Real-time Radiation Monitoring and Assessment of Radiation Risk on Public around BSMMU Hospital Campus, Dhaka, Bangladesh

Authors

  • Abdullah Tareque Jagannath University
  • Suranjan Kumar Das Jagannath University,
  • Mohammad Sohelur Rahman Atomic Energy Centre
  • Selina Yeasmin Atomic Energy Centre

DOI:

https://doi.org/10.18034/ra.v9i2.544

Keywords:

Ionizing radiation, In-Situ, Hospital, Public, Cancer

Abstract

Objective: Ionizing radiation is extensively used in the hospital for diagnosis and treatment procedures to patients and its usage increasing day by day with the socio-economic development of the country. The aim of the study is to monitor the real-time radiation around the Bangabandhu Sheikh Mujib Medical University (BSMMU) hospital campus and estimation of the radiation risk on public.

Method: The real-time radiation monitoring around the BSMMU hospital campus was performed using digital portable radiation monitoring device (DPRMD). The DPRMD meets all European CE standards and the American “FCC 15 standard”. The DPRMD was placed at 1 meter above the ground on tripod and data taking time for each monitoring point (MP) was 1 hour. Each MP was identified using Garmin eTrex GPS device. 32 MPs were selected for taking the real-time radiation dose rates around the BSMMU hospital campus from August-September 2019.

Results: The real-time radiation dose rates around the BSMMU hospital campus were ranged from 0.020-2.45 µSv/hr with an average of 0.211 ± 0.094 µSv/hr. The annual effective dose on public were ranged from 0.222 ± 0.052 mSv to 1.247 ± 0.071 mSv with an average of 0.368 ± 0.097 mSv. The excess life-time cancer risk (ELCR) on public was estimated based on the annual effective dose that ranged from 0.881×10-3 to 5.12×10-3 with an average value of 1.488×10-3 around the BSMMU hospital campus, which means that in every thousand people, one person is at the risk of developing cancer caused by the scattered radiation exposure from the hospital.

Conclusion: Real-time radiation monitoring makes possible to ensure the protection the radiation worker and the public from unnecessary radiation hazard. The study also provides the instantaneous information of inappropriate operation of radiation generating equipments and improper handling of radioactive substances in the hospital.

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Author Biographies

Abdullah Tareque, Jagannath University

MS student, Department of Physics, Jagannath University, Bangladesh

Suranjan Kumar Das, Jagannath University,

Professor, Department of Physics, Jagannath University, Bangladesh

Mohammad Sohelur Rahman, Atomic Energy Centre

Chief Scientific Officer, Health Physics Division, Atomic Energy Centre, Bangladesh

Selina Yeasmin, Atomic Energy Centre

Chief Scientific Officer and Head Health Physics Division, Atomic Energy Centre, Bangladesh

References

Amekudzie A., Emi-Reynolds G., Kpeglo D.O., Mensah C.K., Gyekye P.K., Lawluvi H., Gbormittah S.V., Owusu E. (2011) “Determination of dose rate levels around nuclear installations in Ghana”, International Journal of Science and Technology, Vol.1(3), pp144-147.

Ateba J.F.B., Ateba P.O., Ben-Bolie G.H., Abiama P.E., Abega C.R., Mvondo S. (2010) “Natural background dose measurements in South Cameroon,” Radiation Protection Dosimetry, Vol. 140(1), pp 81-88. https://doi.org/10.1093/rpd/ncq035

Bangabandhu Sheikh Mujib Medical University (BSMMU) hospital, website, https://bsmmu.edu.bd/ (accessed 05 January, 2021)

Brenner DJ, Hall EJ. (2007) “Computed tomography: an increasing source of radiation

exposure”, N. Engl. J. Med., Vol. 357(22), pp.2277-2284.

Chougaonkar M.P., Shetty P.G., Mayya Y.S., Puranik V.D., Joshi M.L., Kushwaha H.S. (2008) “Environmental gamma radiation monitoring around nuclear power stations in India, An Indian Scenario”, Journal of Nuclear Science and Technology, Supplement 5, pp 619-622.

Edith N. I., Philomina O.C. (2018) “Estimation of radiation dose rate of radiological unit personnels in some teaching hospitals in Southern Nigeria”, Radiation Science and Technology, Vol. 4(4), pp22-28.

Hazrati S., Sadeghi H., Amani M., Alizadeh B., Fakhimi H., Rahimzadeh S. (2010) “Assessment of gamma dose rate in indoor environments in selected districts of Ardabil Province, Northwestern Iran”, Interna-tional Journal of Occupational Hygiene, Vol.2(1), pp 42-45.

