Radiation exposure to premature infants in a neonatal intensive care unit in Turkey

Turan Olgar1, Esra Onal, Dogan Bor

  • 1Ankara University, Institute of Nuclear Science, Tandogan, Ankara, Turkey. olgar@eng.ankara.edu.tr

Insights

Infant radiation doses from radiography are acceptable. Scatter radiation contribution is low, but neonates

Area of Science:

  • Medical Imaging and Radiology
  • Pediatric Radiation Dosimetry
  • Neonatal Intensive Care

Background:

  • Infants, particularly premature neonates, undergo radiographic examinations for diagnosis.
  • Understanding radiation exposure is crucial for minimizing potential long-term risks.
  • Scatter radiation from adjacent exposures can contribute to the overall dose received by neonates.

Purpose of the Study:

  • To quantify the radiation dose absorbed by infants during standard radiographic procedures.
  • To assess the specific contribution of scatter radiation from other infants in the same room.
  • To evaluate the associated radiation risks for childhood cancer.

Main Methods:

  • Retrospective analysis of entrance skin doses (ESDs) and effective doses in 23 infants (gestational age ≥ 28 weeks).
  • ESDs measured using tube output (ESD(TO)) and thermoluminescent dosimetry (ESD(TLD)).
  • Scatter radiation evaluated using a phantom; effective doses estimated via Monte Carlo software.

Main Results:

  • Mean ESD(TO) for chest and abdomen were 67 µGy and 65 µGy, respectively.
  • Mean ESD(TLD) was 70 µGy per radiograph.
  • Scatter radiation at 2m distance ranged from 11-17 nGy per radiograph; mean effective doses were 16 µSv (chest) and 27 µSv (abdomen).
  • ESD(TLD) and ESD(TO) showed strong correlation (R² = 0.86).
  • Estimated radiation risks for childhood cancer were low, ranging from 0.4 x 10⁻⁶ to 2.9 x 10⁻⁶.

Conclusions:

  • Neonates receive acceptable radiation doses from common radiological examinations.
  • Scatter radiation contributes minimally to the overall neonatal dose.
  • Increased distance between infants is a protective measure, considering their radiation sensitivity.
Abstract