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This paper explores the adaptation and application of i-TED Compton imagers for real-time dosimetry in Boron Neutron Capture Therapy (BNCT). The i-TED array, previously utilized in nuclear astrophysics experiments at CERN, is being…

The accurate imaging and quantitative measurement of 478-keV prompt gamma rays are critical for advancing boron neutron capture therapy (BNCT), a promising cancer treatment. Although numerical simulations have indicated that such…

Instrumentation and Detectors · Physics 2025-09-03 Tetsuya Mizumoto , Shotaro Komura , Atsushi Takada , Yoshinori Sakurai , Toru Tanimori

Boron Neutron Capture Therapy (BNCT) is an innovative binary form of radiation therapy with high selectivity towards cancer tissue based on the neutron capture reaction 10B(n,$\alpha$)7Li, consisting in the exposition of patients to neutron…

In this work, we report on the advantageous aspects of the i-TED Compton imager for proton-range monitoring, based on the results of the first Monte Carlo study of its applicability to this field. i-TED is an array of Compton cameras, that…

Selective accumulation of B-10 compound in tumour tissue is a fundamental condition for the achievement of BNCT (Boron Neutron Capture Therapy), since the effectiveness of therapy irradiation derives just from neutron capture reaction of…

Medical Physics · Physics 2007-12-05 M. Cortesi

i-TED consists of both a total energy detector and a Compton camera primarily intended for the measurement of neutron capture cross sections by means of the simultaneous combination of neutron time-of-flight (TOF) and $\gamma$-ray imaging…

Instrumentation and Detectors · Physics 2020-02-24 V. Babiano , J. Balibrea , L. Caballero , D. Calvo , I. Ladarescu , J. Lerendegui , S. Mira Prats , C. Domingo-Pardo

Boron Neutron Capture Therapy (BNCT) is a form of radiotherapy based on the irradiation of the tumour with a low energy neutron beam, after the administration of a selective drug enriched in boron-10. The therapy exploits the high cross…

Boron Neutron Capture Therapy (BNCT) is a neutron radiotherapy used to treat tumours cells previously doping with Boron-10. This therapy requires an epithermal neutron beam for the treatment of deep tumours and a thermal beam for shallow…

Instrumentation and Detectors · Physics 2021-06-02 M. Macías , B. Fernández , J. Praena

We propose a series of simulations about the potential use of Boron isotopes to trigger neutron-free (aneutronic) nuclear reactions in cancer cells through the interaction with an incoming energetic proton beam, thus resulting in the…

Medical Physics · Physics 2016-08-25 L. Giuffrida , D. Margarone , G. A. P. Cirrone , A. Picciotto , G. Korn

i-TED is an innovative detection system which exploits Compton imaging techniques to achieve a superior signal-to-background ratio in ($n,\gamma$) cross-section measurements using time-of-flight technique. This work presents the first…

