Impact of kV-CBCT protocol selection on organ dose in head-and-neck IGRT: an OSLD phantom study

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ID: 321737
2026
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Abstract
While essential for precision in image-guided radiation therapy (IGRT), kilovoltage (kV) cone beam computed tomography (CBCT) contributes a cumulative radiation dose to organs at risk. This study quantifies absorbed organ doses in head-and-neck IGRT, emphasizing the benefit of optimized anatomy-specific protocols. Using OSLDs in an anthropomorphic phantom, we measured doses for two dedicated head-and-neck protocols (Standard S10/CBCT2 and Low-dose S20/CBCT3). Additionally, a non-optimized chest protocol (CBCT1) was evaluated to quantify the dosimetric penalty of potential protocol misapplication. The misapplied chest protocol resulted in severe overexposure (spinal cord dose $\approx $ 81 mGy per scan). In contrast, the optimized head-and-neck protocols maintained organ doses below 20 mGy per scan. Comparing the optimized protocols, the Standard S10 provided a balanced dose profile, while the Low-dose S20 reduced exposure but showed higher variability near bone interfaces. Results show that strict adherence to anatomy-specific protocols is a critical radiation protection imperative to avoid unnecessary exposure.
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Authors Yassine Aguezzoumen, A. Elanique, M.R. Mesradi, Mustapha Krim, Oussama Elmouden, Abdellah Hadaoui, Taoufik Kessab, Asmae Saadi, Oualid Warimezgane, Abdelali Oudbib, Fatima Safini, Bouchra Amaoui
Journal Radiation protection dosimetry
Year 2026
DOI
10.1093/rpd/ncag077
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