ICRP (2007), “Recommendations of the ICRP: Annals of the ICRP (International Commission on Radiological Protection)”, Vol. 37, pp.2-4.

James I.U., Moses I.F., Vandi J.N., Ikoh U.E. (2015) “Measurement of indoor and outdoor background levels of Kwali General Hospital, Abuja”, J. Appl. Sci. Environ. Manage., Vol. 19(1), pp89-93.

Mettler F.A. Jr., Bhargavan M., Faulkner K., et al. (2009) “Radiologic and nuclear medicine studies in the United States and worldwide: frequency, radiation dose, and comparison with other radiation sources-1950-2007”, Radiology, Vol. 253(2), pp520-531.

Mim F. S., Rahman M. S., Tareq S. M., Yeasmin S.(2020), “Assessment of Radiation Hazard on Public Health at Indoor and Outdoor Environment of DMCH Campus, Dhaka, Bangladesh”, ABC Research Alert, Vol. 8(2), pp. 69-77.

Moontaha S., Rahman M.S., Islam M.S., Yeasmin S. (2018) “Real-time environmental gamma radiation dose rate measurement around major nuclear and radiological facilities in Bangladesh”, International Journal of Scientific Research and Management, Vol. 6(3), pp39-49.

NSRC (1997), (The Nuclear Safety and Radiation Control) Rules of Bangladesh (SRO No. 205-Law/97).

NCRP (2009), the National Council on Radiation Protection & Measurements, Report No. 160, Bethesda, MD 20814-3095, USA.

Ononugbo C., Avwiri O. G. (2016) “Evaluation of effective dose and excess lifetime cancer risk from indoor and outdoor gamma dose rate of university of Port Harcourt Teaching Hospital, Rivers State,” Sci-entia Africana, Vol. 15(1). https://www.ajol.info/index.php/sa/article/view/156472

Owner’s Manual, GARMIN eTrex HC Series, available at https://static.garmincdn.com/pumac/eTrexLegendHCx_OwnersManual.pdf

Oyeyinka O.D., James I.U., Akueche E.C., Shonowo O.A., Adesanmi C.A. (2012) “Estimation of radiation dose rate levels around a nuclear establishment in Abuja, North Central, Nigeria”, Science and technology, Vol. 2(6), pp 163-167.

Temaugee S. T., Daniel T. A., Oladejo K. O., Daniel S. (2014) “Assessment of Public Awareness of the Detri-mental Effects of Ionizing Radiation in Kontagora, Niger State”, Nigeria”, International Journal of Science and Technology, Vol. 4(7), pp.134-141.

UNSCEAR (2000), “United Nations Scientific Committee on the Effects of Atomic Radiation. Sources and Ef-fects of Ionizing Radiation Report to General Assembly, with Scientific Annexes (New York: United Nations, United Nations Sales Publication E.00.IX.3).

UNSCEAR (2008), “United Nations Scientific Committee on the Effects of Atomic Radiation. Sources and Ef-fects of Ionizing Radiation Report to General Assembly, with Scientific Annexes, Vol. I, Annex-A, Page No. 23 (New York: United Nations)

UNSCEAR (1993), “United Nations Scientific Committee on the Effects of Atomic Radiation Sources and Ef-fects of Ionizing Radiation Report to General Assembly, with Scientific Annexes (New York: United Nations).

UNSCEAR (1988), “United Nations Scientific Committee on the Effects of Atomic Radiation, sources, effects and risks of ionizing radiation”, (United Nations, New York).

University of California (2021), Department of Radiology & Biomedical Imaging, San Francisco, Web address: https://radiology.ucsf.edu/patient-care/patient-safety/radiation-safety/risks-of-radiation

User Manual GAMMA SCOUT, available at https://www.gamma-scout.com/EN/Handbuch.php

World Bank Report (2018), Web address: https://data.worldbank.org/indicator/SP.DYN.LE00.IN?locations=BD (accessed 30 March 2021)

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Published

2021-06-06

How to Cite

Tareque, A. ., Das, S. K. ., Rahman, M. S. ., & Yeasmin, S. . (2021). Real-time Radiation Monitoring and Assessment of Radiation Risk on Public around BSMMU Hospital Campus, Dhaka, Bangladesh . ABC Research Alert, 9(2), 32–40. https://doi.org/10.18034/ra.v9i2.544

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Research Paper

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