Search results for "Dosimeter"

showing 10 items of 96 documents

Silicon dosimeters based on Floating Gate Sensor: design, implementation and characterization

2020

A rad-hard monolithic dosimeter has been implemented and characterized in a standard 180 nm CMOS technology. The radiation sensor (C-sensor) is based on a Floating Gate (FG) MOS discharge principle. The output current is processed by a current-to-voltage (I/V) interface and then converted by a 5-bit flash ADC. The dosimeter is re-usable (FG can be recharged) and can detect a dose up to 1krad (Si) with a resolution of 30rad (Si) typical over temperature 0 to 85°C range. The ADC allows easy further signal processing for calibration and averaging, etc. The power consumption of C-sensor plus I/V interface is < 2mW from a 5 V power supply. The overall layout area is less than 0.25mm2. The Rad…

010302 applied physicsSignal processingMaterials scienceDosimeterSettore ING-IND/20 - Misure E Strumentazione Nucleari010308 nuclear & particles physicsbusiness.industryAnalog-to-digital converterHardware_PERFORMANCEANDRELIABILITYFlash ADC01 natural sciencesPower (physics)law.inventionCMOSlawAnalog-to-Digital converter current-to-voltage interfaces Dosimeter edgeless transistors (ELT) Floating Gate MOS radiation hardening by design (RHBD) total ionizing dose (TID)Absorbed dose0103 physical sciencesHardware_INTEGRATEDCIRCUITSCalibrationOptoelectronicsbusiness2020 IEEE 20th Mediterranean Electrotechnical Conference ( MELECON)
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The effect of challenge method on methacholine-induced changes in sensitivity and air trapping

2010

Summary Background The methacholine challenge test performed with the tidal breathing method induces a greater fall in FEV 1 than the dosimeter method; however, the effect of the challenge method on methacholine-induced fall in FVC has not been investigated. Objective To determine the influence of the challenge method on methacholine-induced changes in FEV 1 and FVC. Methods Airway responsiveness to methacholine was determined by dosimeter method and tidal breathing method in 37 subjects with suspected asthma. The dosimeter was modified to deliver an identical volume to that obtained with the tidal breathing method and the same nebulizer model was used for the two challenges. The response w…

AdultMalePulmonary and Respiratory MedicineRespiratory mechanicsVital CapacityAir trappingAirway responsivenessBronchoconstrictor AgentsFEV1/FVC ratioForced Expiratory VolumemedicineHumansMethacholine ChlorideAsthmaCross-Over StudiesDosimeterMethacholineDose-Response Relationship DrugInhalationbusiness.industryrespiratory systemmedicine.diseaseFVCAsthmaRespiratory Function Testsrespiratory tract diseasesNebulizerAnesthesiaFemaleMethacholineGeometric meanmedicine.symptombusinesscirculatory and respiratory physiologymedicine.drugRespiratory Medicine
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Monte Carlo simulation of the response of ESR dosimeters added with gadolinium exposed to thermal, epithermal and fast neutrons

2009

Abstract Monte Carlo numerical calculations of the response of alanine and ammonium tartrate ESR (electron spin resonance) dosimeters exposed to neutron fields with different energy spectra are reported. Results have been obtained for various gadolinium concentrations inside the dosimeters. Furthermore, in order to simulate the in-phantom response we have carried out calculations by varying the depth of the dosimeter. We have found that a large enhancement is obtained for thermal neutrons, because of the very high capture cross section of gadolinium to thermal neutrons. A good enhancement was obtained for epithermal neutrons, whereas the sensitivity improvement in the case of fast neutron i…

Astrophysics::High Energy Astrophysical PhenomenaGadoliniumPhysics::Medical PhysicsMonte Carlo methodchemistry.chemical_elementGadoliniumSpectral lineFast NeutronsHumansDosimetryNeutronRadiometryNuclear ExperimentTartratesAlanineRadiationDosimeterPhantoms ImagingRadiotherapy Planning Computer-AssistedESR dosimetry gadolinium neutronsRadiochemistryElectron Spin Resonance SpectroscopyNeutron Capture TherapyNeutron temperatureNeutron capturechemistryAtomic physicsMonte Carlo MethodApplied Radiation and Isotopes
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A dosimetric study of Leipzig applicators.

2005

Purpose: To obtain the absolute dose-rate distribution in liquid water for all six cup-shaped Leipzig applicators by means of an experimentally validated Monte Carlo (MC) code. These six applicators were used in high-dose-rate (HDR) afterloaders with the “classic” and v2 192Ir sources. The applicators have an inner diameter of 1, 2, and 3 cm, with the source traveling parallel or perpendicular to the contact surface. Methods and materials: The MC GEANT4 code was used to obtain the dose-rate distribution in liquid water for the six applicators and the two HDR source models. To normalize the applicator output factors, a MC simulation for the “classic” and v2 sources in air was performed to es…

Cancer ResearchRadiationDosimeterbusiness.industryPhantoms Imagingmedicine.medical_treatmentBrachytherapyMonte Carlo methodBrachytherapyWaterRadiotherapy DosageIridium RadioisotopesImaging phantomKermaOpticsOncologyIonization chamberPerpendicularmedicineDosimetryRadiology Nuclear Medicine and imagingThermoluminescent DosimetrybusinessNuclear medicineMonte Carlo MethodInternational journal of radiation oncology, biology, physics
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A Boron Dipyrromethene (BODIPY)-Based Cu(II) -Bipyridine Complex for Highly Selective NO Detection.

