Published September 1986 | Version v1
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Age- and sex-specific estimation of dose to a normal thyroid from clinical administration of iodine-131

Description

This report describes the derivation of an age- and sex-dependent model of radioiodine dosimetry in the thyroid and the application of the model to estimating the thyroid dose for each of 4215 patients who were exposed to 131I in diagnostic and therapeutic procedures. In most cases, the data available consisted of the patient's age at the time of administration, the patient's sex, the quantity of activity administered, the clinically determined uptake of radioiodine by the thyroid, and the time after administration at which the uptake was determined. The model was made to conform to these data requirements by the use of age-specific estimates of the biological half-time of iodine in the thyroid and an age- and sex-dependent representation of the mass of the thyroid. Also, it was assumed that the thyroid burden was maximum at 24 hours after administration (the 131I dose is not critically sensitive to this assumption). The metabolic model is of the form A(t) = K x (exp(-μ1t) - exp(-μ2t)) μCi where μ/sub i/ = λ/sub r/ + λ/sub i//sup b/ (i = 1, 2), λ/sub r/ is the radiological decay-rate coefficient, and the λ/sub i//sup b/ are biological removal-rate coefficients. The values of λ/sub i//sup b/ are determined by solving a nonlinear equation that depends on assumptions about the time of maximum uptake and the eventual biological loss rate (through which age dependence enters). An addendum (Appendix C) extends the method to other radioiodines and gives age- and sex-dependent dose conversion factors for most isotopes

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS, PC A03/MF A01 - GPO as TI86015368.

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Additional details

Publishing Information

Imprint Pagination
35 p.
Report number
NUREG/CR--3955

Optional Information

Secondary number(s)
ORNL/TM--9800.