The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. ex. Some numerals are expressed as "XNUMX".
Copyrights notice
The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. Copyrights notice
Sebuah novel dalam vivo persediaan pendedahan telah dibangunkan untuk menguji kemungkinan kesan menggalakkan telefon selular digital 1.5 GHz pada karsinogenesis kulit tetikus. Persediaan pendedahan mempunyai dua ciri utama: satu ialah penggunaan antena monopole pendek elektrik dengan pemuatan kapasitif, yang membekalkan keupayaan untuk merealisasikan SAR puncak yang sangat setempat melebihi 2 W/kg tanpa sebarang tekanan haba untuk tetikus; satu lagi ialah penggunaan penyerap lutsinar untuk membolehkan pemerhatian masa nyata bagi kedua-dua proses pendedahan dan juga aktiviti tetikus semasa pendedahan. Analisis dosimetrik untuk persediaan pendedahan telah dijalankan secara numerik dan eksperimen. Persetujuan yang baik telah disahkan antara keputusan berangka dan eksperimen, dengan itu menunjukkan kesahihan persediaan pendedahan novel.
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Salinan
Jianqing WANG, Osamu FUJIWARA, "A Novel Setup for Small Animal Exposure to Near Fields to Test Biological Effects of Cellular Telephones" in IEICE TRANSACTIONS on Communications,
vol. E84-B, no. 11, pp. 3050-3059, November 2001, doi: .
Abstract: A novel in vivo exposure setup has been developed for testing the possible promoting effects of 1.5 GHz digital cellular phones on mouse skin carcinogenesis. The exposure setup has two main features: one is the employment of an electrically short monopole antenna with capacitive-loading, which supplies the ability to realize a highly localized peak SAR above 2 W/kg without any thermal stress for a mouse; the other is the use of a transparent absorber to allow real-time observation of both the exposure process as well as mouse activities during the exposure. Dosimetric analyses for the exposure setup have been carried out both numerically and experimentally. Good agreement was confirmed between the numerical and experimental results, thereby demonstrating the validity of the novel exposure setup.
URL: https://global.ieice.org/en_transactions/communications/10.1587/e84-b_11_3050/_p
Salinan
@ARTICLE{e84-b_11_3050,
author={Jianqing WANG, Osamu FUJIWARA, },
journal={IEICE TRANSACTIONS on Communications},
title={A Novel Setup for Small Animal Exposure to Near Fields to Test Biological Effects of Cellular Telephones},
year={2001},
volume={E84-B},
number={11},
pages={3050-3059},
abstract={A novel in vivo exposure setup has been developed for testing the possible promoting effects of 1.5 GHz digital cellular phones on mouse skin carcinogenesis. The exposure setup has two main features: one is the employment of an electrically short monopole antenna with capacitive-loading, which supplies the ability to realize a highly localized peak SAR above 2 W/kg without any thermal stress for a mouse; the other is the use of a transparent absorber to allow real-time observation of both the exposure process as well as mouse activities during the exposure. Dosimetric analyses for the exposure setup have been carried out both numerically and experimentally. Good agreement was confirmed between the numerical and experimental results, thereby demonstrating the validity of the novel exposure setup.},
keywords={},
doi={},
ISSN={},
month={November},}
Salinan
TY - JOUR
TI - A Novel Setup for Small Animal Exposure to Near Fields to Test Biological Effects of Cellular Telephones
T2 - IEICE TRANSACTIONS on Communications
SP - 3050
EP - 3059
AU - Jianqing WANG
AU - Osamu FUJIWARA
PY - 2001
DO -
JO - IEICE TRANSACTIONS on Communications
SN -
VL - E84-B
IS - 11
JA - IEICE TRANSACTIONS on Communications
Y1 - November 2001
AB - A novel in vivo exposure setup has been developed for testing the possible promoting effects of 1.5 GHz digital cellular phones on mouse skin carcinogenesis. The exposure setup has two main features: one is the employment of an electrically short monopole antenna with capacitive-loading, which supplies the ability to realize a highly localized peak SAR above 2 W/kg without any thermal stress for a mouse; the other is the use of a transparent absorber to allow real-time observation of both the exposure process as well as mouse activities during the exposure. Dosimetric analyses for the exposure setup have been carried out both numerically and experimentally. Good agreement was confirmed between the numerical and experimental results, thereby demonstrating the validity of the novel exposure setup.
ER -