2015

[EN] A BODIPY-containing Cu-II-bipyridine complex for the simple selective fluorogenic detection of NO in air and in live cells is reported. The detection mechanism is based on NO-promoted Cu-II to Cu-I reduction, followed by demetallation of the complex, which results in the clearly enhanced emission of the boron dipyrromethene (BODIPY) unit.

ChemistryCellsOrganic ChemistryQUIMICA INORGANICAchemistry.chemical_elementGeneral ChemistryPhotochemistryHighly selectiveFluorescenceCatalysisFluorescencechemistry.chemical_compoundBipyridineQUIMICA ORGANICABODIPYQuimiodosimeterBODIPYNo detectionBoronNo detectionChemistry (Weinheim an der Bergstrasse, Germany)
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Evaluation of lens absorbed dose with Cone Beam IGRT procedures

2015

The purpose of this work is to evaluate the absorbed dose to the eye lenses due to the cone beam computed tomography (CBCT) system used to accurately position the patient during head-and-neck image guided procedures. The on-board imaging (OBI) systems (v.1.5) of Clinac iX and TrueBeam (Varian) accelerators were used to evaluate the imparted dose to the eye lenses and some additional points of the head. All CBCT scans were acquired with the Standard-Dose Head protocol from Varian. Doses were measured using thermoluminescence dosimeters (TLDs) placed in an anthropomorphic phantom. TLDs were calibrated at the beam quality used to reduce their energy dependence. Average dose to the lens due to …

Cone beam computed tomographyDosimeterPhantoms Imagingbusiness.industryPublic Health Environmental and Occupational HealthTruebeamRadiotherapy DosageGeneral MedicineCone-Beam Computed Tomographyequipment and supplieslaw.inventionLens (optics)lawAbsorbed doseLens CrystallineThermoluminescent DosimetryMedicineThermoluminescent Dosimetrysense organsLaser beam qualitybusinessNuclear medicineHeadWaste Management and DisposalImage-guided radiation therapyJournal of Radiological Protection
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SU-E-J-69: Evaluation of the Lens Dose On the Cone Beam IGRT Procedures

2014

Purpose: With the establishment of the IGRT as a standard technique, the extra dose that is given to the patients should be taken into account. Furthermore, it has been a recent decrease of the dose threshold in the lens, reduced to 0.5 Gy (ICRP ref 4825-3093-1464 on 21st April, 2011).The purpose of this work was to evaluate the extra dose that the lens is receive due to the Cone-Beam (CBCT) location systems in Head-and-Neck treatments. Methods: The On-Board Imaging (OBI) v 1.5 of the two Varian accelerators, one Clinac iX and one True Beam, were used to obtain the dose that this OBI version give to the lens in the Head-and-Neck location treatments. All CBCT scans were acquired with the Sta…

Cone beam computed tomographyDosimeterbusiness.industryIsocenterGeneral Medicinelaw.inventionLens (optics)lawMedicineLaser beam qualityThermoluminescent dosimeterbusinessNuclear medicineBolus (radiation therapy)Image-guided radiation therapyMedical Physics
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Diffusion coefficient of PVA Fricke gel dosimeters

2015

Fricke gel dosimeters based on various matrix has been studied for a long time as 3D dosimetric system for radiotherapy. Selfoxidation and loss of spatial resolution due to diffusion have been the main issues that have impaired the affirmation of this technique so far. As part of an Italian nation-wide research program, we were interested in develop new gel formulations that are simple, reproducible and non toxic. We studied the one dimensional diffusion coefficient of Fe3+ ions inside Fricke gel dosimeters based on a matrix of PVA cross-linked with a di-aldehyde. With a spectrophotometer equipped with a moving tray we were able to collect absorbance measurements at different positions of t…

DIFFUSIONSSettore ING-IND/20 - Misure E Strumentazione NucleariPVASettore FIS/01 - Fisica SperimentaleGEL DOSIMETERSOPTICAL DENSITYSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)
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3-Formyl-BODIPY Phenylhydrazone as a Chromo-Fluorogenic Probe for Selective Detection of NO2 (g)

2016

Anew colorimetric and fluorogenic probe,based on a3-formyl boron dipyrromethene (BODIPY)phe-nylhydrazone, for the sensitive and selectivedetectionNO2(g) has been prepared. The probeinsolution experi-ences aremarkablehypsochromic shift of its absorptionand fluorescence emission bands in the presence gaseousNO2(g), leading to limits of detectio noffew ppb. Theprobe also works in the solid phase, adsorbed on filterpaper strips, or chemically immobilized on the surfaceofsilica nanop articles, with limitsofdetection to the nakedeye of about 0.5 ppm.

Detection limitChemodosimeterFilter paper010405 organic chemistryChemistryOrganic ChemistryPhenylhydrazoneGeneral Chemistry010402 general chemistryPhotochemistry01 natural sciencesFluorescenceCatalysis0104 chemical sciencesNO2 detectionchemistry.chemical_compoundAdsorptionBODIPYChromo-fluorogenic probesHypsochromic shiftNaked eyeAbsorption (chemistry)BODIPY
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An Innovative dosimeter based on a floating Gate sensor

2019

This work describes the development of a new method for recording radiation exposure by using a passive dosimeter based on a Floating Gate CMOS sensor. The floating Gate sensors based on the MOS structure discharge allow the construction of compact and cost-efficient dosimeters, realized in VLSI CMOS technology, for use in integration mode in various applications, in particular in radiotherapy.

Dosimeter photons Floating Gate CMOSSettore ING-IND/20 - Misure E Strumentazione Nucleari
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