Skin Uptake of 131I in a Veterinary Practice

James P Abraham1, Thomas E Johnson

  • 1Colorado State University College of Veterinary Medicine and Biomedical Sciences, Radiation Safety Office, 141 General Services Building, 1251 South Mason Street, Fort Collins, CO 80523.

Health Physics
|February 3, 2026
PubMed

Insights

Trace radioiodine (131I) skin contamination led to measurable thyroid doses for a technician. In-vivo measurements established a technician-specific effective half-life, confirming dose accuracy even from intact skin exposure.

Area of Science:

  • Nuclear Medicine
  • Radiation Safety
  • Occupational Health

Background:

  • Accidental radioactive contamination poses risks in healthcare settings.
  • Veterinary nuclear medicine involves handling radioisotopes like Iodine-131 (131I).
  • Accurate dose assessment is crucial for occupational health and safety.

Purpose of the Study:

  • To quantify the dose from accidental trace 131I skin contamination.
  • To establish a technician-specific effective half-life for 131I.
  • To compare different methods for calculating thyroid committed dose equivalent (CDE).

Main Methods:

  • In-vivo thyroid measurements to quantify 131I uptake and effective half-life.
  • Ruled out inhalation and ingestion based on 131I's chemical properties.
  • Calculated committed dose equivalent (CDE) using three distinct methods.

Main Results:

  • Quantified 131I uptake at 2.2 kBq (60.1 nCi) with an effective half-life of 7.61 days.
  • Assigned highest CDE to the thyroid as 4.1 mSv and shallow dose equivalent (SDE) as 0.22 mSv.
  • Average CDE across three methods was 3.68 ± 0.38 mSv, showing a 10% coefficient of variation.

Conclusions:

  • Trace amounts of radioiodine on intact skin can result in significant occupational radiation doses.
  • Multiple dose calculation methods provide consistent results, ensuring accurate dose assessment.
  • Establishing technician-specific effective half-lives enhances dose determination accuracy.

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