Search results for "Photon counting"

showing 10 items of 49 documents

X-ray response of CdZnTe detectors grown by the vertical Bridgman technique: Energy, temperature and high flux effects

2016

Abstract Nowadays, CdZnTe (CZT) is one of the key materials for the development of room temperature X-ray and gamma ray detectors and great efforts have been made on both the device and the crystal growth technologies. In this work, we present the results of spectroscopic investigations on new boron oxide encapsulated vertical Bridgman (B-VB) grown CZT detectors, recently developed at IMEM-CNR Parma, Italy. Several detectors, with the same electrode layout (gold electroless contacts) and different thicknesses (1 and 2.5 mm), were realized: the cathode is a planar electrode covering the detector surface (4.1×4.1 mm2), while the anode is a central electrode (2×2 mm2) surrounded by a guard-rin…

0301 basic medicine030103 biophysicsNuclear and High Energy PhysicsHigh fluxDigital pulse shape analysi01 natural sciencesBoron oxide encapsulated vertical Bridgmanlaw.invention03 medical and health scienceslaw0103 physical sciencesPolarization (electrochemistry)InstrumentationPhysicsX-ray and gamma ray detectors010308 nuclear & particles physicsbusiness.industryCdZnTe detectorsCdZnTe detectorEnergy-resolved photon counting detectorSettore FIS/01 - Fisica SperimentaleDetectorGamma raySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)CathodePhoton countingAnodeFull width at half maximumElectrodeEnergy-resolved photon counting detectorsOptoelectronicsDigital pulse shape analysisbusinessNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Digital fast pulse shape and height analysis on cadmium-zinc-telluride arrays for high-flux energy-resolved X-ray imaging.

2017

Cadmium-zinc-telluride (CZT) arrays with photon-counting and energy-resolving capabilities are widely proposed for next-generation X-ray imaging systems. This work presents the performance of a 2â...mm-thick CZT pixel detector, with pixel pitches of 500 and 250â...μm, dc coupled to a fast and low-noise ASIC (PIXIE ASIC), characterized only by the preamplifier stage. A custom 16-channel digital readout electronics was used, able to digitize and process continuously the signals from each output ASIC channel. The digital system performs on-line fast pulse shape and height analysis, with a low dead-time and reasonable energy resolution at both low and high fluxes. The spectroscopic response …

0301 basic medicine030103 biophysicsNuclear and High Energy PhysicsMaterials sciencePreamplifierInstrumentationenergy-resolved photon counting detectordigital pulse shape analysienergy-resolved photon counting detectors01 natural sciencesCharge sharing03 medical and health scienceschemistry.chemical_compoundOpticshigh flux0103 physical sciencesInstrumentationX-ray and ?-ray detectorsNuclear and High Energy Physiccharge sharingRadiationdigital pulse shape analysisPixel010308 nuclear & particles physicsbusiness.industryCdZnTe detectorsCdZnTe detectorSettore FIS/01 - Fisica SperimentaleDetectorX-ray and γ-ray detectorBiasingSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Cadmium zinc telluridechemistryDirect couplingbusinessJournal of synchrotron radiation
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Anthracene Fluorescence Quenching by a Tetrakis (Ketocarboxamide) Cavitand

2014

Quenching of both fluorescence lifetime and fluorescence intensity of anthracene was investigated in the presence of a newly derived tetrakis (ketocarboxamide) cavitand at various concentrations. Time-correlated single photon counting method was applied for the lifetime measurements. A clear correlation between the fluorescence lifetime of anthracene as a function of cavitand concentration in dimethylformamide solution was observed. The bimolecular collisional quenching constant was derived from the decrease of lifetime. Fluorescence intensity was measured in the emission wavelength region around 400 nm as a result of excitation at 280 nm. Effective quenching was observed in the presence of…

AnthraceneQuenching (fluorescence)Article SubjectChemistryAnalytical chemistryCavitandPhotochemistryseoksetFluorescenceAtomic and Molecular Physics and OpticsPhoton countingcarbon-tetrachlorideAnalytical Chemistrychemistry.chemical_compoundWavelengthlcsh:QC350-467Dimethylformamideta116stern-volmer plotslcsh:Optics. LightSpectroscopyExcitationJournal of Spectroscopy
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In situ detection of atomic and molecular iodine using resonance and off-resonance fluorescence by lamp excitation: ROFLEX

2018

17 pags, 11 figs, 4 tabs

Atmospheric ScienceAtmospheric pressureAbsorption spectroscopylcsh:TA715-787Chemistrylcsh:Earthwork. FoundationsPhotodissociationAstrophysics::Instrumentation and Methods for AstrophysicsAnalytical chemistryResonanceFluorescencePhoton countinglcsh:Environmental engineeringExcited statelcsh:TA170-171Atomic physicsExcitation
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Parallel Measurements of in-vivo Skin Autofluorescence Lifetimes and Photobleaching Rates

2015

Experimental methodology for parallel measurements of in-vivo skin autofluorescence (AF) lifetimes and photo-bleaching dynamic has been developed and tested. The AF lifetime decay distributions were periodically collected from fixed tissue area with subsequent detection of the fluorescence intensity decrease dynamic at different time shifts after the pulse excitation. Temporal distributions of skin AF lifetimes and bleaching dynamic were collected and analyzed by means of commercial time-correlated single photon counting system. Details of the equipment and data processing are described as well as some measurement results that confirm the feasibility of the proposed technology.

