Guidance on radiation dose limits for the lens of the eye: Overview of the recommendations in NCRP Commentary No. 26 Journal Article


Authors: Dauer, L. T.; Ainsbury, E. A.; Dynlacht, J.; Hoel, D.; Klein, B. E. K.; Maye, D.; Prescott, C. R.; Thornton, R. H.; Vano, E.; Woloschak, G. E.; Flannery, C. M.; Goldstein, L. E.; Hamada, N.; Tran, P. K.; Grissom, M. P.; Blakely, E. A.
Article Title: Guidance on radiation dose limits for the lens of the eye: Overview of the recommendations in NCRP Commentary No. 26
Abstract: Purpose: This review summarizes the conclusions and recommendations of the new National Council on Radiation Protection and Measurements (NCRP) Commentary No. 26 guidance on radiation dose limits for the lens of the eye. The NCRP addressed radiation protection principles in respect to the lens of the eye, discussed the current understanding of eye biology and lens effects, reviewed and evaluated epidemiology, and assessed exposed populations with the potential for significant radiation exposures to the lens while suggesting monitoring and protection practices. Conclusions: Radiation-induced damage to the lens of the eye can include the loss of clarity resulting in opacification or clouding several years after exposure. The impact is highly dependent on the type of radiation, how the exposure of the lens was delivered, the genetic susceptibilities of the individual exposed, and the location of the opacity relative to the visual axis of the individual. The preponderance of epidemiological evidence suggests that lens damage could occur at lower doses than previously considered and the NCRP has determined that it is prudent to reduce the recommended annual lens of the eye occupational dose limit from an equivalent dose of 150 mSv to an absorbed dose of 50 mGy. Significant additional research is still needed in the following areas: comprehensive evaluation of the overall effects of ionizing radiation on the eye, dosimetry methodology and dose-sparing optimization techniques, additional high quality epidemiology studies, and a basic understanding of the mechanisms of cataract development.
Keywords: interventional radiology; ionizing-radiation; exposure; protection; solid cancer; perspectives; future; opacification; cataractogenesis; national council on radiation protection and measurements (ncrp); radiation-induced cataract; radiation-dose limit for human lenticular; noncancer disease mortality; induced cataracts
Journal Title: International Journal of Radiation Biology
Volume: 93
Issue: 10
ISSN: 0955-3002
Publisher: Taylor & Francis Group Ltd.  
Date Published: 2017-10-01
Start Page: 1015
End Page: 1023
Language: English
ACCESSION: WOS:000411547600003
DOI: 10.1080/09553002.2017.1304669
PROVIDER: wos
PUBMED: 28346025
Notes: Review -- Source: Wos
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  1. Lawrence Dauer
    170 Dauer