Search results for "electron density"

showing 10 items of 428 documents

High performance 3D CZT spectro-imager for BNCT-SPECT: preliminary characterization

2018

The National Institute of Nuclear Physics (INFN) is supporting the 3CaTS project with the aim of developing a new Single Photon Emission Computed Tomography (SPECT) system for real time 10 B therapeutic dose monitoring in the binary experimental hadron therapy called Boron Neutron Capture Therapy (BNCT). BNCT is a highly selective tumour treatment based on the neutron capture reaction 10 B(n,α) 7 Li. The secondary particles have a high LET with ranges in tissues of the order of 10 μm (thus less than the mean cell diameter of few tens μm). Targeting the 10 B delivery towards cancer, the released energy lethally damages only the malignant cells sparing the normal tissues, thus enabling a cell…

Physicsmedicine.diagnostic_test010308 nuclear & particles physicsbusiness.industrySettore FIS/01 - Fisica SperimentaleDetectorResolution (electron density)Single-photon emission computed tomography01 natural sciencesSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)030218 nuclear medicine & medical imagingCharacterization (materials science)Hadron therapyBoron neutron capture therapy03 medical and health sciencesNeutron captureFull width at half maximum0302 clinical medicineOpticsSingle photon emission computed tomography.0103 physical sciencesmedicineNeutron irradiationbusinessX ray detector2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC)
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Screening of positrons in semiconductors and insulators

1989

Theoretical models are presented for the enhancement of the electron density at a positron in a semiconductor or insulator host. The model better suited for typical semiconductors is based on the many-body theory for the screening of a positron in electron gas. The starting point of the model for insulators is the atomic polarizability. The common parameter in both models is the high-frequency dielectric constant. Moreover, the enhancement depends on the ambient electron density in the semiconductor model and on the unit-cell volume in the insulator model. With use of the models developed, positron lifetimes in perfect semiconductor and insulator crystals have been calculated. In the calcul…

PhysicspositronsElectron densitybusiness.industryPhysicsElectronDielectricsemiconductorsSemiconductorPositronPolarizabilityVacancy defectPhysics::Accelerator PhysicsAtomic physicselectron densityFermi gasbusiness
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Resolution enhancement in integral microscopy by physical interpolation

2015

Integral-imaging technology has demonstrated its capability for computing depth images from the microimages recorded after a single shot. This capability has been shown in macroscopic imaging and also in microscopy. Despite the possibility of refocusing different planes from one snap-shot is crucial for the study of some biological processes, the main drawback in integral imaging is the substantial reduction of the spatial resolution. In this contribution we report a technique, which permits to increase the two-dimensional spatial resolution of the computed depth images in integral microscopy by a factor of √2. This is made by a double-shot approach, carried out by means of a rotating glass…

Point spread functionIntegral imagingComputer sciencebusiness.industryResolution (electron density)ComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONImage processingcomputer.software_genreArticleAtomic and Molecular Physics and OpticsBiological specimenOpticsMicroscopyData miningbusinesscomputerImage resolutionBiotechnologyInterpolationBiomedical Optics Express
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Light Sheet Fluorescence Microscopy (LSFM) for Two-Photon Excitation Imaging of Thick Samples.

2015

Over the last decades, fluorescence microscopy techniques have been developed in order to provide a deeper, faster and higher resolution imaging of three-dimensional biological samples. Within this framework, Light Sheet Fluorescence Microscopy (LSFM) became an increasingly useful and popular imaging technique able to answer several biological questions in the field of developmental biology [1]. Thanks to the spatial confinement of the excitation process within a thin sheet in the focal plane, it provides an intrinsic optical sectioning and a reduced phototoxicity. On the other side, Two-Photon Excitation (2PE), thanks to the use of IR wavelengths, has become an invaluable tool to improve i…

Point spread functionOptical sectioningbusiness.industryChemistryResolution (electron density)BiophysicsCardinal pointOpticsTwo-photon excitation microscopyLight sheet fluorescence microscopyMicroscopybusinessLight Sheet microscopyImage resolution
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Superresolved imaging based on wavelength multiplexing of projected unknown speckle patterns

2015

We propose a method for resolution enhancement of a diffraction limited optical system based on the capture of a set of low resolution images. These images are obtained after projection of an ensemble of unknown speckle patterns on top of the high resolution object that is to be imaged. Each speckle pattern is generated by the same thin (and unknown) diffuser, but illuminated with a slightly different wavelength. From the ensemble of low resolution images, we obtain a system of equations that can be solved in an iterative manner that enables reconstruction of the high resolution object. As a result, we also achieve the projected high resolution speckle patterns used for the encoding.

