A Study on the Effects of Electromagnetic Wave on Human Body - The Variation of Electroencephalogram by Blocking Electromagnetic Wave Materials and Aural Stimuli -

전자파가 인체에 미치는 영향 - 전자파 차폐소재와 청각자극에 나타난 뇌파전위의 변화 -

  • 이수정 (인제대학교 디자인연구소) ;
  • 이태일 (인제대학교 디자인연구소)
  • Received : 2004.04.12
  • Published : 2004.08.30

Abstract

The study is one of fundamental researches for the development of future smart clothing and textile products with blocking properties from electromagnetic waves by analyzing human physical symptoms in using electromagnetic products in such an environments. Among various textiles in the experiment, nano silver has shown the best blocking performance from electromagnetic waves, which decreases depending on the distance. The power spectrum distribution and the incidence of electroencephalogram between blocking materials and aural stimuli has shown that, ${\beta}$, wave appeared to be active in all channels except for $T_4$, whereas all waves appeared with processed materials and especially with nano silver silk(NSS), ${\alpha}$, ${\beta}$, ${\theta}$, ${\gamma}$ waves appeared active in all regions. As for the brain mapping of ${\alpha}$ wave according to time, there found a strong activity in $P_3$, $P_4$ of the parietal lobe, with all materials on all time regions. With silk nylon metal(SNM) and NSS, it appeared strong in $F_3$, $F_4$ as well. As for ${\beta}$, wave, the activity appeared strong in frontal lobe before 7min. 30sec, where it tends to diminish abruptly in 7min. 30sec. to 13min. 30sec. region. After 13min., it regained gradually. With NSS, it appeared strong in all areas except for the farthest $T_4$. The appearance of ${\nu}$ wave can be deduced as it can affect human body with its toxic property while the silver particles become nano-sized. Therefore, the study conducted with human participants requires a proper particle size of it which would not penetrate cellular tissues and a proper binder and binding treatment for it, to prevent the physical fatigues and the potential diseases. However, it is highly required for back-up researches to verify various aspects in applying nano silver to textile products.

Keywords

References

  1. 김대식·최장욱 (2001) '뇌파검사학'. 고려의학, 서울, pp.4-5,51-55,129-148
  2. 김이배 (2000) 자동차에서 발생하는 전자파 측정에 관한 연구. 서울산업대학교 대학원 석사학위논문
  3. 김윤신·김수연·박지연·최원욱 (1997) 극저주파 영역에서의 전자파 노출에 관한 조사 연구. 한국환경위생학회지, 23(1), 55-61
  4. 박형준·박춘배·김기용·이승주·윤재현 (2001) 시각활동에 미치는 전자파의 영향. 공업기술개발연구지, 21, 99-103
  5. 설병수 (1999) 컴퓨터 모니터와 가전제품에서 발산되는 전자파의 분석에 관한 연구. 부경대학교 대학원 석사학위논문
  6. 이규수·남철현 (2002) 일부전자파 발생제품 사용에 따른 인체의 신체자각 증상 조사. 대한보건협회학술지, 28(3), 247-258
  7. 이기준 (1996) '전자파의 공포'. 대학출판사, 서울, pp.17-19,89-123
  8. 이상용 (2002) 휴대폰 전자파 차단에 따른 건강개선의 가치. 성균관대학교 대학원 석사학위 논문
  9. 이상회 (1998) '재미있는 전자파 이야기'. 홍릉과학출판사, 서울, p.61
  10. 임성식·김치용 (1998) 뇌파신호 분류에 대한 비교분석 연구. 서경대학교 산업기술연구소 논문집, 5, 533-542
  11. 장우린 (2001) 뇌파측정실험을 통한 3차원 디지털 게임의 심리적 효과에 대한 연구. Society of Korea illusart, 9, 227-265
  12. 장학신 (1997) '전자파장해'. 대광서림, 서울, pp.3-21
  13. Fish B.J. (1991) 'Spelmann's EEG Primer'. Elsevier, New York, pp.127-174
  14. Larson, Christine L., R.J., Abercrombie H.C., Ward R.T., Schaefer S.M., Jackson D.C., and Perlman S.B. (1998) Relation between PET-derived measures of thalamic glucose metabolism and EEG alpha power. Psychophisiology, 35, 162-169 https://doi.org/10.1017/S0048577298001620
  15. Shagass C. (1972) 'Electrical Activity of the Brain'. In Greenfield N.S. and Sternbach R.A.(Eds.). Handbook of Psychophyslology, New York, pp.263-328
  16. http://www.nanopoly.net