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Establishing Diagnostic Reference Levels for Paediatric CT Imaging: A Multi-Centre Study
Yassine Bouchareb1, Manar Al Kharusi2, Amani Al Maqbali2
1Department of Radiology and Molecular Imaging, College of Medicine and Health Sciences, Sultan Qaboos University, Muscat 123, Oman.
Insights
This study established diagnostic reference levels (DRLs) for paediatric CT scans, revealing that radiation doses increase with patient age. The findings emphasize optimizing protocols for paediatric computed tomography (CT) examinations to ensure safety.
Area of Science:
- Medical Imaging
- Radiology
- Radiation Protection
Background:
- Computed Tomography (CT) is vital for organ assessment but raises radiation exposure concerns in children.
- Establishing pediatric diagnostic reference levels (DRLs) is crucial for monitoring and controlling radiation doses.
Purpose of the Study:
- To establish DRLs for common pediatric CT examinations.
- To aid in monitoring and controlling radiation exposure in pediatric patients.
Main Methods:
- Analyzed dosimetry records from 5956 pediatric CT scans (Head, Chest, Abdomen Pelvis, Chest Abdomen Pelvis).
- Collected CT dose-index volume (CTDIvol) and dose-length product (DLP) data, stratified by age and weight.
- Determined DRLs based on International Commission on Radiological Protection (ICRP) recommendations.
Main Results:
- Derived DRLs for CTDIvol and DLP across different age groups (<1, 1-5, 6-10, 11-15 years).
- Observed a trend of increasing CTDIvol and DLP DRLs with patient age.
- Noted variations in DLP DRLs for Chest and Abdomen Pelvis examinations based on weight.
Conclusions:
- Findings indicate a need to review and optimize CT scanning protocols, especially for Chest and Abdomen Pelvis exams.
- The established DRLs align with international findings.
- Recommends establishing national pediatric DRLs to improve radiology practices and safety standards.
Abstract:
Background: Computed Tomography (CT) imaging is widely recognised for its high capability in assessing multiple organs. However, concerns about patient radiation exposure, particularly in children, pose significant challenges. Objective: This study aimed to establish diagnostic reference levels (DRLs) for paediatric patients in the most common CT examinations to monitor and better control radiation doses. Methods: Dosimetry records from 5956 patients' scans for the four most common CT imaging examinations-Head, Chest, Abdomen Pelvis (AP), and Chest Abdomen Pelvis (CAP)-were considered. The CT dosimetric quantities (CT dose-index volume (CTDIvol) and dose-length product (DLP)), along with patient demographics (age and weight), were collected from radiology data storage systems. DRLs for CTDIvol and DLP were determined for each imaging examination, stratified by patient age and weight groups, in accordance with ICRP recommendations. Results: The derived DRLs are presented as [median CTDIvol (mGy): median DLP (mGy·cm)]. For (<1 yr): Head: 13:187, Chest: 0.4:7, AP: 0.9:19, CAP: 0.4:10. For (1-5 yrs): Head: 16:276, Chest: 1:22, AP: 1.5:58, CAP: 1.6:63. For (6-10 yrs): Head: 19:332, Chest: 1.4:35, AP: 1.9:74, CAP: 2:121. For (11-15 yrs): Head: 21:391, Chest: 3:86, AP: 4.1:191, CAP: 3:165. We observed that both the CTDIvol and DLP DRL values increase with patient age. Weight-based DRLs follow similar trends for CTDIvol, while DLP values show noticeable variations in Chest and AP examinations. Conclusions: The study findings highlight the need for review and optimisation of certain scanning protocols, particularly for chest and AP examinations. The derived DRLs are consistent with findings from other studies. The study recommends establishing national paediatric DRLs to enhance radiology practice across the country and ensure adherence to international safety standards.
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