Evaluation of resistive-plate-chamber-based TOF-PET applied to in-beam particle therapy monitoring
Creators
- 1. Instituto de Física Corpuscular—IFIC (UV/CSIC), E-46071 Valencia (Spain)
- 2. Department of Electronics and Information Systems, MEDISIP, Ghent-University, iMinds Medical IT-IBiTech, B-9000 Ghent (Belgium)
- 3. Helmholtz-Zentrum Dresden-Rossendorf, D-01328 Dresden (Germany)
- 4. TERA Foundation, I-28100 Novara (Italy)
Description
Particle therapy is a highly conformal radiotherapy technique which reduces the dose deposited to the surrounding normal tissues. In order to fully exploit its advantages, treatment monitoring is necessary to minimize uncertainties related to the dose delivery. Up to now, the only clinically feasible technique for the monitoring of therapeutic irradiation with particle beams is Positron Emission Tomography (PET). In this work we have compared a Resistive Plate Chamber (RPC)-based PET scanner with a scintillation-crystal-based PET scanner for this application. In general, the main advantages of the RPC-PET system are its excellent timing resolution, low cost, and the possibility of building large area systems. We simulated a partial-ring scanner based on an RPC prototype under construction within the Fondazione per Adroterapia Oncologica (TERA). For comparison with the crystal-based PET scanner we have chosen the geometry of a commercially available PET scanner, the Philips Gemini TF. The coincidence time resolution used in the simulations takes into account the current achievable values as well as expected improvements of both technologies. Several scenarios (including patient data) have been simulated to evaluate the performance of different scanners. Initial results have shown that the low sensitivity of the RPC hampers its application to hadron-beam monitoring, which has an intrinsically low positron yield compared to diagnostic PET. In addition, for in-beam PET there is a further data loss due to the partial ring configuration. In order to improve the performance of the RPC-based scanner, an improved version of the RPC detector (modifying the thickness of the gas and glass layers), providing a larger sensitivity, has been simulated and compared with an axially extended version of the crystal-based device. The improved version of the RPC shows better performance than the prototype, but the extended version of the crystal-based PET outperforms all other options. (note)
Availability note (English)
Available from http://dx.doi.org/10.1088/0031-9155/60/9/N187Additional details
Identifiers
Publishing Information
- Journal Title
- Physics in Medicine and Biology
- Journal Volume
- 60
- Journal Issue
- 9
- Journal Page Range
- p. N187-N208
- ISSN
- 0031-9155
- CODEN
- PHMBA7
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 47084546
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Descriptors DEI
- BEAM MONITORING; PARTICLE BEAMS; POSITRON COMPUTED TOMOGRAPHY; RADIATION DOSES; RADIOTHERAPY; TIME RESOLUTION
- Descriptors DEC
- BEAMS; COMPUTERIZED TOMOGRAPHY; DIAGNOSTIC TECHNIQUES; DOSES; EMISSION COMPUTED TOMOGRAPHY; MEDICINE; MONITORING; NUCLEAR MEDICINE; RADIOLOGY; RESOLUTION; THERAPY; TIMING PROPERTIES; TOMOGRAPHY