Acoustic Localization of Bragg Peak Proton Beams for Hadrontherapy Monitoring.

Jorge Otero, Ivan Felis, Miguel Ardid, Alicia Herrero

Journal: Sensors (Basel, Switzerland) 2019;19(9):1971

PMID: 31035504

Abstract

Hadrontherapy makes it possible to deliver high doses of energy to cancerous tumors by using the large energy deposition in the Bragg-peak. However, uncertainties in the patient positioning and/or in the anatomical parameters can cause distortions in the calculation of the dose distribution. In order to maximize the effectiveness of heavy particle treatments, an accurate monitoring system of the deposited dose depending on the energy, beam time, and spot size is necessary. The localized deposition of this energy leads to the generation of a thermoacoustic pulse that can be detected using acoustic technologies. This article presents different experimental and simulation studies of the acoustic localization of thermoacoustic pulses captured with a set of sensors around the sample. In addition, numerical simulations have been done where thermo-acoustic pulses are emitted for the specific case of a proton beam of 100 MeV.

Address: Institut d'Investigació per a la Gestió Integrada de les Zones Costaneres (IGIC), Universitat Politècnica de València (UPV), Gandia, 46730 València, Spain. [email protected].; Centro Tecnológico Naval y del Mar (CTN), Fuente Álamo, 30320 Murcia, Spain. [email protected].; Institut d'Investigació per a la Gestió Integrada de les Zones Costaneres (IGIC), Universitat Politècnica de València (UPV), Gandia, 46730 València, Spain. [email protected].; Institut de Matemàtica Multidisciplinar, Universitat Politècnica de València (UPV), 46022 València, Spain. [email protected].
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