Papers

 


G. Cirrone et al, "hadrontherapy: a geant4-based tool for proton/ion-therapy studies”, progress in nuclear science and technology, vol. 2, pp.207-212 (2011) link: http://www.aesj.or.jp/publication/pnst002/data/207-212.pdf

 

G. Cirrone et al, “the geant4 toolkit capability in the hadron therapy field: simulation of transport beam line”, nucl. Phys. B link: http://www.bo.infn.it/sm/sm04/paper/cirrone.pdf

 

 G. Cirrone et al, “implementation of a new monte carlo - geant4 simulation tool for the development of a proton therapy beam line”, iee trans. Nucl. Sci. Vol.52, no. 1, pp. 262-265, feb (2005)

 

 F. Romano et al., monte carlo simulation for the transport beamline, aip conf. Proc. 1546 pp. 63-69 (2013)

 

 Tramontana et al.,"the energy selection system for thelaser-accelerated proton beams at eli-beamlines”,journal of instrumentation 9, c05065 (2014)

 

 F. Romano et al,” a monte carlo study for the calculation of the average linear energy transfer (let) distributions for a clinical proton beam line and a radiobiological carbon ion beam line”, pmb (2014) jun 21;59(12):2863-82. Doi: 10.1088/0031-9155/59/12/2863. Epub 2014 may 15.

 

 Marafini M, et al. “the inside project: innovative solutions for in-beam dosimetry in hadrontherapy”, acta physica polonica a, 127-5, (2015)

 

Kraan A, et al.” First tests for an online treatment monitoring system with in-beam pet for proton therapy”, journal of instrumentation, 10-, c01010 (2015)

 

Ortega P,et al.” Noise evaluation of compton camera imaging for proton therapy”, physics in medicine and biology, 60-5, (2015)

 

Kraan A,et al. “online monitoring for proton therapy: a real-time procedure using a planar pet system”, nuclear instruments & methods in physics research section a-accelerators spectrometers detectors and associated equipment, 786-, (2015)

 

Bagli E, et al. “simulation of orientational effects in crystals with structural defects through dynecharm plus”, nuclear instruments & methods in physics research section b-beam interactions with materials and atoms, 355-, (2015)

 

Bagli E, et al.” Channeling efficiency dependence on bending radius and thermal vibration amplitude of the model for the channeling of high-energy particles in straight and bent crystals implemented in geant4”, nuclear instruments & methods in physics research section b-beam interactions with materials and atoms, 355-, (2015)

 

Battistoni G, et al. “overview of the fluka code”, annals of nuclear energy, 82-, (2015)

 

Pennazio F, et al.” A study of monitoring performances with the inside system”,acta physica polonica a, 127-5, (2015)

 

Pandola l, et al.” Validation of the geant4 simulation of bremsstrahlung from thick targets below 3 mev” nuclear instruments & methods in physics research section b-beam interactions with materials and atoms, 350-, (2015)

 

Piersimoni P, et al “optimization of a general-purpose, actively scanned proton beamline for ocular treatments: geant4 simulations”journal of applied clinical medical physics, 16-2, (2015)

 

 Belli G, et al.” Multigap rpc time resolution to 511 kev annihilation photons”,nuclear instruments & methods in physics research section a-accelerators spectrometers detectors and associated equipment, 781-, (2015)

 

 Bellinzona ve, et al. “on the parametrization of lateral dose profiles in proton radiation therapy”, physica medica-european journal of medical physics, 31-5, (2015)

 

Cirrone G, et al. “design and status of the elimed beam line for laser-driven ion beams”, applied sciences-basel, 5-3, (2015)

 

Cirrone G, et al.” Transport and dosimetric solutions for the elimed laser-driven beam line” nuclear instruments & methods in physics research section a-0accelerators spectrometers detectors and associated equipment, 796-, (2015)

 

Tramontana a. “a transport beamline solution for laser-accelerated proton beams at eli-beamlines”, nuovo cimento c-colloquia and communications in physics, 38-2, 77 (2015)

 

Apostolakis J, et al. “progress in geant4 electromagnetic physics modelling and validation”, 21st international conference on computing in high energy and nuclear physics (chep2015), parts 1-9, 664-, 072021 (2015)

 

 Chin M, et al. “fluka and penelope simulations of 10 kev to 10 mev photons in lyso and soft tissue”, radiation physics and chemistry, 95-, (2014)

 

Tropea S,et al . “measurement of fragment production cross sections in the c-12+c-12 and c-12+au-197 reactions at 62 a mev for hadrontherapy and space radiation protection”, acta physica polonica b, 45-2, (2014)

