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Updated: Jun 29, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
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.
Objective:
The aim of this work was to determine the radiation dose received by infants from radiographic exposure and the contribution from scatter radiation due to radiographic exposure of other infants in the same room.
Materials And Methods:
We retrospectively evaluated the entrance skin doses (ESDs) and effective doses of 23 infants with a gestational age as low as 28 weeks. ESDs were determined from tube output measurements (ESD(TO)) (n = 23) and from the use of thermoluminescent dosimetry (ESD(TLD)) (n = 16). Scattered radiation was evaluated using a 5 cm Perspex phantom. Effective doses were estimated from ESD(TO) by Monte Carlo computed software and radiation risks were estimated from the effective dose. ESD(TO) and ESD(TLD) were correlated using linear regression analysis.
Results:
The mean ESD(TO) for the chest and abdomen were 67 microGy and 65 microGy per procedure, respectively. The mean ESD(TLD) per radiograph was 70 microGy. The measured scattered radiation range at a 2 m distance from the neonatal intensive care unit (NICU) was (11-17 nGy) [DOSAGE ERROR CORRECTED]per radiograph. Mean effective doses were 16 and 27 microSv per procedure for the chest and abdomen, respectively. ESD(TLD) was well correlated with ESD(TO) obtained from the total chest and abdomen radiographs for each infant (R(2) = 0.86). The radiation risks for childhood cancer estimated from the effective dose were 0.4 x 10(-6) to 2 x 10(-6) and 0.6 x 10(-6) to 2.9 x 10(-6) for chest and abdomen radiographs, respectively.
Conclusion:
The results of our study show that neonates received acceptable doses from common radiological examinations. Although the contribution of scatter radiation to the neonatal dose is low, considering the sensitivity of the neonates to radiation, further protective action was performed by increasing the distance of the infants from each other.
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