• Title/Summary/Keyword: MPE(Maximum Permissible Exposure)

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Measurement of Electrophysiological Changes Caused by Electromagnetic Radiation Absorbed in Biobody (전자파에 노출된 생체의 전기 생리적 변화의 측정)

  • Ju-Tae Park
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.7 no.4
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    • pp.353-362
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    • 1996
  • In this paper, SAR distribution is calculated according to the rabbit's head using approximation of its medium three layers model. Our experiment was classified 5 groups dependent on the power intensity of 2,450MHz microwave to measure EEG(Electroencephalograph) of rabbit, which was checked in left frontal lobe before and after irradiation of microwave. In results, mean total power of EEG was slightly decreased and mean composition percentages of $\theta$, $\delta$ and $\beta$ wave were increased after irradiation in observation. It means to decrease of elect- rophysiologic activity and trend of fast wave in brain after irradiation of its microwave. We analyzed the electrophysiological effect of the biobody quantitatively using measured EEG and estimated MPE (Maximum Permissible Exposure).

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Design and Implementation of the RF Systems for Bi-directional Wireless Capsule Endoscopes

  • Moon, Yeon-Kwan;Lee, Jyung-Hyun;Park, Hee-Joon;Lee, Ju-Gab;Ryu, Jae-Jong;Lee, Wu-Seong;Woo, Sang-Hyo;Won, Chul-Ho;Cho, Jin-Ho;Choi, Hyun-Chul
    • Journal of Korea Multimedia Society
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    • v.9 no.12
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    • pp.1669-1680
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    • 2006
  • This paper explains that the RF systems for hi-directional wireless capsule endoscopes were designed and implemented. The designed RF systems for a capsule endoscope can transmit the images of intestines from the inside to the outside of a body and the behavior of the capsules can be controlled by an external controller simultaneously. The hi-directional wireless capsule endoscope consists of a CMOS image sensor, FPGA, LED, battery, DC to DC Converter, transmitter, receiver, and antennas. The transmitter and receiver which were used in the hi-directional capsule endoscope, were designed and fabricated with $10mm(diameter){\times}3.2mm(thickness)$ dimensions taking into the MPE, power consumption, system size, signal to noise ratio and modulation method. The RF systems designed and implemented for the hi-directional wireless capsule endoscopes system were verified by in-vivo experiments. As a result, the RF systems for the hi-directional wireless capsule endoscopes satisfied the design specifications.

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