 

 De Napoli M, at al.” Fragmentation cross sections at intermediate energies for hadrontherapy and space radiation protection”, inpc 2013 - international nuclear physics conference, vol. 2, 66-, 10004 (2014)

 

Rescigno R, et al.” Performance of the reconstruction algorithms of the first experiment pixel sensors vertex detector”, nuclear instruments & methods in physics research section a-accelerators spectrometers detectors and associated equipment, 767-, (2014)

 

Chin M, et al. “monte carlo latching studies of prompt-gamma detection during hadrontherapy”, ieee transactions on nuclear science, 61-5, (2014)

 

Kraan A, et al. “proton range monitoring with in-beam pet: monte carlo activity predictions and comparison with cyclotron data”, physica medica-european journal of medical physics, 30-5, (2014)

 

Bohlen T, et al. “the fluka code: developments and challenges for high energy and medical applications”, nuclear data sheets, 120-, (2014)

 

Bellini F, et al. “extended calibration range for prompt photon emission in ion beam irradiation”, nuclear instruments & methods in physics research section a-accelerators spectrometers detectors and associated equipment, 745-, (2014)

 

 Braun H, et al.” Hadronic and electromagnetic fragmentation of ultrarelativistic heavy ions at lhc”, physical review special topics-accelerators and beams, 17-2, 021006 (2014)

 

De Napoli M., et al. “carbon fragmentation cross sections for hadrontherapy and space radiation protection”, nuclear data sheets, 119-, (2014)

 

Ivanchenko V. N., et al. “geant4 electromagnetic physics for lhc upgrade”, 20th international conference on computing in high energy and nuclear physics (chep2013), parts 1-6, 513-, 022015 (2014)

Camarlinghi N, et al.” An in-beam pet system for monitoring ion-beam therapy: test on phantoms using clinical 62 mev protons”, journal of instrumentation, 9-, c04005 (2014)

 

Caccia B, et al.” Monte carlo as a tool to evaluate the effect of different lung densities on radiotherapy dose distribution”, radiation protection dosimetry, 162-1-2, (2014)

 

Romano F, et al. “a monte carlo study for the calculation of the average linear energy transfer (let) distributions for a clinical proton beam line and a radiobiological carbon ion beam line”, physics in medicine and biology, 59-12, (2014)

 

 Chaudhary P, et al.” Relative biological effectiveness variation along monoenergetic and modulated bragg peaks of a 62-mev therapeutic proton beam: a preclinical assessment”, international journal of radiation oncology biology physics, 90-1, (2014)

 

 Accardo l, et al.” High statistics measurement of the positron fraction in primary cosmic rays of 0.5-500 gev with the alpha magnetic spectrometer on the international space station”, physical review letters, 113-12, 121101 (2014)

 

Tramontana A, et al. “medical research and multidisciplinary applications with laser-accelerated beams: the elimed netwotk at eli-beamlines”, journal of instrumentation, 9-, c04026 (2014)

 

Tramontana A, et al. “the energy selection system for the laser-accelerated proton beams at eli-beamlines”, journal of instrumentation, 9-, c05065 (2014)

 

Lo Presti D, et al. “a real-time, large area, high space resolution particle radiography system”, journal of instrumentation, 9-, c06012 (2014)

 

Robert C, et al.” Distributions of secondary particles in proton and carbon-ion therapy: a comparison between gate/geant4 and fluka monte carlo codes”, physics in medicine and biology, 58-9, (2013)

 

Rosso V, et al. “a new pet prototype for proton therapy: comparison of data and monte carlo simulations”, journal of instrumentation, 8-, c03021 (2013)

 

Battistoni G, et al.” Hadron production simulation by fluka”, xiii international workshop on neutrino factories, super beams and beta beams (nufact11), 408-, 012051 (2013)

 

De Napoli M., et al. “nuclear fragmentation measurements for hadrontherapy and space radiation protection”, application of accelerators in research and industry, 1525-, (2013)

 

Alpat Behcet, et al. “total and partial fragmentation cross-section of 500 mev/nucleon carbon ions on different target materials”, ieee transactions on nuclear science, 60-6, (2013)

 

Mairani A, et al. “a monte carlo-based treatment planning tool for proton therapy”, physics in medicine and biology, 58-8, (2013)

 

Romano F., et al. “monte carlo simulation for the transport beamline”, 2nd elimed workshop and panel, 1546-, (2013)

 

Abou-haidar Z, et al. “performance of upstream interaction region detectors for the first experiment at gsi”, journal of instrumentation, 7-, p02006 (2012)

 

