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Radiation exposure to comforters and carers during paediatric molecular radiotherapy
J E Gains1, C Walker1, T M Sullivan2
1Department of Oncology, University College Hospital, 250 Euston Road, NW1 2PQ, London, United Kingdom.
Insights
Radiation exposure for family members caring for children receiving molecular radiotherapy was monitored. Doses were acceptably low, with only one carer exceeding the national dose constraint.
Area of Science:
- Nuclear Medicine
- Radiation Oncology
- Pediatric Oncology
Background:
- Molecular radiotherapy is increasingly used in pediatric care.
- Assessing incidental radiation exposure to caregivers is crucial for safety.
- English national dose constraints provide a benchmark for acceptable exposure levels.
Purpose of the Study:
- To evaluate radiation doses received by comforters and carers of children undergoing molecular radiotherapy.
- To determine if these doses were kept as low as reasonably achievable (ALARA).
- To ensure compliance with English national dose constraints.
Main Methods:
- Routine monitoring of adult comforters and carers using whole-body personal dose meters.
- Data collection for iodine-131 meta-iodobenzylguanidine (131I-mIBG), lutetium-177 DOTATATE (177Lu-DOTATATE), and iodine-131 sodium iodide (131I-NaI) treatments.
- Analysis of exposure data from 50 131I-mIBG, 15 177Lu-DOTATATE, and 28 131I-NaI administrations.
Main Results:
- Median exposure for carers of 131I-mIBG patients varied (163-302 µSv).
- Median exposure for carers of 177Lu-DOTATATE was 6 µSv, and for 131I-NaI was 37 µSv.
- Only one carer exceeded the 5 mSv dose constraint.
Conclusions:
- Incidental radiation exposure to comforters and carers is acceptably low in routine pediatric molecular radiotherapy.
- Current practices ensure doses are within nationally recommended constraints.
- This study provides evidence supporting the safety of family involvement in pediatric molecular radiotherapy care.
Background:
To show whether the incidental radiation exposure received by comforters and carers of children undergoing molecular radiotherapy was kept as low as reasonably achievable and was within English national dose constraints.
Procedure:
The radiation exposure of adult comforters and carers was routinely monitored with a whole body personal dose meter while the child was in hospital. Data were collected on iodine-131 meta-iodobenzylguanidine (131 I-mIBG), lutetium-177 DOTATATE (177 Lu-DOTATATE), and iodine-131 sodium iodide (131 I-NaI) treatments.
Results:
Data were available for 50 treatments with high-administered activity double-infusion 131 I-mIBG and 12 single administrations; 15 177 Lu-DOTATATE treatments and 28 131 I-NaI administrations. The median age was 7 years (1-18). The median administered activity of: 131 I-mIBG was 16.2 GBq (6.8-59 GBq) for double infusion patients and 8.1 GBq (5.26-16.25 GBq) for single administrations; 177 Lu-DOTATATE was 7.2 GBq (2.5-7.5 GBq); and 131 I-NaI was 3 GBq for thyroid remnant ablation and 5.5 GBq for cancer therapy. The median number of comforters and carers for all administrations was 2 (range 1-9). The median exposure values for comforters and carers for high-administered activity 131 I-mIBG administrations was 302 µSv (0-5282 µSv); for single fraction 131 I-mIBG 163 µSv (3-3104 µSv); 177 Lu-DOTATATE 6 µSv (1-79 µSv); and 131 I-NaI 37 µSv (0-274 µSv). Only one of the comforters and carers exceeded the dose constraint of 5 mSv.
Conclusions:
Doses to comforters and carers were in all but one case within the dose constraint nationally recommended by the Health Protection Agency, now part of Public Health England. New evidence is presented which show that comforter and carer radiation exposure levels from paediatric molecular radiotherapy in routine clinical practice are acceptably low. Pediatr Blood Cancer 2015;62:235-239. © 2014 Wiley Periodicals, Inc.
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