Instrumentation and Detectors · Physics 2024-10-17 V. Babiano-Suárez , J. Lerendegui-Marco , J. Balibrea-Correa , L. Caballero , D. Calvo , I. Ladarescu , C. Domingo-Pardo , F. Calviño , A. Casanovas , A. Tarifeño-Saldivia , V. Alcayne , C. Guerrero , M. A. Millán-Callado , M. T. Rodríguez González , M. Barbagallo , O. Aberle , S. Amaducci , J. Andrzejewski , L. Audouin , M. Bacak , S. Bennett , E. Berthoumieux , J. Billowes , D. Bosnar , A. Brown , M. Busso , M. Caamaño , M. Calviani , D. Cano-Ott , F. Cerutti , E. Chiaveri , N. Colonna , G. Cortés , M. A. Cortés-Giraldo , L. Cosentino , S. Cristallo , L. A. Damone , P. J. Davies , M. Diakaki , M. Dietz , R. Dressler , Q. Ducasse , E. Dupont , I. Durán , Z. Eleme , B. Fern\' , ez-Domínguez , A. Ferrari , P. Finocchiaro , V. Furman , K. Göbel , R. Garg , A. Gawlik , S. Gilardoni , I. F. Gonçalves , E. González-Romero , F. Gunsing , H. Harada , S. Heinitz , J. Heyse , D. G. Jenkins , A. Junghans , F. Käppeler , Y. Kadi , A. Kimura , I. Knapova , M. Kokkoris , Y. Kopatch , M. Krtička , D. Kurtulgil , C. Lederer-Woods , H. Leeb , S. J. Lonsdale , D. Macina , A. Manna , T. Martinez , A. Masi , C. Massimi , P. Mastinu , M. Mastromarco , E. A. Maugeri , A. Mazzone , E. Mendoza , A. Mengoni , V. Michalopoulou , P. M. Milazzo , F. Mingrone , J. Moreno-Soto , A. Musumarra , A. Negret , F. Ogállar , A. Oprea , N. Patronis , A. Pavlik , J. Perkowski , L. Persanti , C. Petrone , E. Pirovano , I. Porras , J. Praena , J. M. Quesada , D. Ramos-Doval , T. Rauscher , R. Reifarth , D. Rochman , C. Rubbia , M. Sabaté-Gilarte , A. Saxena , P. Schillebeeckx , D. Schumann , A. Sekhar , A. G. Smith , N. V. Sosnin , P. Sprung , A. Stamatopoulos , G. Tagliente , J. L. Tain , L. Tassan-Got , Th. Thomas , P. Torres-Sánchez , A. Tsinganis , J. Ulrich , S. Urlass , S. Valenta , G. Vannini , V. Variale , P. Vaz , A. Ventura , D. Vescovi , V. Vlachoudis , R. Vlastou , A. Wallner , P. J. Woods , T. Wright , P. Žugec

This work presents a preliminary evaluation of the use of the convolutional neural network nnU-NET to automatically contour the volume of Glioblastoma Multiforme in medical images of patients. The goal is to assist the preparation of the…

Background and purpose: Accelerator-Based Boron Neutron Capture Therapy is a radiotherapy based on compact accelerator neutron sources requiring an epithermal neutron field for tumour irradiations. Neutrons of 10 keV are considered as the…

Medical Physics · Physics 2021-02-05 Marine Hervé , Nadine Sauzet , Daniel Santos

Enhanced-accuracy ion-range verification in real time shall enable a significant step forward in the use of therapeutic ion beams. Positron-emission tomography (PET) and prompt-gamma imaging (PGI) are two of the most promising and…

Intensity-modulated proton therapy (IMPT) employs proton radiation rather than conventional X-rays to treat cancerous tumors. This approach offers significant advantages by minimizing the radiation exposure of surrounding healthy tissue,…

Tomographic imaging with radionuclides commonly used in nuclear medicine, such as $^{111}$In (171 and 245 keV) and $^{131}$I (364 keV), is in high demand for medical applications and small animal imaging. The Si/CdTe Compton camera with its…

Beam monitoring and evaluation are very important to boron neutron capture therapy (BNCT), and a variety of detectors have been developed for these applications. However, most of the detectors used in BNCT only have a small detection area,…

Instrumentation and Detectors · Physics 2023-06-14 Zhujun Fang , Zhiyong Zhang , Bin Shi , Wei Jiang , Xianke Liu , Siqi He , Jun Chen , Ping Cao , Jianbei Liu , Yi Zhou , Ming Shao , Botian Qu , Shufeng Zhang , Qian Wang

We present the current status of our project of developing a photon counting detector for medical imaging. An example motivation lays in producing a monitoring and dosimetry device for boron neutron capture therapy, currently not…

Neutron capture cross-section measurements are fundamental in the study of astrophysical phenomena, such as the slow neutron capture (s-) process of nucleosynthesis operating in red-giant and massive stars. However, neutron capture…

We report on an hybrid in-beam PET and prompt-gamma Compton imaging system aimed at quasi real-time ion-range verification in proton-therapy treatments. Proof-of-concept experiments were carried out at the radiobiology beam line of the CNA…

Boron Neutron Capture Therapy (BNCT), is an advanced cancer therapy that destroys the cancer tumors using the well-known Li(p,n)Be . Because of the highly selectively reaction between a boron and a neutron, BNCT is effective for rapidly…

Accelerator Physics · Physics 2016-09-21 Zhu Xiaowen , Lu Yuanrong , Zhu Kun
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