Search Results - "Bisogni, M.G"
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Studies of silicon photomultipliers at cryogenic temperatures
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (01-02-2011)“…We investigate the behavior of silicon photomultipliers (SiPMs) at low temperatures: I– V characteristics, breakdown voltage, dark noise, afterpulsing,…”
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Energy, Timing and Position Resolution Studies With 16-Pixel Silicon Photomultiplier Matrices for Small Animal PET
Published in IEEE transactions on nuclear science (01-10-2009)“…A high resolution small animal PET scanner that employs Silicon Photomultiplier (SiPM) matrices as photodetectors is under development at the University of…”
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Energy and Timing Resolution Studies With Silicon Photomultipliers (SiPMs) and 4-Pixel SiPM Matrices for PET
Published in IEEE transactions on nuclear science (01-06-2009)“…A high performance detector head with matrices of silicon photomultipliers (SiPMs) as photodetectors is under development at the University of Pisa and INFN…”
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44: Simulation of Hadrontherapy In-beam monitoring at CNAO with the INSIDE detector
Published in Radiotherapy and oncology (01-02-2014)Get full text
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152: An integrated monitoring system for the on-line assessment of particle therapy treatment accuracy
Published in Radiotherapy and oncology (01-02-2014)Get full text
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221 SILICON PHOTOMULTIPLIERS IN PET AND HADRONTHERAPY APPLICATIONS
Published in Radiotherapy and oncology (01-03-2012)Get full text
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272 AN INNOVATIVE PET DETECTOR CONCEPT FOR TOF-INBEAM PET DOSIMETRY IN HADRON-THERAPY
Published in Radiotherapy and oncology (01-03-2012)Get full text
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First results in the application of silicon photomultiplier matrices to small animal PET
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (21-10-2009)“…A very high resolution small animal PET scanner that employs matrices of silicon photomultipliers as photodetectors is under development at the University of…”
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OC-0932 Plastic scintillator-based dosimeters for FLASH radiotherapy
Published in Radiotherapy and oncology (01-05-2023)Get full text
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A Medipix2-based imaging system for digital mammography with silicon pixel detectors
Published in IEEE transactions on nuclear science (01-12-2004)“…We present the first tests of a digital imaging system based on a silicon pixel detector bump bonded to an integrated circuit operating in single-photon…”
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MLS analysis of INSIDE in-beam PET images for the detection of morphological changes in patients treated with protontherapy
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (01-06-2023)“…Anatomical changes in proton therapy patients can affect the dose distribution and contribute to range uncertainty. In-beam Positron-Emission-Tomography…”
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A new calibration method of an array of plastic scintillating fibers for dosimetry in electron FLASH Radiotherapy
Published in Radiation measurements (01-09-2024)“…The challenge of saturation at the high dose rate employed in FLASH radiotherapy and the lack of real-time 2D and 3D dosimeters create an opportunity for the…”
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Performance of an imaging system based on silicon pixel detectors of different thickness
Published in IEEE transactions on nuclear science (01-10-2005)“…To compare the characteristics of imaging systems based on pixel detectors of different thickness, we have measured the respective imaging capabilities,…”
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Experimental study of Compton scattering reduction in digital mammographic imaging
Published in IEEE transactions on nuclear science (01-10-2002)“…In mammography, the first cause of image contrast reduction arises from the photons scattered inside the examined organ. The amount of Compton scattering…”
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The fragmentation trigger of the FOOT experiment
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (11-01-2023)“…FOOT is a fixed target nuclear physics experiment in which O, C and He beams are shot on H enriched targets to study the projectile fragmentations; the…”
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Calibration and performance assessment of the TOF-Wall detector of the FOOT experiment
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (01-01-2023)“…In this contribution we discuss the calibration and performance of the TOF-Wall detector of the Fragmentation-Of-Target (FOOT) experiment. A thin carbon target…”
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Fragment charge identification technique with a plastic scintillator detector using clinical carbon beams
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (11-02-2020)“…Nuclear physics processes are an important source of uncertainty in dose calculations in particle therapy and radioprotection in space. Accurate cross section…”
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Experimental test and characterization of BASIC64, a new mixed-signal front-end ASIC for SiPM detectors
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (21-08-2019)“…BASIC64 is a new multichannel front-end ASIC for Silicon photomultiplier detectors used in PET systems. The preamplifier input resistance is ∼50 Ω, low enough…”
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Charge identification performance of a ΔE-TOF detector prototype for the FOOT experiment
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (01-04-2020)“…FOOT (FragmentatiOn On Target) is an applied nuclear physics experiment aimed at measuring the production cross sections of fragments for energies, beams and…”
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The ΔE-TOF detector of the FOOT experiment: Experimental tests and Monte Carlo simulations
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (21-08-2019)“…The FOOT experiment aims at identifying the fragments produced in the human body during hadrontherapy and at measuring their cross sections. The apparatus is…”
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