[1] Rehani M M,Vano E,Ciraj-Bjelac O, et al. Radiation and cataract[J]. Radiat Prot Dosimetry, 2011,147:300-304. DOI:10.1093/rpd/ncr299. [2] ICRP. Statement on tissue reactions/early and late effects of radiation in normal tissues and organs—Threshold doses for tissue reactions in a radiation protection context[R]. ICRP Publication 118. 2012. [3] IAEA. Implications for occupational radiation protection of the new dose limit for the lens of the eye [R].Vienna: International Atomic Energy Agency,2013. [4] French Radiological Protection Society. Eye lens: Regulatory limits: Measurement, dosimetry and medical surveillance[R].Technical Information Sheets Produced by the Technical Protection Section of the French Radiological Protection Society, 2016. [5] Cantone M C,Ginjaume M, Miljanic S, et al. Report of IRPA task group on the impact of the eye lens dose limits[J]. J Radiol Prot, 2017, 37(2): 527-550. DOI:10.1088/1361-6498/aa604b. [6] 赵日,刘立业,李君利.新限值下眼晶体剂量监测相关研究进展[J].辐射防护,2015,35(6):367-372. [7] NCRP. Guidance on radiation dose limits for the lens of the eye[R]. Maryland:National Council on Radiation Protection and Measurements,2016. [8] NRC.Occupational radiation exposure at commercial nuclear power reactors and other facilities: Forty-fourth Annual Report[R]. NUREG-0713. 2011,Volume 33. [9] Maeng S J, Kim J, Cho G. Evaluation of eye lens dose to workers in the steam generator at the Korean optimize power reactor 100[J]. Radiat Prot Dosimetry, 2018,181(4):1-8. DOI:10.1093/rpd/ncy038. [10] Yokoyama S,Tatsuzaki H,Tanimura Y,et al. Radiation exposure to the lens of the eye for Japanese nuclear power plant workers[J]. J Radiol Prot,2022,42(3):1-17. DOI:10.1088/1361-6498/ac7913. [11] Secretariat of Nuclear Regulation Authority, Japan. “On a modality of the radiation protection for the lens of the eye” executive summary[R].2018. [12] JRC. Subcommittee on radiation protection of the lens of the eye report regarding radiation protection of the lens of the eye[R]. JRC,2018. [13] Yokoyama S,Hamada N,Tsujimura N.Recent discussions toward regulatory implementation of the new occupational equivalent dose limit for the lens of the eye and related studies in Japan[J]. Int J Radiat Biol, 2019, 95(8):1103-1112. DOI:10.1080/09553002.2019.1605464. [14] TEPCO. Radiation dose in the Fukushima Daiichi Nuclear Power Plant[R].2018. [15] McWhan A,Dobrzynska W. Eye lens dose monitoring in the UK nuclear industry using active personal dosemeters[J]. J Radiol Prot, 2018,38(3) :1204-16. DOI:10.1088/1361-6498/aa9bc6. [16] Gustafsson A.Practical implications of the new dose limit to the lens of the eye at Forsmark Nuclear Power Plant ISOE Virtual Symp[R]. 2021. [17] 韦应靖,张强,李厚文,等.核设施β-γ混合场中定向剂量当量率H′(3)的现场监测方法[J].辐射防护,2019,39(1):1-6. [18] NCRP. Guidance on radiation dose limits for the lens of the eye[R].NCRP Commentary No. 26. Bethesda (MD), 2016. [19] NCRP. Management of persons contaminated with radionuclides:handbook[R].NCRP No.161. Bethesda(MD),2008. [20] U.S.NRC.“Part 20 Standards For Protection Against Radiation,” Title 10 Code of Federal Regulations Part 20[EB/OL].1991. http://www.nrc.gov/reading- rm/doc-collections/cfr/part020/ (U.S. Government Printing Office, Washington). [21] European Union (EU). Basic safety standards for protection against the dangers arising from exposure to ionizing radiation[R]. Council Directive 2013/59/EURATOM. [22] IAEA.Radiation protection and safety of radiation sources:International Basic Safety Standards[R]. General Safety Requirements Part 3.2014. [23] ISO.Radiological protection-procedures for monitoring the dose to the lens of the eye, the skin and the extremities:ISO/DIS 15382[S].2013. [24] IEC.Radiation protection instrumentation-passive integrating dosimetry systems for personal and environmental monitoring of photon and beta radiation:IEC 62387[S]. 2012. [25] IRPA. IRPA guidance on implementation of eye dose monitoring and eye protection of workers[R]. Cape Town,2017. [26] NCS. Guidelines for radiation protection and dosimetry of the eye lens[R]. Report 31 of the Netherlands Commission on Radiation Dosimetry.2018. [27] MHLW. The regulation on prevention of ionizing radiation hazards (amended)[R]. MHLW, 2021. [28] Yokoyama S,Tsujimura N,Hashimoto M,et al. The Japan health physics society guideline on dose monitoring for the lens of the eye[J]. Radiation Protection and Research,2022,47(1):1-7. https://doi.org/10.14407/jrpr.2021.00276. [29] Cantone M C, Ginjaume M, Martin C J,et al. Report of IRPA task group on issues and actions taken in response to the change in eye lens dose limit[J]. J Radiol Prot,2020,40(4):1508-1533. DOI:10.1088/ 1361-6498/abb5ec. [30] CNSC.Dosimetry, Volume I: Ascertaining Occupational Dose[R]. REGDOC-2.7.2.Canda,2021. [31] Cantone M C, Ginjaume M. The trend of view of IRPA professionals on implications of implementation of dose limits to the eye lens[J]. Jpn J Health Phys,2021,56 (1):3-4. DOI:https://doi.org/10.5453/jhps.56.3. [32] Clairand I,Behrens R, Brodecki M, et al. EURADOS 2016 Intercomparison exercise of eye lens dosemeters[J]. Radiat Prot Dosimetry, 2018,182(3):1-6. DOI:10.1093/rpd/ncy067. [33] JEA. Guide on personal dose monitoring:JEAG 4610[R]. 2021. [34] Tsujimura N, Yamazaki T, Takada C. Present status and practical issues on dosimetry for the lens of the eye at JAEA MOX fuel facilities[J]. J Nucl Sci Technol, 2021,58(1):40-44. [35] Yokoyama S, Hamada N, Tsujimura N,et al.Regulatory implementation of the occupational equivalent dose limit for the lens of the eye and underlying relevant efforts in Japan[J]. Int J Radiat Biol,2023,99(4):604-619. DOI:10.1080/09553002.2022.2115160. |