Search results for "Microscopy"

showing 10 items of 3390 documents

Growth and characterization of horizontally suspended CNTs across TiN electrode gaps.

2010

A technique is proposed to grow horizontal carbon nanotubes (CNTs) bridging metal electrodes and to assess their electrical properties. A test structure was utilized that allows for selective electrochemical sidewall catalyst placement. The selectivity of the technique is based on the connection of the desired metal electrodes to the silicon substrate where the potential for electrochemical deposition was applied. Control over the Ni catalyst size (15-30 nm) and density (up to 3 x 10(11) particles cm(-2)) is demonstrated. Horizontal CNTs with controlled diameter and density were obtained by CVD growth perpendicular to the sidewalls of patterned TiN electrode structures. Electrode gaps with …

FabricationMaterials scienceSiliconScanning electron microscopeElectrodeHeterogeneous catalysis at surfacechemistry.chemical_elementBioengineeringNanotechnologyChemical vapor depositionCarbon nanotubeSettore ING-INF/01 - Elettronicalaw.inventionlawGeneral Materials ScienceElectrical and Electronic EngineeringOhmic contactbusiness.industryMechanical EngineeringSurface and interface chemistryGeneral ChemistryNanostructured materials in electrochemistryNanotubechemistryMechanics of MaterialsElectrodeOptoelectronicsTinbusinessScanning electron microscopyNanotechnology
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Nanofabrication of TaS2 conducting layers nanopatterned with Ta2O5 insulating regions via AFM

2013

It is demonstrated how local oxidation nanolithography performed with an atomic force microscope (AFM-LON) may be successfully employed for the nanopatterning of insulating regions of Ta2O5 on TaS2 ultrathin metallic layers. This provides a simple approach for the fabrication of electronic devices, such as single-electron transistors, at the nanoscale.

FabricationNanolithographyMaterials sciencelawAtomic force microscopyTransistorMaterials ChemistryNanotechnologyGeneral ChemistryElectronicsLocal oxidation nanolithographyNanoscopic scalelaw.inventionJournal of Materials Chemistry C
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Nanomanufacturing/Nanotechnology

2008

This chapter provides comprehensive knowledge regarding the fabrication of nanoproducts and element of micro-electromechanical systems using various techniques and processes. Both well-established techniques, such as nanomachining (ultra-precision) and new trends in improving nanoprocesses taking into account AFM, laser beam machining, electron beam machining processes are overviewed. The background of nanomachining processes, including typical machining operations such as turning, milling and grinding and different construction materials (metallic and nonmetallic), is outlined. The physical mechanisms responsible for the transition from brittle to ductile regime machining are explained. Mo…

FabricationNanomanufacturingElectron beam machiningMachiningAtomic force microscopyComputer scienceSystem of measurementLaser beam machiningNanotechnologyGrinding
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High-resolution transmission electron microscopic investigations of molybdenum thin films on faceted α-Al2O3

2005

Epitaxially grown Mo films on a faceted corundum (α-Al2O3)mplane were investigated by transmission electron microscopy. Low- and high-resolution images were taken from a cross-section specimen cut perpendicular to the facets. It was possible to identify unambiguously the crystallographic orientation of these facets and explain the considerable deviation (∼10°) of the experimental interfacet angle, as measured with atomic force microscopy (AFM), from the expected value. For the first time, proof is given for a smooth \{10\bar{1}1\} facet and a curvy facet with orientation near to \{10\bar{1}\bar{2}\}. Moreover, the three-dimensional epitaxial relationship of an Mo film on a faceted corundumm…

FacetingOrientation (vector space)CrystallographyChemistryTransmission electron microscopyengineeringCorundumThin filmengineering.materialFacetEpitaxyHigh-resolution transmission electron microscopyGeneral Biochemistry Genetics and Molecular BiologyJournal of Applied Crystallography
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Advances in detection of fastidious bacteria: From microscopic observation to molecular biosensors

2019

Abstract Identification of pathogens and diagnosis of infections are important health challenges, especially in the case of fastidious bacteria which are those difficult-to-grow. A fastidious organism is any organism that has a complex nutritional requirement. Additionally, a fastidious microorganism will only grow when specific nutrients are included in the culture medium. These bacteria can cause serious diseases whose detection and monitoring is critical in many cases. The oldest detection methods are based on simple microscopy observation and staining, after culture on selective growth media, but often do not provide a clear answer. Some new molecular approaches, such as DNA-based seque…

