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60 Hz 자기장이 예쁜꼬마선충의 생식에 미치는 영향 연구  

Park, Byeong-Jae (한림대학교)
Jang, Hye-Jin (한림대학교)
Kim, Hui-Seong (한림대학교)
Gang, Hui-Eun (한림대학교)
Sim, Rye-Rim (한림대학교)
Choe, Yu-Mi (한림대학교)
Kim, Yun-Myeong (단국대학교)
Kim, Nam (충북대학교)
Kim, Yun-Won (한림대학교)
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1 K. Bessho, S. Yamada, T. Kunitani, T. Nakamura, T. Hashiguchi, Y. Tanimoto, S. Harada, H. Yamamoto, and R. Hosono, "Biological responses in Caenorhabditis elegans to high magnetic fields", Experientia, vol. 51, pp. 284-288, 1995.   DOI   ScienceOn
2 S. Myrtill, "Cell type specific redox status is responsible for diverse electromagnetic field effects", Current Medicinal Chemistry, vol. 14, pp. 1141-1152, 2007.   DOI   ScienceOn
3 B-J Park, D-G Lee, J-R Yu, S-K Jung, K. Choi, J. Lee, J. Lee, Y. S. Kim, J. I. Lee, J. Y. Kwon, J. Lee, A. Singson, W. K. Song, S. H. Eom, C-S Park, D. H. Kim, J. Bandyopadhyay, and J. Ahnn, "Calreticulin, a calcium-binding molecular chaperone, is required for stress response and fertility in Caenorhabditis elegans", Molecular Biology of the Cell, vol. 12, pp. 2835-2845, 2001.
4 M. H. Repacholi, "Review of health effects and gaps in knowledge", WHO Meeting on EMF Biological Effects and Standards Harmonization in Asia and Oceania, pp. 33-42, Seoul, 2001.
5 Y-W Kim, H-S Kim, J-S Lee, Y-J Kim, S-K Lee, J-N Seo, K-C Jung, N. Kim, and Y-M Gimm, "Effects of 60 Hz 14 $\mu$T magnetic field on the apoptosis of testicular germ cell in mice", Bioelectromagnetics, vol. 29, pp. 1-7, 2008.   DOI   ScienceOn
6 J. S. Lee, S. S. Ahn, K. C. Jung, Y. W. Kim, and S. K. Lee, "Effects of 60 Hz electromagnetic field exposure on testicular germ cell apoptosis in mice", Asian J. Androl., vol. 6, pp. 29-34, 2004.
7 C. Daniells, I. Duce, D. Thomas, P. Sewell, J. Tattersall, and D. de Pomerai, "Transgenic nematodes as biomonitors of microwave-induced stress", Mutation Research, vol. 399, pp. 55-64, 1998.   DOI
8 J. McCann, R. Kavet, and C. N. Rafferty, "Assessing the potential carcinogenic activity of magnetic fields using animal models", Environ Health Perspect, vol. 1, pp. 79-100, 2000.
9 T. Miyakawa, S. Yamada, S. Harada, T. Ishimori, H. Yamamoto, and R. Hosono, "Exposure of Caenorhabditis elegans to extremely low frequency high magnetic fields induces stress responses", Bioelectromagnetics, vol. 22, pp. 333-339, 2001.   DOI   ScienceOn
10 B. Junkersdorf, H. Bauer, and H. O. Gutzeit, "Electromagnetic fields enhance the stress response at elevated temperatures in the nematode Caenorhabditis elegans", Bioelectromagnetics, vol. 21, pp. 100-106, 2000.   DOI   ScienceOn
11 S. Brenner, "The genetics of Caenorhabditis elegans", Genetics, vol. 77, pp. 71-94, 1974.
12 A. S. Dawe, R. Nylund, D. Leszczynski, N. Kuster, T. Reader, and D. I. De Pomerai, "Continuous wave and simulated GSM exposure at 1.8 W/kg and 1.8 GHz do not induce hsp16-1 heat-shock gene expression in Caenorhabditis elegans" , Bioelectromagnetics, vol. 29, pp. 92-99, 2008.   DOI   ScienceOn
13 A. S. Dawe, B. Smith, D. W. P. Thomas, S. Greedy, N. Vasic, A. Gregory, B. Loader, and D. I. de Pomerai, "A small temperature rise may contribute towards the apparent induction by microwaves of heat-shock gene expression in the nematode Caenorhabditis elegans", Bioelectromagnetics, vol. 27, pp. 88-97 (2006).   DOI   ScienceOn
14 심재갈, "예쁜꼬마선충을 이용한 신약 후보 물질 탐색", 분자세포생물학뉴스, 22(1), pp. 33-44, 2010년.
15 Z. F. Altun, D. H. Hall, Introduction to C. elegans Anatomy. In Worm Atlas. http://www.wormatlas.org/verl/handbook/contents.htm, 2009.