AutofluorescenceFluorescence intensityMaterials scienceOpticsPulse (signal processing)In vivobusiness.industrySkin autofluorescencebusinessPhotobleachingPhoton countingExcitation
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Low light level in vitro monitoring of cellular and antigen-antibody reactions using a photon detection camera system — New perspectives for clinical…

1990

This article briefly describes the use of a photon counting system (ARGUS-100) in the detection of low levels of light. The ARGUS-100 was used in determining ATP in cell sections from tumor tissues and in measuring a luminescence-enhanced immunoluminometric assay, using ferritin as the analyte, based on the luminol-peroxide-4-iodophenol reaction with peroxidase as the enzyme. The aim is not so much the presentation of data, but rather to show the potentials of the photon counting camera in increasing our knowledge of the cellular and subcellular levels, as well as lowering the detection limits in already sensitive systems, such as immunoassays.

Blood GlucoseAnalyteVideo RecordingNanotechnologyAdenocarcinomaCell Linelaw.inventionAntigen-Antibody ReactionsImmunoenzyme TechniquesAdenosine TriphosphateMicrocomputersComputer SystemslawRhabdomyosarcomaDrug DiscoveryTumor Cells CulturedAnimalsHumansBioluminescenceLactic AcidGenetics (clinical)ChemiluminescenceDetection limitChemistrySignal Processing Computer-AssistedGeneral MedicineIn vitroPhoton countingRatsLow light levelClinical diagnosisLuminescent MeasurementsLactatesBiophysicsMolecular MedicineKlinische Wochenschrift
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Determination of particle number and brightness using a laser scanning confocal microscope operating in the analog mode

2008

We describe a method to obtain the brightness and number of molecules at each pixel of an image stack obtained with a laser scanning microscope. The method is based on intensity fluctuations due to the diffusion of molecules in a pixel. For a detector operating in the analog mode, the variance must be proportional to the intensity. Once this constant has been calibrated, we use the ratio between the variance and the intensity to derive the particle brightness. Then, from the ratio of the intensity to the brightness we obtain the average number of particles in the pixel. We show that the method works with molecules in solution and that the results are comparable to those obtained with fluctu…

BrightnessHistologyMicroscopeLaser scanningGreen Fluorescent ProteinsCHO CellsTransfectionFluorescencelaw.inventionCricetulusOpticslawCricetinaeMicroscopyAnimalsParticle SizeInstrumentationMicroscopy ConfocalN&B confocal microscopyPixelbusiness.industryDynamic rangeChemistryDetectorPhoton countingMedical Laboratory TechnologyAnatomybusinessAlgorithms
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Metabolic Imaging in Microregions of Tumors and Normal Tissues With Bioluminescence and Photon Counting

1988

A method has been developed for metabolic imaging on a microscopic level in tumors, tumor spheroids, and normal tissues. The technique makes it possible to determine the spatial distribution of glucose, lactate, and ATP in absolute terms at similar locations within tissues or cell aggregates. The substrate distributions are registered in serial cryostat sections from tissue cryobiopsies or from frozen spheroids with the use of bioluminescence reactions. The light emission is measured directly by a special imaging photon counting system enabling on-line image analysis. The technique has been applied to human breast cancer xenografts, to spheroids originating from a human colon adenocarcinoma…

Cancer ResearchPathologymedicine.medical_specialtyCellBiologyAdenosine TriphosphateNeoplasmsmedicineMedical imagingAnimalsHumansBioluminescenceLarge intestineLactic AcidRadionuclide ImagingRadiationMusclesSpheroidMammary Neoplasms Experimentalmedicine.diseasePhoton countingRatsGlucosemedicine.anatomical_structureOncologyColonic NeoplasmsLuminescent MeasurementsLactatesBiophysicsAdenocarcinomaFemaleLight emissionJNCI Journal of the National Cancer Institute
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Experimental results from Al/p-CdTe/Pt X-ray detectors

2013

Recently, Al/CdTe/Pt detectors have been proposed for the development of high resolution X-ray spectrometers. Due to the low leakage currents, these detectors allow high electric fields and the pixellization of anodes with the possibility to realize single charge carrier sensing detectors. In this work, we report on the results of electrical and spectroscopic investigations on CdTe diode detectors with Al/CdTe/Pt electrode configuration (4.1×4.1×0.75 and 4.1×4.1×2 mm3). The detectors are characterized by very low leakage currents in the reverse bias operation: 0.3 nA at 25 °C and 2.4 pA at -25 °C under a bias voltage of -1000 V. The spectroscopic performance of the detectors at both low and…

CdTe detectorHigh photon counting rateX-ray and gamma ray spectroscopyDigital pulse processingSettore FIS/01 - Fisica SperimentaleSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)
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Geographical mapping of metabolites in biological tissue with quantitative bioluminescence and single photon imaging

1993

This article features a novel technique for measuring the spatial distribution of metabolites, such as ATP, glucose, and lactate, in rapidly frozen tissue. Concentration values are obtained in absolute terms and with a spatial resolution of single-cell dimension. The method is based on enzymatic reactions that link the metabolite of interest to luciferase with subsequent light emission. Using a specific array, cryosections are brought into contact with the enzymes in a well-defined, reproducible way inducing a distribution of light across the section with an intensity that is proportional to the metabolite concentration. The emitted light can be visualized through a microscope and an imagin…

Cell SurvivalMetaboliteUterine Cervical NeoplasmsCarbohydrate metabolismBiologyMiceStructure-Activity Relationshipchemistry.chemical_compoundAdenosine TriphosphateNeoplasmsTumor Cells CulturedAnimalsFrozen SectionsHumansBioluminescenceTissue DistributionLuciferaseLactic AcidMelanomaCells Culturedchemistry.chemical_classificationMice Inbred BALB CStaining and LabelingHistocytochemistryMyocardiumCell BiologyPhoton countingRatsLactic acidGlucoseEnzymechemistryBiochemistryLuminescent MeasurementsLactatesBiophysicsFemaleLight emissionAnatomyThe Histochemical Journal
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