Radiasi Medan Elektromagnetik pada Jangkauan Frekuensi Sangat Rendah (Extremely Low Frequency) di Lingkungan Kampus Universitas PGRI Yogyakarta

Herenda Sela Wismaya, Wahyu Sugianto

Abstract


Kekhawatiran masyarakat mengenai dampak negatif yang ditimbulkan dari paparan radiasi elektromagnetik ini masih terus diteliti hingga saat ini. Oleh karena itu, sangat perlu dilakukan suatu studi penelitian untuk mengukur dan memetakan tingkat radiasi elektromagnetik dengan tujuan menganalisis potensi risiko yang terjadi. Paparan radiasi elektromagnetik diukur menggunakan electromagnetic field tester, kemudian hasilnya dibandingkan dengan pedoman keselamatan yang dikeluarkan oleh ICNIRP dan WHO. Hasil yang diperoleh bahwa tingkat paparan radiasi yang diukur dalam satuan mikrotesla di 29 titik lokasi di Universitas PGRI Yogyakarta jauh di bawah pedoman ICNIRP untuk lingkungan pendidikan dan kerja. Nilai medan magnet terukur tertinggi adalah 132,46 µT, sedangkan nilai medan magnet terukur terendah adalah 1,436 µT. Medan magnet diatas 0,3 hingga 0,4 µT dapat meningkatkan risiko leukimia dalam jangka panjang. Penelitian ini telah menghasilkan informasi yang bermanfaat sebagai dasar pengambilan kebijakan kesehatan di lingkungan kampus Universitas PGRI Yogyakarta

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Asl, J. F., Larijani, B., Zakerkish, M., Rahim, F., Shirbandi, K., & Akbari, R. (2019). The possible global hazard of cell phone radiation on thyroid cells and hormones: a systematic review of evidences. Environmental Science and Pollution Research, 26(18), 18017–18031. https://doi.org/10.1007/s11356-019-05096-z

Balmori, A. (2021). Electromagnetic radiation as an emerging driver factor for the decline of insects. Science of the Total Environment, 767, 144913. https://doi.org/10.1016/j.scitotenv.2020.144913

Basandrai, D., Dhami, A. K., Bedi, R. K., & Khan, S. A. (2017). Study of electromagnetic radiation pollution in Jalandhar city, India. AIP Conference Proceedings, 1860. https://doi.org/10.1063/1.4990309

Boga, A., Emre, M., Sertdemir, Y., Uncu, I., Binokay, S., & Demirhan, O. (2016). Effects of GSM-like radiofrequency irradiation during the oogenesis and spermiogenesis of Xenopus laevis. Ecotoxicology and Environmental Safety, 129, 137–144. https://doi.org/10.1016/j.ecoenv.2016.03.015

Budziosz, J., Stanek, A., Sieroń, A., Witkoś, J., Cholewka, A., & Sieroń, K. (2018). Effects of low-frequency electromagnetic field on oxidative stress in selected structures of the central nervous system. Oxidative Medicine and Cellular Longevity, 2018. https://doi.org/10.1155/2018/1427412

Chen, C., Ma, Q., Liu, C., Deng, P., Zhu, G., Zhang, L., … Zhou, Z. (2014). Exposure to 1800 MHz radiofrequency radiation impairs neurite outgrowth of embryonic neural stem cells. Scientific Reports, 4, 1–11. https://doi.org/10.1038/srep05103

Chen, Y., Zhen Cai, Z., Feng, Q., Gao, P., Yang, Y., Bai, X., & Q. Tang, B. (2019). Evaluation of the Extremely-Low-Frequency Electromagnetic Field (ELF-EMF) on Growth of Bacteria Escherichia coli. Biology, Engineering and Medicine, 4(2), 1–12. https://doi.org/10.15761/bem.1000169

D’Angelo, C., Costantini, E., Kamal, M. A., & Reale, M. (2015). Experimental model for ELF-EMF exposure: Concern for human health. Saudi Journal of Biological Sciences, 22(1), 75–84. https://doi.org/10.1016/j.sjbs.2014.07.006

Esa, P. D., Suryandari, D. A., & Sari, P. (2018). Effect of extremely low frequency electromagnetic fields on the diameter of seminiferous tubules in mice. Journal of Physics: Conference Series, 1073(6), 1–10. https://doi.org/10.1088/1742-6596/1073/6/062043

Guizzardi, S., & Pedrazzi, G. (2021). applied sciences Low Frequency Electromagnetic Fields Might Increase the Effect of Enamel Matrix Derivative on Periodontal Tissues.

