Search results for "Absorbed dose"

showing 10 items of 61 documents

Effects of high-energy electrons in advanced NAND flash memories

2016

We study the effects of high-energy electrons on advanced NAND Flash memories with multi-level and single-level cell architecture. We analyze the error rate in floating gate cells as a function of electron energy, evaluate the impact of total ionizing dose, and discuss the physical origin of the observed behavior.

NeutronsHigh energyRadiationElectron energy010308 nuclear & particles physicsComputer sciencebusiness.industryNAND gateAlpha Particles; Flash; Neutrons; Radiation Effects; Single Event Upset; Electrical and Electronic Engineering; RadiationElectronAlpha Particles01 natural sciencesThreshold voltageRadiation EffectsFlash (photography)Error analysisAbsorbed dose0103 physical sciencesElectronic engineeringOptoelectronicsElectrical and Electronic EngineeringFlashbusinessSingle Event Upset2016 16th European Conference on Radiation and Its Effects on Components and Systems (RADECS)
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Evaluation of Mechanisms in TID Degradation and SEE Susceptibility of Single- and Multi-Level High Density NAND Flash Memories

2011

Heavy ion single-event measurements and total ionizing dose (TID) response for 8 Gb commercial NAND flash memories are reported. Radiation results of multi-level flash technology are compared with results from single-level flash technology. The single-level devices are less sensitive to single event upsets (SEUs) than multi-level devices. In general, these commercial high density memories exhibit less TID degradation compared to older generations of flash memories.

Nuclear and High Energy PhysicsHardware_MEMORYSTRUCTURESMaterials sciencebusiness.industryNAND gateHigh densityFlash (photography)Nuclear Energy and EngineeringLogic gateAbsorbed doseElectronic engineeringOptoelectronicsHeavy ionElectrical and Electronic EngineeringbusinessDegradation (telecommunications)IEEE Transactions on Nuclear Science
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ESR dosimeter material properties of phenols compound exposed to radiotherapeutic electron beams

2017

Abstract There is a need for a sensitive dosimeter using Electron Spin Resonance spectroscopy for use in medical applications, since non-destructive read-out and dose archival could be achieved with this method. This work reports a systematic ESR investigation of IRGANOX ® 1076 exposed to clinical electron beams produced by a LINAC used for radiation therapy treatments. Recently, dosimetric features of this material were investigated for irradiation with 6 0Co γ -photons and neutrons in both pellet and film shape and have been found promising thanks to their high efficiency of radiation-matter energy transfer and radical stability at room temperature. Here the analysis of the dosimetric fea…

Nuclear and High Energy PhysicsRange (particle radiation)DosimeterMaterials scienceSettore FIS/01 - Fisica SperimentaleAnalytical chemistryElectronStopping powerSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Settore FIS/03 - Fisica Della Materia030218 nuclear medicine & medical imaginglaw.invention03 medical and health sciences0302 clinical medicineNuclear magnetic resonanceSettore ING-IND/23 - Chimica Fisica Applicatalaw030220 oncology & carcinogenesisAbsorbed doseIrradiationDosimetry Dose ESR EPR Electron BeamElectron paramagnetic resonanceInstrumentationBeam (structure)
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Clinical Translation and First In-Human Use of [44Sc]Sc-PSMA-617 for PET Imaging of Metastasized Castrate-Resistant Prostate Cancer

2017

Background: Various trivalent radiometals are well suited for labeling of DOTA-conjugated variants of Glu-ureido-based prostate-specific membrane antigen (PSMA) inhibitors. The DOTA-conjugate PSMA-617 has proven high potential in PSMA radioligand therapy (PSMA-RLT) of prostate cancer as well as PET imaging when labeled with lutetium-177 and gallium-68 respectively. Considering the relatively short physical half-life of gallium-68 this positron emitter precludes prolonged acquisition periods, as required for pre-therapeutic dosimetry or intraoperative applications. In this context, the positron emitter scandium-44 is an attractive alternative for PET imaging. We report the synthesis of [44Sc…

