Pretražite po imenu i prezimenu autora, mentora, urednika, prevoditelja

Napredna pretraga

Pregled bibliografske jedinice broj: 1092056

Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator


(EURADOS WG9) Wochnik, Agnieszka; Stolarczyk, Liliana; Ambrozova, Iva; Davidkova, Marie; De Saint- Hubert, Marijke; Domański, Szymon; Domingo, Carles; Knežević, Željka; Kopec, Renata; Kuć, Michał et al.
Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator // Physics in medicine and biology, 66 (2021), 035012, 18 doi:10.1088/1361-6560/abcb1f (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1092056 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator

Autori
Wochnik, Agnieszka ; Stolarczyk, Liliana ; Ambrozova, Iva ; Davidkova, Marie ; De Saint- Hubert, Marijke ; Domański, Szymon ; Domingo, Carles ; Knežević, Željka ; Kopec, Renata ; Kuć, Michał ; Majer Marija ; Mojżeszek, Natalia ; Mares, Vladimir ; Martínez-Rovira, Immaculada ; Caballero-Pacheco, Miguel Ángel ; Pyszka, Ewelina ; Swakon, Jan ; Trinkl, Sebastian ; Tisi, Marco ; Harrison, Roger Michael ; Olko, Pawel

Kolaboracija
EURADOS WG9

Izvornik
Physics in medicine and biology (0031-9155) 66 (2021); 035012, 18

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
canning proton radiotherapy ; measurement of stray neutrons ; ambient dose equivalent ; active detectors ; passive detectors ; anthropomorphic paediatric phantom measurements ; secondary radiation measurements

Sažetak
The lowest possible energy of proton scanning beam in cyclotron proton therapy facilities is typically between 60 and 100 MeV. Treatment of superficial lesions requires a pre-absorber to deliver doses to shallower volumes. In most of the cases a range shifter (RS) is used, but as an alternative solution, a patient-specific 3D printed proton beam compensator (BC) can be applied. A BC enables further reduction of the air gap and consequently reduction of beam scattering. Such pre-absorbers are additional sources of secondary radiation. The aim of this work was the comparison of RS and BC with respect to out-of-field doses for a simulated treatment of superficial paediatric brain tumours. EURADOS WG9 performed comparative measurements of scattered radiation in the Proteus C-235 IBA facility (Cyclotron Centre Bronowice at the Institute of Nuclear Physics, CCB IFJ PAN, Kraków, Poland) using two anthropomorphic phantoms - 5 and 10 years old – for a superficial target in the brain. Both active detectors located inside the therapy room, and passive detectors placed inside the phantoms were used. Measurements were supplemented by Monte Carlo simulation of the radiation transport. For the applied 3D printed pre-absorbers, out-of-field doses from both secondary photons and neutrons were lower than for RS. Measurements with active environmental dosimeters at 5 positions inside the therapy room indicated that the RS/BC ratio of the out- of-field dose was also higher than one, with a maximum of 1.7. Photon dose inside phantoms leads to higher out-of-field doses for RS than BC to almost all organs with the highest RS/BC ratio 12.5 and 13.2 for breasts for 5y and 10y old phantoms, respectively. For organs closest to the isocentre such as the thyroid, neutron doses were lower for BC, but for more distant organs like bladder - for RS. The use of 3D printed BC as the pre-absorber placed in the near vicinity of patient in the treatment of superficial tumours does not result in the increase of secondary radiation compared to the treatment with range shifters RS, placed far from the patient.

