the previously designed level due to the existence of the exposure box and the plastic holder and that the variation due to the rotation of the rat´s head inside the plastic holder was within 10%. The backward movement of the rat along the plastic holder was more serious, which yielded a decrease of nearly 20% for the average SAR in the brain
  • Keywords
    UHF radio propagation; biological effects of fields; brain; cellular radio; electromagnetic wave absorption; finite difference time-domain analysis; 1.439 GHz; 1.95 GHz; FDTD; digital cellular phone biological effects; finite-difference time-domain method; in vivo near-field exposure setup; plastic holder; radiowave absorbers; rat brain carcinogenesis; specific absorption rate; uncertainty evaluation; Animals; Cellular phones; Communications technology; Dosimetry; Finite difference methods; In vivo; Plastics; Testing; Time domain analysis; Uncertainty; Cellular phone; in vivo exposure setup; specific absorption rate (SAR); uncertainty evaluation;
  • fLanguage
    English
  • Journal_Title
    Electromagnetic Compatibility, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9375
  • Type

    jour

  • DOI
    10.1109/TEMC.2006.877779
  • Filename
    1677789