OncologyMalemedicine.medical_specialtytheranostics.Medicine (miscellaneous)Context (language use)SpleenGallium RadioisotopesLutetiumurologic and male genital diseases030218 nuclear medicine & medical imaging03 medical and health sciencesProstate cancerHeterocyclic Compounds 1-Ring0302 clinical medicineInternal medicinePositron Emission Tomography Computed TomographyLNCaPmedicineDosimetryHumansRadiometryPharmacology Toxicology and Pharmaceutics (miscellaneous)AgedRadioisotopesUrinary bladderChemistrybusiness.industryDipeptidesProstate-Specific Antigenmedicine.diseaseprostate cancerPSMA-617scandium-44Small intestineProstatic Neoplasms Castration-Resistantmedicine.anatomical_structurePET030220 oncology & carcinogenesisAbsorbed doseRadiopharmaceuticalsNuclear medicinebusinessScandiumResearch PaperHalf-LifeTheranostics
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Collision-kerma conversion between dose-to-tissue and dose-to-water by photon energy-fluence corrections in low-energy brachytherapy

2016

The AAPM TG-43 brachytherapy dosimetry formalism, introduced in 1995, has become a standard for brachytherapy dosimetry worldwide; it implicitly assumes that charged-particle equilibrium (CPE) exists for the determination of absorbed dose to water at different locations, except in the vicinity of the source capsule. Subsequent dosimetry developments, based on Monte Carlo calculations or analytical solutions of transport equations, do not rely on the CPE assumption and determine directly the dose to different tissues. At the time of relating dose to tissue and dose to water, or vice versa, it is usually assumed that the photon fluence in water and in tissues are practically identical, so tha…

Photonmedicine.medical_treatmentBrachytherapyMonte Carlo methodBrachytherapyPhoton energyRadiation DosageFluence030218 nuclear medicine & medical imaging03 medical and health sciencesKerma0302 clinical medicinemedicineHumansDosimetryRadiology Nuclear Medicine and imagingRadiometryPhysicsPhotonsRadiological and Ultrasound Technologybusiness.industryWaterRadiotherapy DosageComputational physics030220 oncology & carcinogenesisAbsorbed doseNuclear medicinebusinessMonte Carlo MethodPhysics in Medicine and Biology
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SU-E-T-467: Monte Carlo Dosimetric Study of the New Flexisource Co-60 High Dose Rate Source.

2017

Recently, a new HDR 60Co brachytherapy source, Flexisource Co-60, has been developed (Nucletron B.V.). This study aims to obtain quality dosimetric data for this source for its use in clinical practice as required by AAPM and ESTRO.Penelope2008 and GEANT4 Monte Carlo codes were used to dosimetrically characterize this source. Water composition and mass density was that recommended by AAPM. Due to the high energy of the 60Co, dose for small distances cannot be approximated by collisional kerma. Therefore, we have considered absorbed dose to water for r0.75 cm and collisional kerma from 0.75r20 cm. To provide adequate spatial resolution, cells were 0.01 cm in thickness for r2 cm from the sour…

PhysicsHigh energybusiness.industrymedicine.medical_treatmentMonte Carlo methodBrachytherapyGeneral MedicineComputational physicsWater compositionKermaAbsorbed dosemedicineDosimetryDose rateNuclear medicinebusinessMedical physics
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A Monte Carlo-based dosimetric characterization of Esteya® , an electronic surface brachytherapy unit

2018

PURPOSE The purpose of this work is threefold: First, to obtain the phase space of an electronic brachytherapy (eBT) system designed for surface skin treatments. Second, to explore the use of some efficiency enhancing (EFEN) strategies in the determination of the phase space. Third, to use the phase space previously obtained to perform a dosimetric characterization of the Esteya eBT system. METHODS The Monte Carlo study of the 69.5 kVp x-ray beam of the Esteya® unit (Elekta Brachytherapy, Veenendaal, The Netherlands) was performed with PENELOPE2014. The EFEN strategies included the use of variance reduction techniques and mixed Class II simulations, where transport parameters were fine-tune…