Point spread functionPhysicsDiffractionbusiness.industryMaterials Science (miscellaneous)Resolution (electron density)Physics::OpticsSpeckle noiseIndustrial and Manufacturing EngineeringSpeckle patternOpticsSpatial frequencySpeckle imagingBusiness and International ManagementbusinessProjection (set theory)Applied Optics
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Left-handed metamaterial coatings for subwavelength-resolution imaging

2012

We report on a procedure to improve the resolution of far-field imaging by using a neighboring high-index medium that is coated with a left-handed metamaterial. The resulting plot can also exhibit an enhanced transmission by considering proper conditions to retract backscattering. Based on negative refraction, geometrical aberrations are considered in detail since they may cause a great impact in this sort of diffraction-unlimited imaging by reducing its resolution power. We employ a standard aberration analysis to refine the asymmetric configuration of metamaterial superlenses. We demonstrate that low-order centrosymmetric aberrations can be fully corrected for a given object plane. For su…

Point spread functionPhysicsbusiness.industryPlane (geometry)Resolution (electron density)MetamaterialPhysics::OpticsImage planeAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsOpticsTransmission (telecommunications)Negative refractionImage formation theoryMetamaterialsComputer Vision and Pattern RecognitionTransmission coefficientbusinessAberration compensationÓptica
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Imaging pore space in tight gas sandstone reservoir: insights from broad ion beam cross-sectioning

2010

Monetization of tight gas reservoirs, which contain significant gas reserves world-wide, represents a challenge for the entire oil and gas industry. The development of new technologies to enhance tight gas reservoir productivity is strongly dependent on an improved understanding of the rock properties and especially the pore framework. Numerous methods are now available to characterize sandstone cores. However, the pore space characterization at pore scale remains difficult due to the fine pore size and delicate sample preparation, and has thus been mostly indirectly inferred until now. Here we propose a new method of ultra high-resolution petrography combining high resolution SEM and argon…

Pore sizePhysicsArgonIon beamPhysicsQC1-999Resolution (electron density)chemistry.chemical_elementMineralogyCharacterisation of pore space in soilCharacterization (materials science)PetrographychemistryTight gasEPJ Web of Conferences
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Crystal structure of bacteriophage fr capsids at 3.5 A resolution.

1994

The structure of recombinant capsids of the bacterial virus fr has been determined by X-ray crystallography at 3.5 A resolution. The capsids were produced by expressing the fr coat protein in Escherichia coli, the natural host of the virus, and are probably essentially identical to the protein shell of the native virus. The structure was determined using molecular replacement with the protein shell of the related MS2 virus, and refined to a crystallographic R-factor of 0.228. A comparison of the protein shells of the viruses shows that they are very similar, and indicates that they may have a similar regulation of the assembly of the quasi-symmetrical protein shell.

Protein ConformationvirusesMolecular Sequence DataRNA PhagesBiologymedicine.disease_causeCrystallography X-RayViruslaw.inventionBacteriophageCapsidStructural BiologylawmedicineComputer GraphicsEscherichia coliMolecular replacementAmino Acid SequenceMolecular BiologyEscherichia coliConserved SequenceLevivirusResolution (electron density)biology.organism_classificationRecombinant ProteinsCrystallographyCapsidMutationBiophysicsRecombinant DNABacterial virusSequence AlignmentJournal of molecular biology
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A New Approach to Deriving Interatomic Many-Body Interactions in Metals

1998

An original method of treating the kinetic and exchange-correlation en- ergies functionals in terms of many particle interactions was developed. It is based on utilizing the local density approximation. The total electron density, extracted from the ab initio . band structure calculations, is expressed as a lin- ear superposition of contributions from the individual pseudoions embedded in the uniform background. The explicit expressions for the pair and triplet potentials are presented. The general form for the part of the pair interatomic interactions caused by the kinetic and. the exchange-correlation effects is ob- tained. Relationship between the developing approach and the perturbation…

PseudopotentialPhysicsElectron densitySuperposition principleQuantum mechanicsAb initioGeneral Physics and AstronomyAtomic physicsLocal-density approximationPerturbation theoryElectronic band structurePair potentialActa Physica Polonica A
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Complementary mobile-phase optimisation for resolution enhancement in high-performance liquid chromatography.

2000

An optimisation methodology in high-performance liquid chromatography (HPLC) is presented for the selection of two or more mobile phases having an optimal complementary resolution. The complementary mobile phases (CMPs) are selected in such a way that each one resolves optimally only some compounds in the mixture, while the remainder, resolved by the other mobile phase(s), can overlap among them. The methodology is based on the computation of a peak purity measurement for each solute, using an asymmetrical peak model for peak simulation. Two global resolution criteria (product of elementary resolutions and worst elementary resolution) and two methods for solving the problem (a systematic ex…

Quality ControlChromatographyChemistryComputationOrganic ChemistryResolution (electron density)Phase (waves)General MedicineBiochemistryHigh-performance liquid chromatographyAnalytical ChemistryChemometricsModels ChemicalPhase compositionRemainderAlgorithmsChromatography High Pressure LiquidSoftwareJournal of chromatography. A
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