Izvorni jezik
Engleski

Znanstvena područja
Fizika, Interdisciplinarne prirodne znanosti, Kliničke medicinske znanosti



POVEZANOST RADA


Ustanove:
Institut "Ruđer Bošković", Zagreb

Profili:

Avatar Url Marija Majer (autor)

Avatar Url Željka Knežević Medija (autor)

Poveznice na cjeloviti tekst rada:

doi iopscience.iop.org fulir.irb.hr

Citiraj ovu publikaciju:

(EURADOS WG9) Wochnik, Agnieszka; Stolarczyk, Liliana; Ambrozova, Iva; Davidkova, Marie; De Saint- Hubert, Marijke; Domański, Szymon; Domingo, Carles; Knežević, Željka; Kopec, Renata; Kuć, Michał et al.
Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator // Physics in medicine and biology, 66 (2021), 035012, 18 doi:10.1088/1361-6560/abcb1f (međunarodna recenzija, članak, znanstveni)
(EURADOS WG9) (EURADOS WG9) Wochnik, A., Stolarczyk, L., Ambrozova, I., Davidkova, M., De Saint- Hubert, M., Domański, S., Domingo, C., Knežević, Ž., Kopec, R. & Kuć, M. (2021) Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator. Physics in medicine and biology, 66, 035012, 18 doi:10.1088/1361-6560/abcb1f.
@article{article, author = {Wochnik, Agnieszka and Stolarczyk, Liliana and Ambrozova, Iva and Davidkova, Marie and De Saint- Hubert, Marijke and Doma\'{n}ski, Szymon and Domingo, Carles and Kne\v{z}evi\'{c}, \v{Z}eljka and Kopec, Renata and Ku\'{c}, Micha\l and Moj\.{z}eszek, Natalia and Mares, Vladimir and Mart\'{\i}nez-Rovira, Immaculada and Caballero-Pacheco, Miguel \'{A}ngel and Pyszka, Ewelina and Swakon, Jan and Trinkl, Sebastian and Tisi, Marco and Harrison, Roger Michael and Olko, Pawel}, year = {2021}, pages = {18}, DOI = {10.1088/1361-6560/abcb1f}, chapter = {035012}, keywords = {canning proton radiotherapy, measurement of stray neutrons, ambient dose equivalent, active detectors, passive detectors, anthropomorphic paediatric phantom measurements, secondary radiation measurements}, journal = {Physics in medicine and biology}, doi = {10.1088/1361-6560/abcb1f}, volume = {66}, issn = {0031-9155}, title = {Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator}, keyword = {canning proton radiotherapy, measurement of stray neutrons, ambient dose equivalent, active detectors, passive detectors, anthropomorphic paediatric phantom measurements, secondary radiation measurements}, chapternumber = {035012} }
@article{article, author = {Wochnik, Agnieszka and Stolarczyk, Liliana and Ambrozova, Iva and Davidkova, Marie and De Saint- Hubert, Marijke and Doma\'{n}ski, Szymon and Domingo, Carles and Kne\v{z}evi\'{c}, \v{Z}eljka and Kopec, Renata and Ku\'{c}, Micha\l and Moj\.{z}eszek, Natalia and Mares, Vladimir and Mart\'{\i}nez-Rovira, Immaculada and Caballero-Pacheco, Miguel \'{A}ngel and Pyszka, Ewelina and Swakon, Jan and Trinkl, Sebastian and Tisi, Marco and Harrison, Roger Michael and Olko, Pawel}, year = {2021}, pages = {18}, DOI = {10.1088/1361-6560/abcb1f}, chapter = {035012}, keywords = {canning proton radiotherapy, measurement of stray neutrons, ambient dose equivalent, active detectors, passive detectors, anthropomorphic paediatric phantom measurements, secondary radiation measurements}, journal = {Physics in medicine and biology}, doi = {10.1088/1361-6560/abcb1f}, volume = {66}, issn = {0031-9155}, title = {Out-of-field doses for scanning proton radiotherapy of shallowly located paediatric tumours – a comparison of range shifter and 3D printed compensator}, keyword = {canning proton radiotherapy, measurement of stray neutrons, ambient dose equivalent, active detectors, passive detectors, anthropomorphic paediatric phantom measurements, secondary radiation measurements}, chapternumber = {035012} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE


Citati:





    Contrast
    Increase Font
    Decrease Font
    Dyslexic Font