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http://dx.doi.org/10.17946/JRST.2016.39.2.13

Dose Rate of Restroom in Facilities using Radioisotope  

Cho, Yong-Gwi (Department of Nuclear Medicine, Inha University hospital)
An, Seong-Min (Department of Radiology, Gachon University)
Publication Information
Journal of radiological science and technology / v.39, no.2, 2016 , pp. 237-246 More about this Journal
Abstract
This study is therefore aimed at measuring the surface dose rate and the spatial dose rate in and outside the radionuclide facility in order to ensure safety of the patients, radiation workers and family care-givers in their use of such equipment and to provide a basic framework for further research on radiation protection. The study was conducted at 4 restrooms in and outside the radionuclide facility of a general hospital in Incheon between May 1 and July 31, 2014. During the study period, the spatial contamination dose rate and the surface contamination dose rate before and after radiation use were measured at the 4 places-thyroid therapy room, PET center, gamma camera room, and outpatient department. According to the restroom use survey by hospitals, restrooms in the radionuclide facility were used not only by patients but also by family care-givers and some of radiation workers. The highest cumulative spatial radiation dose rate was 8.86 mSv/hr at camera room restroom, followed by 7.31 mSv/hr at radioactive iodine therapy room restroom, 2.29 mSv/hr at PET center restroom, and 0.26 mSv/hr at outpatient department restroom, respectively. The surface radiation dose rate measured before and after radiation use was the highest at toilets, which are in direct contact with patient's excretion, followed by the center and the entrance of restrooms. Unsealed radioactive sources used in nuclear medicine are relatively safe due to short half lives and low energy. A patient who received those radioactive sources, however, may become a mobile radioactive source and contaminate areas the patient contacts-camera room, sedation room, and restroom-through secretion and excretion. Therefore, patients administered radionuclides should be advised to drink sufficient amounts of water to efficiently minimize radiation exposure to others by reducing the biological half-life, and members of the public-family care-givers, pregnant women, and children-be as far away from the patients until the dose remains below the permitted dose limit.
Keywords
Surface radiation dose rate; Space radiation dose rate;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 Korea Radioisotope Association. Radiological safety control and protector, 3-28. 2013
2 Lee GH : CT's justified and optimization of Guidlines. Korea Food & Drug Safety Evaluation, 7-10, 2012
3 Jeong JK, Lee MC : Nuclear Medicine of Chang Sun Ko. Korea Medicine Book publisher, 1-7, 2008
4 Cho SW, Park HH, Kim JY, et al : A Study to Decrease Exposure Dose for the Radiotechnologist in PET/CT. J Nucl Med Technology, 14(2), 159-165, 2010
5 Recommendation of the International Commission on Radiological Protection. Publication 103 Ann, ICRP, 137, 2-4. 2007
6 Nuclear Safety ACT : ACT on the Establishment and Operaion of the Nuclear Safety and Security Commission. 11715, 2003
7 Release of patients after therapy with unsealed radionuclides. Publication 94 Ann, ICRP, 2004
8 https://hanaro.kaeri.re.kr, 2014
9 Lee GW : Minimized Radiation Dose of Patients Receiving High Dose Radioiodine(I-131) Therapy. J Korean Radiological Science and Technology, 23(2), 63-67, 2007
10 Jang BS : The study of spatial and exposed dose rate from PET-scan patients with 18F and 131I . Busan National University of Graduate School, 1-51, 2012
11 Kwak BJ : A Study on the Measurement of the Spatial Dose Rates during PET-CT examination. Catholic University of Pusan Graduate School of Health Sciences, 14-25, 2009
12 Nuclear Safety ACT 1014-34 : Criteria for radioactive protection. 2014.
13 U.S. Nuclear Regulatory Commission, Health physics survets for byproduct materials at NRC-licensed processing and manufacturing plants, Regulatory Guide 8.21. Washington DC, 1979
14 Nuclear Safety ACT 1014-34 : Rules on technology standards for radioactive safety management. 2014