DocumentCode :
67140
Title :
A Waveguide Applicator for In Vitro Exposures to Single or Multiple ICT Frequencies
Author :
Romeo, Salvatore ; D´Avino, Claudio ; Pinchera, Daniele ; Zeni, Olga ; Scarfi, M.R. ; Massa, R.
Author_Institution :
Inst. for Electromagn. Sensing of the Environ. (IREA), Naples, Italy
Volume :
61
Issue :
5
fYear :
2013
fDate :
May-13
Firstpage :
1994
Lastpage :
2004
Abstract :
A standardized exposure device, already used at 1.95 GHz for in vitro bioelectromagnetic studies, has been further characterized and upgraded for exposing cell cultures to single or multiple frequencies used by information and communication technologies, such as GSM, Universal Mobile Telecommunication System, and Wi-Fi systems. The applicator consists of a customized WR-430 waveguide, and cell culture exposures can be performed in either a one- or multiple-sample configuration. Single-frequency scenarios were characterized for exposures at 1.8, 1.95, and 2.45 GHz, obtaining high efficiency (ranging from 51% to 87% in the single-sample exposure and from 60% to 93% in the multiple-sample exposure) and acceptable nonuniformity degree (about 33% in all cases). Moreover, optimization and characterization for exposures to multiple signals, either simultaneously or in close sequence, were also carried out with good results (efficiency ranging from 30% to 40% and nonuniformity degree of about 35%). Numerical dosimetry was validated by measurements (scattering parameters and calorimetric measurements through infrared camera) and a very satisfying agreement has been found between simulations and experimental data.
Keywords :
bioelectric phenomena; biological effects of microwaves; biomagnetism; biomedical measurement; cellular biophysics; cellular radio; dosimetry; information technology; optimisation; waveguides; wireless LAN; GSM; Universal Mobile Telecommunication System; WR-430 waveguide; Wi-Fi systems; bioelectromagnetic studies; calorimetric measurements; cell culture exposures; characterization; frequency 1.85 GHz; frequency 1.95 GHz; frequency 2.45 GHz; in vitro exposures; information and communication technologies; infrared camera; multiple ICT frequency; multiple signals; multiple-sample configuration; multiple-sample exposure; numerical dosimetry; one-sample configuration; optimization; scattering parameters; single ICT frequency; single-frequency scenarios; single-sample exposure; standardized exposure device; waveguide applicator; Applicators; Biology; Dosimetry; In vitro; Power measurement; Standards; Temperature measurement; Customized sample holder; customized waveguide (WG) applicator; multiple/single-frequency exposure; numerical and experimental dosimetry;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2013.2246185
Filename :
6469191
Link To Document :
بازگشت