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CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS

Thanks to their superior dose conformality and higher radiobiological effectiveness with respect to protons, helium ions are considered as the new tool of choice in the fight against cancer using particle beams. A facility to produce helium beams at therapeutical energy can also accelerate protons,...

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Autores principales: Vretenar, Maurizio, Angoletta, Maria Elena, Borburgh, Jan, Bottura, Luca, Taylor, Rebecca, Tranquille, Gerard Alain, Benedetto, Elena, Torims, Toms, Palskis, Kristaps, Sapinski, Mariusz, Adliene, D, Korobeinikova, E, Kalnina, M, Gershkevitsch, E, Radzina, M
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2867872
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author Vretenar, Maurizio
Angoletta, Maria Elena
Borburgh, Jan
Bottura, Luca
Taylor, Rebecca
Tranquille, Gerard Alain
Benedetto, Elena
Torims, Toms
Palskis, Kristaps
Sapinski, Mariusz
Adliene, D
Korobeinikova, E
Kalnina, M
Gershkevitsch, E
Radzina, M
author_facet Vretenar, Maurizio
Angoletta, Maria Elena
Borburgh, Jan
Bottura, Luca
Taylor, Rebecca
Tranquille, Gerard Alain
Benedetto, Elena
Torims, Toms
Palskis, Kristaps
Sapinski, Mariusz
Adliene, D
Korobeinikova, E
Kalnina, M
Gershkevitsch, E
Radzina, M
author_sort Vretenar, Maurizio
collection CERN
description Thanks to their superior dose conformality and higher radiobiological effectiveness with respect to protons, helium ions are considered as the new tool of choice in the fight against cancer using particle beams. A facility to produce helium beams at therapeutical energy can also accelerate protons, at energies permitting both standardised treatment and full body radiography, and heavier ions for treatment of shallow tumours and for research. Equipped with FLASH beam extraction, it will be able to couple the protection to healthy tissues provided by Bragg peak and FLASH effect. This paper presents the basic layout of a facility based on a compact synchrotron of new design that can accommodate a wide research programme with patient treatment, sharing the beam between two treatment rooms and an experimental room. The linac accelerator may be designed to allow a programme for production of new radioisotopes for therapy, diagnostics and theragnostics using helium ions, in parallel with the operation as synchrotron injector. Overall cancer and conventional radiotherapy statistics, along with an estimate on the number of patients that can benefit from this facility is presented for the case of the Baltic States, as a candidate for hosting the facility.
id cern-2867872
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28678722023-08-18T19:52:23Zhttp://cds.cern.ch/record/2867872engVretenar, MaurizioAngoletta, Maria ElenaBorburgh, JanBottura, LucaTaylor, RebeccaTranquille, Gerard AlainBenedetto, ElenaTorims, TomsPalskis, KristapsSapinski, MariuszAdliene, DKorobeinikova, EKalnina, MGershkevitsch, ERadzina, MCONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMSAccelerators and Storage RingsThanks to their superior dose conformality and higher radiobiological effectiveness with respect to protons, helium ions are considered as the new tool of choice in the fight against cancer using particle beams. A facility to produce helium beams at therapeutical energy can also accelerate protons, at energies permitting both standardised treatment and full body radiography, and heavier ions for treatment of shallow tumours and for research. Equipped with FLASH beam extraction, it will be able to couple the protection to healthy tissues provided by Bragg peak and FLASH effect. This paper presents the basic layout of a facility based on a compact synchrotron of new design that can accommodate a wide research programme with patient treatment, sharing the beam between two treatment rooms and an experimental room. The linac accelerator may be designed to allow a programme for production of new radioisotopes for therapy, diagnostics and theragnostics using helium ions, in parallel with the operation as synchrotron injector. Overall cancer and conventional radiotherapy statistics, along with an estimate on the number of patients that can benefit from this facility is presented for the case of the Baltic States, as a candidate for hosting the facility. CERN-ACC-NOTE-2023-0012NIMMS-Note-018oai:cds.cern.ch:28678722023-06-30
spellingShingle Accelerators and Storage Rings
Vretenar, Maurizio
Angoletta, Maria Elena
Borburgh, Jan
Bottura, Luca
Taylor, Rebecca
Tranquille, Gerard Alain
Benedetto, Elena
Torims, Toms
Palskis, Kristaps
Sapinski, Mariusz
Adliene, D
Korobeinikova, E
Kalnina, M
Gershkevitsch, E
Radzina, M
CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title_full CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title_fullStr CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title_full_unstemmed CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title_short CONCEPTUAL DESIGN OF A COMPACT SYNCHROTRON-BASED FACILITY FOR CANCER THERAPY AND BIOMEDICAL RESEARCH WITH HELIUM AND PROTONS BEAMS
title_sort conceptual design of a compact synchrotron-based facility for cancer therapy and biomedical research with helium and protons beams
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2867872
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