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Out-of-field doses in pediatric craniospinal irradiations with 3D-CRT, VMAT and scanning proton radiotherapy - a phantom study (CROSBI ID 303947)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

(EURADOS WG9) Majer, Marija ; Ambrožova, Iva ; Davitkova, Marie ; De Saint-Hubert, Marijke ; Kasabašić, Mladen ; Knežević, Željka ; Kopec, Renata ; Krzempek, Dawid ; Krzempek, Katarzyna ; Miljanić, Saveta et al. Out-of-field doses in pediatric craniospinal irradiations with 3D-CRT, VMAT and scanning proton radiotherapy - a phantom study // Medical physics, 49 (2022), 4; 2672-2683. doi: 10.1002/mp.15493

Podaci o odgovornosti

Majer, Marija ; Ambrožova, Iva ; Davitkova, Marie ; De Saint-Hubert, Marijke ; Kasabašić, Mladen ; Knežević, Željka ; Kopec, Renata ; Krzempek, Dawid ; Krzempek, Katarzyna ; Miljanić, Saveta ; Mojzeszek, Natalia ; Veršić, Ivan ; Stolarczyk, Liliana ; Harrison, Roger M ; Olko, Pawel

EURADOS WG9

engleski

Out-of-field doses in pediatric craniospinal irradiations with 3D-CRT, VMAT and scanning proton radiotherapy - a phantom study

Purpose: Craniospinal irradiation (CSI) has greatly increased survival rates for patients with a diagnosis of medulloblastoma and other primitive neuroectodermal tumors. However, as it includes exposure of a large volume of healthy tissue to unwanted doses, there is a strong concern about the complications of the treatment, especially for the children. To estimate the risk of second cancers and other unwanted effects, out-of-field dose assessment is necessary. The purpose of this study is to evaluate and compare out-of-field doses in pediatric CSI treatment using conventional and advanced photon radiotherapy (RT) and advanced proton therapy. To our knowledge, it is the first such comparison based on in-phantom measurements. Additionally, for out-of-field doses during photon RT in this and other studies, comparisons were made using analytical modeling. Methods: In order to describe the out-of-field doses absorbed in a pediatric patient during actual clinical treatment, an anthropomorphic phantom which mimics the 10-year-old child was used. Photon 3D-conformal radiotherapy (3D-CRT) and two advanced, highly conformal techniques: photon volumetric modulated arc therapy (VMAT) and active pencil beam scanning (PBS) proton radiotherapy were used for CSI treatment. Radiophotoluminescent (RPL) and poly-allyl-diglycol-carbonate (PADC) nuclear track detectors were used for photon and neutron dosimetry in the phantom, respectively. Out-of-field doses from neutrons were expressed in terms of dose equivalent. A two-Gaussian model was implemented for out-of-field doses during photon RT. Results: The mean VMAT photon doses per target dose to all organs in this study were under 50% of the target dose (i.e., < 500 mGy/Gy), while the mean 3D-CRT photon dose to oesophagus, gall bladder and thyroid, exceeded that value. However, for 3D-CRT, better sparing was achieved for eyes and lungs. The mean PBS photon doses for all organs were up to 3 orders of magnitude lower compared to VMAT and 3D-CRT and exceeded 10 mGy/Gy only for the oesophagus, intestine and lungs. The mean neutron dose equivalent during PBS for 8 organs of interest (thyroid, breasts, lungs, liver, stomach, gall bladder, bladder, prostate) ranged from 1.2 mSv/Gy for bladder to 23.1 mSv/Gy for breasts. Comparison of out-of-field doses in this and other phantom studies found in the literature showed that a simple and fast two-Gaussian model for out-of-field doses as a function of distance from the field edge can be applied in a CSI using photon RT techniques. Conclusions: PBS is the most promising technique for out-of-field dose reduction in comparison to photon techniques. Among photon techniques, VMAT is a preferred choice for most of out-of-field organs and especially for the thyroid, while doses for eyes, breasts and lungs, are lower for 3D-CRT. For organs outside the field edge, a simple analytical model can be helpful for clinicians involved in treatment planning using photon RT but also for retrospective data analysis for cancer risk estimates and epidemiology in general.

out-of-field dose ; scanning proton therapy ; VMAT ; 3D-CRT ; craniospinal irradiation ; anthropomorphic phantom

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Podaci o izdanju

49 (4)

2022.

2672-2683

objavljeno

0094-2405

2473-4209

10.1002/mp.15493

Povezanost rada

Fizika, Interdisciplinarne prirodne znanosti

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