PhysicsMonte Carlo methodDose profileGeneral MedicinePhoton energy030218 nuclear medicine & medical imagingPercentage depth dose curveComputational physics03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisAbsorbed doseDosimetryVariance reductionEnergy sourceMedical Physics
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Effects of Scaling in SEE and TID Response of High Density NAND Flash Memories

2010

Heavy ion single-event effect (SEE) measurements and total ionizing dose (TID) response for Micron Technology single-level cell 1, 2, 4, 8 Gb commercial NAND flash memory and multi-level cell 8, 16, 32 Gb are reported. The heavy ion measurements were extended down to LET 0.1 MeV-cm2/mg. Scaling effects in SEE and TID response are discussed. Floating gate bit error upset cross section does not scale with feature size at high LETs, except for single-level cell 8 Gb device which is built with 51 nm processes. The threshold LET does not change with scaling. Charge pump TID degradation and standby current improves with scaling. In general, the effect of radiation is either unchanged or is less s…

PhysicsNuclear and High Energy Physicsbusiness.industryNAND gateUpsetNon-volatile memoryFlash (photography)Nuclear Energy and EngineeringSingle event upsetAbsorbed doseCharge pumpElectronic engineeringOptoelectronicsElectrical and Electronic EngineeringbusinessScalingIEEE Transactions on Nuclear Science
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Monte Carlo evaluation of the Filtered Back Projection method for image reconstruction in proton computed tomography

2011

Abstract In this paper the use of the Filtered Back Projection (FBP) Algorithm, in order to reconstruct tomographic images using the high energy (200–250 MeV) proton beams, is investigated. The algorithm has been studied in detail with a Monte Carlo approach and image quality has been analysed and compared with the total absorbed dose. A proton Computed Tomography (pCT) apparatus, developed by our group, has been fully simulated to exploit the power of the Geant4 Monte Carlo toolkit. From the simulation of the apparatus, a set of tomographic images of a test phantom has been reconstructed using the FBP at different absorbed dose values. The images have been evaluated in terms of homogeneity…

PhysicsNuclear and High Energy Physicsmedicine.medical_specialtyTomographic reconstructionRadon transformImage qualitybusiness.industryPhysics::Medical PhysicsMonte Carlo methodIterative reconstructionImaging phantomOpticsAbsorbed doseHomogeneity (physics)medicineMedical physicsbusinessInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Monte Carlo calculation of beam quality correction factors for PTW cylindrical ionization chambers in photon beams.

2020

The beam quality correction factor k Q for megavoltage photon beams has been calculated for eight PTW (Freiburg, Germany) ionization chambers (Farmer chambers PTW30010, PTW30011, PTW30012, and PTW30013, Semiflex 3D chambers PTW31021, PTW31010, and PTW31013, and the PinPoint 3D chamber PTW31016). Simulations performed on the widely used NE-2571 ionization chamber have been used to benchmark the results. The Monte Carlo code PENELOPE/penEasy was used to calculate the absorbed dose to a point in water and the absorbed dose to the active air volume of the chambers for photon beams in the range 4 to 24 MV. Of the nine ionization chambers analysed, only five are included in the current version of…

PhysicsPhotonsPhotonRadiological and Ultrasound TechnologyMonte Carlo methodUncertaintyWater030218 nuclear medicine & medical imagingNuclear physics03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisIonizationAbsorbed doseIonization chamberRelative biological effectivenessDosimetryRadiology Nuclear Medicine and imagingLaser beam qualityRadiometryMonte Carlo MethodRelative Biological EffectivenessPhysics in medicine and biology
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