UPDATED AGE-SPECIFIC EXTERNAL DOSE AND EXPOSURE RATE COEFFICIENTS FOR 131I PATIENT RELEASE

Author:

Aziz L1,Dewji S2ORCID

Affiliation:

1. Department of Nuclear Engineering, Texas A&M University, 3133 TAMU, College Station, TX 77843-3133, USA

2. Nuclear and Radiological Engineering and Medical Physics Programs, Georgia Institute of Technology, 770 State Street, Atlanta, GA 30332-0405, USA

Abstract

Abstract Updated effective dose rate and exposure rate coefficients for age-specific receptors representing members of the public were computed for external exposures from age-specific patients administered 131I to treat thyroid dysfunction for patient release evaluation. Coefficients were compared to the simplified point source method described by United States Nuclear Regulatory Commission Regulatory Guide (RG) 8.39, which does not consider age-specific parameters, morphometry or time-dependent 131I biodistribution. Monte Carlo age-specific phantom simulations were correlated with modified continuous voiding patient biokinetic models approximating age-specific dose and exposure rates as a function of time postadministration. Dose rates resulted in an overapproximation by a factor of ~3 from differentiated thyroid cancer patients (5% uptake) and by ~2 from hyperthyroid patients (80%) at 8 h postadministration compared to RG8.39. This study provides a paradigm where age-specific morphometry and biokinetic integration must be jointly considered when developing patient release guidelines for 131I and future radionuclide therapies.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

Reference41 articles.

1. International Commission on Radiological Protection Publication 103: The 2007 recommendations of the International Commission on Radiological Protection;Ann. ICRP,2007

2. Organ S values and effective doses for family members exposed to adult patients following I-131 treatment: a Monte Carlo simulation study;Han;Med. Phys.,2013

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