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Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy

Microbeam radiation therapy (MRT) is a radiotherapy technique combining spatial fractionation of the dose distribution on a micrometric scale, X-rays in the 50–500 keV range and dose rates up to 16 × 10(3) Gy s(−1). Nowadays, in vivo dosimetry remains a challenge due to the ultra-high radiation flux...

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Autores principales: di Franco, Francesca, Rosuel, Nicolas, Gallin-Martel, Laurent, Gallin-Martel, Marie-Laure, Ghafooryan-Sangchooli, Mostafa, Keshmiri, Sarvenaz, Motte, Jean-François, Muraz, Jean-François, Pellicioli, Paolo, Ruat, Marie, Serduc, Raphael, Verry, Camille, Dauvergne, Denis, Adam, Jean-François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624038/
https://www.ncbi.nlm.nih.gov/pubmed/37815374
http://dx.doi.org/10.1107/S160057752300752X
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author di Franco, Francesca
Rosuel, Nicolas
Gallin-Martel, Laurent
Gallin-Martel, Marie-Laure
Ghafooryan-Sangchooli, Mostafa
Keshmiri, Sarvenaz
Motte, Jean-François
Muraz, Jean-François
Pellicioli, Paolo
Ruat, Marie
Serduc, Raphael
Verry, Camille
Dauvergne, Denis
Adam, Jean-François
author_facet di Franco, Francesca
Rosuel, Nicolas
Gallin-Martel, Laurent
Gallin-Martel, Marie-Laure
Ghafooryan-Sangchooli, Mostafa
Keshmiri, Sarvenaz
Motte, Jean-François
Muraz, Jean-François
Pellicioli, Paolo
Ruat, Marie
Serduc, Raphael
Verry, Camille
Dauvergne, Denis
Adam, Jean-François
author_sort di Franco, Francesca
collection PubMed
description Microbeam radiation therapy (MRT) is a radiotherapy technique combining spatial fractionation of the dose distribution on a micrometric scale, X-rays in the 50–500 keV range and dose rates up to 16 × 10(3) Gy s(−1). Nowadays, in vivo dosimetry remains a challenge due to the ultra-high radiation fluxes involved and the need for high-spatial-resolution detectors. The aim here was to develop a striped diamond portal detector enabling online microbeam monitoring during synchrotron MRT treatments. The detector, a 550 µm bulk monocrystalline diamond, is an eight-strip device, of height 3 mm, width 178 µm and with 60 µm spaced strips, surrounded by a guard ring. An eight-channel ASIC circuit for charge integration and digitization has been designed and tested. Characterization tests were performed at the ID17 biomedical beamline of the European Synchrotron Radiation Facility (ESRF). The detector measured direct and attenuated microbeams as well as interbeam fluxes with a precision level of 1%. Tests on phantoms (RW3 and anthropomorphic head phantoms) were performed and compared with simulations. Synchrotron radiation measurements were performed on an RW3 phantom for strips facing a microbeam and for strips facing an interbeam area. A 2% difference between experiments and simulations was found. In more complex geometries, a preliminary study showed that the absolute differences between simulated and recorded transmitted beams were within 2%. Obtained results showed the feasibility of performing MRT portal monitoring using a microstriped diamond detector. Online dosimetric measurements are currently ongoing during clinical veterinary trials at ESRF, and the next 153-strip detector prototype, covering the entire irradiation field, is being finalized at our institution.
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spelling pubmed-106240382023-11-04 Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy di Franco, Francesca Rosuel, Nicolas Gallin-Martel, Laurent Gallin-Martel, Marie-Laure Ghafooryan-Sangchooli, Mostafa Keshmiri, Sarvenaz Motte, Jean-François Muraz, Jean-François Pellicioli, Paolo Ruat, Marie Serduc, Raphael Verry, Camille Dauvergne, Denis Adam, Jean-François J Synchrotron Radiat Research Papers Microbeam radiation therapy (MRT) is a radiotherapy technique combining spatial fractionation of the dose distribution on a micrometric scale, X-rays in the 50–500 keV range and dose rates up to 16 × 10(3) Gy s(−1). Nowadays, in vivo dosimetry remains a challenge due to the ultra-high radiation fluxes involved and the need for high-spatial-resolution detectors. The aim here was to develop a striped diamond portal detector enabling online microbeam monitoring during synchrotron MRT treatments. The detector, a 550 µm bulk monocrystalline diamond, is an eight-strip device, of height 3 mm, width 178 µm and with 60 µm spaced strips, surrounded by a guard ring. An eight-channel ASIC circuit for charge integration and digitization has been designed and tested. Characterization tests were performed at the ID17 biomedical beamline of the European Synchrotron Radiation Facility (ESRF). The detector measured direct and attenuated microbeams as well as interbeam fluxes with a precision level of 1%. Tests on phantoms (RW3 and anthropomorphic head phantoms) were performed and compared with simulations. Synchrotron radiation measurements were performed on an RW3 phantom for strips facing a microbeam and for strips facing an interbeam area. A 2% difference between experiments and simulations was found. In more complex geometries, a preliminary study showed that the absolute differences between simulated and recorded transmitted beams were within 2%. Obtained results showed the feasibility of performing MRT portal monitoring using a microstriped diamond detector. Online dosimetric measurements are currently ongoing during clinical veterinary trials at ESRF, and the next 153-strip detector prototype, covering the entire irradiation field, is being finalized at our institution. International Union of Crystallography 2023-10-10 /pmc/articles/PMC10624038/ /pubmed/37815374 http://dx.doi.org/10.1107/S160057752300752X Text en © Francesca di Franco et al. 2023 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
di Franco, Francesca
Rosuel, Nicolas
Gallin-Martel, Laurent
Gallin-Martel, Marie-Laure
Ghafooryan-Sangchooli, Mostafa
Keshmiri, Sarvenaz
Motte, Jean-François
Muraz, Jean-François
Pellicioli, Paolo
Ruat, Marie
Serduc, Raphael
Verry, Camille
Dauvergne, Denis
Adam, Jean-François
Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title_full Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title_fullStr Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title_full_unstemmed Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title_short Monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
title_sort monocrystalline diamond detector for online monitoring during synchrotron microbeam radiotherapy
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624038/
https://www.ncbi.nlm.nih.gov/pubmed/37815374
http://dx.doi.org/10.1107/S160057752300752X
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