Huang, C. Y., Chuang, C. Y., Shu, W. Y., Chang, C. W., Chen, C. R., Fan, T. C., & Hsu, I. C. (2014). Distinct epidermal keratinocytes respond to extremely low-frequency electromagnetic fields differently. PLoS ONE, 9(11), 1–8. https://doi.org/10.1371/journal.pone.0113424

Jiao, M., Yin, H., Hu, J., Xu, W., Zhang, X., & Zhang, P. (2019). Effects of Low-Frequency Pulsed Electromagnetic Fields on High-Altitude Stress Ulcer Healing in Rats. BioMed Research International, 2019. https://doi.org/10.1155/2019/6354054

Kim, B. H., Na, M. A., Kim, I. J., Kim, S. J., & Kim, Y. K. (2010). Risk stratification and prediction of cancer of focal thyroid fluorodeoxyglucose uptake during cancer evaluation. Annals of Nuclear Medicine, 24(10), 721–728. https://doi.org/10.1007/s12149-010-0414-6

López, O. G. M., Valbuena, A. J., & Unturbe, C. M. (2019). Significant cellular viability dependence on time exposition at ELF-EMF and RF-EMF in vitro studies. International Journal of Environmental Research and Public Health, 16(12). https://doi.org/10.3390/ijerph16122085

Martínez-Sámano, J., Flores-Poblano, A., Verdugo-Díaz, L., Juárez-Oropeza, M. A., & Torres-Durán, P. V. (2018). Extremely low frequency electromagnetic field exposure and restraint stress induce changes on the brain lipid profile of Wistar rats. BMC Neuroscience, 19(1), 1–10. https://doi.org/10.1186/s12868-018-0432-1

Min, S.-H., Kwon, O., Sattorov, M., Kim, S., Baek, I.-K., Park, S., … Park, G.-S. (2021). Cell-type continuous electromagnetic radiation system generating millimeter waves for active denial system applications. DefeMin, S.-H. et Al. (2021) ‘Cell-Type Continuous Electromagnetic Radiation System Generating Millimeter Waves for Active Denial System Applications’, Defence Technology. Elsevier Inc, (Xxxx). Doi: 10.1016/j.Dt.2021.10.014.Nce Technology, (xxxx). https://doi.org/10.1016/j.dt.2021.10.014

Ohayon, M. M., Stolc, V., Freund, F. T., Milesi, C., & Sullivan, S. S. (2019). The potential for impact of man-made super low and extremely low frequency electromagnetic fields on sleep. Sleep Medicine Reviews, 47, 28–38. https://doi.org/10.1016/j.smrv.2019.06.001

Olorunsola, A. B., Ikumapayi, O. M., Oladapo, B. I., Alimi, A. O., & Adeoye, A. O. M. (2021). Temporal variation of exposure from radio-frequency electromagnetic fields around mobile communication base stations. Scientific African. https://doi.org/10.1016/j.sciaf.2021.e00724

Phillips, J. L., Singh, N. P., & Lai, H. (2009). Electromagnetic fields and DNA damage. Pathophysiology, 16(2–3), 79–88. https://doi.org/10.1016/j.pathophys.2008.11.005

Prihatini, R., Abdullah, M. P., Bin Tuan Abdullah, T. A. R., Said, I., Hussin, H., & Saleh, N. M. (2017). Extremely low frequency electromagnetic field generator suitable for plant in vitro studies. Research in Agricultural Engineering, 63(4), 180–186. https://doi.org/10.17221/47/2016-RAE

Selmaoui, B. (2017). Effects of extremely low frequency (ELF) and radio-frequency (RF) on melatonin and cortisol, two markers of the circadian rhythms. Toxicology Letters, 280, S31. https://doi.org/10.1016/J.TOXLET.2017.07.076

Sladicekova, K., Bereta, M., Misek, J., Parizek, D., & Jakus, J. (2021). Biological Effects of a Low-Frequency Electromagnetic Field on Yeast Cells of the Genus Saccharomyces Cerevisiae . Acta Medica Martiniana, 21(2), 34–41. https://doi.org/10.2478/acm-2021-0006

Su, Y. P., Niu, H. W., Chen, J. B., Fu, Y. H., Xiao, G. B., & Sun, Q. F. (2014). Radiation dose in the thyroid and the thyroid cancer risk attributable to CT scans for pediatric patients in one general hospital of China. International Journal of Environmental Research and Public Health, 11(3), 2793–2803. https://doi.org/10.3390/ijerph110302793

Tekutskaya, E. E., Barishev, M. G., & Ilchenko, G. P. (2015). The effect of a low-frequency electromagnetic field on DNA molecules in aqueous solutions. Biophysics (Russian Federation), 60(6), 913–916. https://doi.org/10.1134/S000635091506024X

Touitou, Y., Selmaoui, B., & Lambrozo, J. (2022). Assessment of cortisol secretory pattern in workers chronically exposed to ELF-EMF generated by high voltage transmission lines and substations. Environment International, 161, 107103. https://doi.org/10.1016/J.ENVINT.2022.107103

Xu, S., Chen, G., Chen, C., Sun, C., Zhang, D., Murbach, M., … Xu, Z. (2013). Cell Type-Dependent Induction of DNA Damage by 1800 MHz Radiofrequency Electromagnetic Fields Does Not Result in Significant Cellular Dysfunctions. PLoS ONE, 8(1). https://doi.org/10.1371/journal.pone.0054906




DOI: https://doi.org/10.24114/jiaf.v8i3.37674

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