Alpat B, et al. “full geant4 and fluka simulations of an e-linac for its use in particle detectors performance tests”, journal of instrumentation, 7-, p03013 (2012)

 

 Allison J, et al. “geant4 electromagnetic physics for high statistic simulation of lhc experiments”, international conference on computing in high energy and nuclear physics 2012 (chep2012), pts 1-6, 396-, 022013 (2012)

 

Bohlen T, et al. “describing compton scattering and two-quanta positron annihilation based on compton profiles: two models suited for the monte carlo method”, journal of instrumentation, 7-, p07018 (2012)

 

Pleskac R, et al. “the first experiment at gsi”, nuclear instruments & methods in physics research section a-accelerators spectrometers detectors and associated equipment, 678-, (2012)

 

De Napoli I, et al. “carbon fragmentation measurements and validation of the geant4 nuclear reaction models for hadrontherapy”, physics in medicine and biology, 57-22, (2012)

 

Mettivier G, et al. “scatter correction in cone-beam breast computed tomography: simulations and experiments”, ieee transactions on nuclear science, 59-5, (2012)

 

 Rinaldi I, et al. “an integral test of fluka nuclear models with 160 mev proton beams in multi-layer faraday cups”, phys med biol, 56-13, (2011)

 

Battistoni G, et al. “applications of fluka monte carlo code for nuclear and accelerator physics”, nucl instrum meth b, 269-24, (2011)

 

Botta F, et al .” Calculation of electron and isotopes dose point kernels with fluka monte carlo code for dosimetry in nuclear medicine therapy”,med phys, 38-7, (2011)

 

Anelli M, et al . “first experiment upstream detectors performance on gsi 400 mev/u c-12 beam”, ieee nucl sci conf r, -, (2011)

 

Battistoni G, et al . “fluka as a new high energy cosmic ray generator”, nucl instrum meth a, 626-, (2011)

 

Ozdemir T, et al.” A combined approach to the simulation of ionizing radiation effects in silicon devices”,j instrum, 6-, t05001 (2011)

 

Cuttone G., et al. “catana protontherapy facility: the state of art of clinical and dosimetric experience”, eur phys j plus, 126-7, 65 (2011)

 

Boswell M, et al. “mage-a geant4-based monte carlo application framework for low-background germanium experiments”,ieee t nucl sci, 58-3, (2011)

 

Cirrone G, et al. “monte carlo evaluation of the filtered back projection method for image reconstruction in proton computed tomography”, nucl instrum meth a, 658-1, (2011)

 

Mantero A, et al. “pixe simulation in geant4”, x-ray spectrom, 40-3, (2011)

 

Sipala V, et al. “prima: an apparatus for medical application”,nucl instrum meth a, 658-1, (2011)

 

Petasecca M., et al. “wide dynamic range acquisition system for innovative radiation detectors”, nucl instrum meth a, 617-1-3, (2010)

 

Statera M, et al. “a superconducting magnets system for a low beta section at cosy and ad”, ieee trans appl superconduct, 18-2, (2008)

 

Pozega I, et al. “apoptotic ability of carbon ions on a resistant melanoma cell line”, febs j, 275-, (2008)

 

Koricanac L, et al. “cell cycle distribution and induction apoptosis after joint treatment with fotemustine and protons”,febs j, 275-, (2008)

 

Bolshakova A, et al. “comparison of geant4 hadron generation with data from the interactions with beryllium nuclei of+8.9 gev/c protons and pions and-8.0 gev/c pions”, eur phys j c, 56-3, (2008)

 

Lechner A, et al. “effect of normalization algorithms on the analysis of bragg peak profiles”,ieee trans nucl sci, 55-6, (2008)

 

Randazzo N, et al. “yap(ce) crystal characterization with proton beam up to 60 mev”,nucl instrum meth phys res a, 586-2, (2008)

 

Guatelli S, et al.” Geant4 atomic relaxation”, ieee trans nucl sci, 54-3, (2007)

 

Chauvie S, et al. “geant4 model for the stopping power of low energy negatively charged hadrons”, ieee trans nucl sci, 54-3, (2007)

 

Chauvie S, et al. “geant4 physics processes for microdosimetry simulation: design foundation and implementation of the first set of models”, ieee trans nucl sci, 54-6, (2007)

 

Czopyk l, et al. “two-dimensional dosimetry of radiotherapeutical proton beams using thermoluminescence foils”, radiat prot dosim, 126-1-4, (2007)

 

 Guatelli S, et al. “validation of geant4 atomic relaxation against the nist physical reference data”, ieee trans nucl sci, 54-3, (2007)

 

 

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