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Abstract
The superconducting ion gantry (SIG) project aims to develop a reliable in vivo range verification system (RVS) for integration into a multi-ion gantry. The project includes researching, designing, and testing the system’s fundamental components. Based on RVS element performance, the ultimate goal is to design a full system that meets clinical requirements. Therefore, in this study, we present the performance evaluation of a small in-beam positron emission tomography (PET) prototype for carbon ion irradiations. The experimental setup consists of six-PET modules arranged in hexagonal geometry (3 versus 3 partial ring configuration), with a radius of 98 mm. Each detector block features 16×16 pixels, 3.2 mm pitch of segmented lutetium fine silicate (LFS) scintillator crystals, coupled one-to-one to silicon photomultiplier (SiPM) matrices. Homogeneous phantoms were irradiated with two monoenergetic beams at different energies at CNAO (Italian National Center of Oncological Hadron Therapy). Data were acquired online during the irradiation. For this study, images are reconstructed from the irradiation in the pauses between beam spills (interspill). The performance analysis was focused on evaluating the stability of range difference estimation considering different subsets of coincidence events along the beam irradiation.
| Originalsprache | Englisch |
|---|---|
| Zeitschrift | IEEE Transactions on Radiation and Plasma Medical Sciences |
| Jahrgang | 10 |
| Ausgabenummer | 1 |
| Seiten (von - bis) | 137-143 |
| Seitenumfang | 7 |
| ISSN | 2469-7311 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 01.2026 |
Fördermittel
Received 15 January 2025; revised 18 April 2025; accepted 2 May 2025. Date of publication 19 May 2025; date of current version 1 January 2026. This work was supported in part by the INFN through SIG_PNR Project under Grant CUP: I55F21003740001, and in part by INFN CSNV. (Corresponding author: S. Ranjbar.) This work did not involve human subjects or animals in its research.
| Träger | Trägernummer |
|---|---|
| Instituto Nazionale di Fisica Nucleare | CUP: I55F21003740001 |
UN SDGs
Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung
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SDG 3 – Gesundheit und Wohlergehen
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SDG 9 – Industrie, Innovation und Infrastruktur
Strategische Forschungsbereiche und Zentren
- Forschungsschwerpunkt: Biomedizintechnik
- Zentren: Center of Imaging Sciences (CIS)
DFG-Fachsystematik
- 2.22-32 Medizinische Physik, Biomedizinische Technik
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Schätzung des Bremsvermögen in Ionentherapie (PROSIT)
Rafecas, M. (Projektleiter*in (PI)), Ferrero, V. (Projektleiter*in (PI)), Hueso-González, F. (Projektleiter*in (PI)) & Pennazio, F. (Projektleiter*in (PI))
01.01.23 → 31.12.28
Projekt: DFG Einzelprojekte › DFG Einzelförderungen (Sachbeihilfen)
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