Fastidious organismbiology010401 analytical chemistrybiology.organism_classification01 natural sciences0104 chemical sciencesAnalytical ChemistryMicroscopic observationMicrobiologyIdentification (biology)Simple MicroscopySpectroscopyOrganismBacteriaTrAC Trends in Analytical Chemistry
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Immunodetection of the microvillous cytoskeleton molecules villin and ezrin in the parasitophorous vacuole wall of Cryptosporidium parvum (Protozoa: …

1999

Microvilli - actin - villin - ezrin - Cryptosporidium parvum The sporozoites and merozoites of the Apicomplexan protozoan Cryptosporidium parvum (C. parvum) invade the apical side of enterocytes and induce the formation of a parasitophorous vacuole which stays in the brush border area and disturbs the distribution of microvilli. The vacuole is separated from the apical cytoplasm of the cell by an electron-dense layer of undetermined composition. In order to characterize the enterocyte cytoskeleton changes that occur during C. parvum invasion and development, we used both confocal immunofluorescence and immunoelectron microscopy to examine at the C.parvum-enterocyte interface the distributio…

Feces/microbiologyIntestines/parasitologyMicrofilament Proteins/ analysisVacuoleddc:616.07Actins/analysisRats Sprague-DawleyFecesMiceEzrinCarrier Proteins/ analysisCryptosporidium/ chemistry/pathogenicity/ultrastructureCytoskeletonMicroscopy ImmunoelectronCytoskeletonMice Inbred BALB CMicroscopy ConfocalbiologyMicrovilliMicrofilament ProteinsCytoskeleton/ chemistryGeneral MedicineCell biologyIntestinesCryptosporidium parvumFemaleVillinHistologyImmunoelectron microscopyVacuoles/ultrastructurePhosphoproteins/ analysisCryptosporidiummacromolecular substancesPathology and Forensic Medicineparasitic diseasesAnimalsApical cytoplasmActinCell Biologybiology.organism_classificationPhosphoproteinsActinsRatsMicrovilli/ chemistryCytoskeletal ProteinsMicroscopy ElectronVacuolesbiology.proteinCarrier ProteinsEuropean journal of cell biology
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Prenatal Ultrastructural Diagnosis in the Neuronal ceroid-lipofuscinoses

1994

Summary The neuronal ceroid-lipofuscinose (NCL) are autosomal-recessive disorders in childhood of unknown enzymatic origin. They can be recognized by the presence of abnormal lipopigments identified by electron microscopy. Based on the study of circulating lymphocytes, individual clinical subtypes of NCL can be correlated. Prenatal diagnosis of NCL with the electron microscope is now feasible for the infantile (Finnish) from (INCL) and late-infantile form (LINCL). INCL-specific granular lipopigments are present in endothelial cells of biopsied chorion stroma vessels of homozygously affected fetuses. In LINCL, disease-typical curvilinear bodies can be identified in uncultured amniotic fluid …

FetusPathologymedicine.medical_specialtyAmniotic fluid cellsCurvilinear bodiesPrenatal diagnosisChorionCell BiologyBiologyAmniotic FluidPathology and Forensic MedicineMicroscopy ElectronStromaNeuronal Ceroid-LipofuscinosesPregnancyPrenatal DiagnosisUltrastructuremedicineHumansFemaleElectron microscopicNeuronal Ceroid-LipofuscinosesPathology - Research and Practice
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Optical sectioning microscopy through single-shot Lightfield protocol

2020

Optical sectioning microscopy is usually performed by means of a scanning, multi-shot procedure in combination with non-uniform illumination. In this paper, we change the paradigm and report a method that is based in the light field concept, and that provides optical sectioning for 3D microscopy images after a single-shot capture. To do this we fi rst capture multiple orthographic perspectives of the sample by means of Fourier-domain integral microscopy (FiMic). The second stage of our protocol is the application of a novel refocusing algorithm that is able to produce optical sectioning in real time, and with no resolution worsening, in the case of sparse f luorescent samples.We provide the…

FiMicGeneral Computer ScienceOptical sectioningComputer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technology3d microscopy01 natural sciences010309 opticsOptics0103 physical sciencesMicroscopyGeneral Materials ScienceProtocol (object-oriented programming)Fourier integral microscopebusiness.industryResolution (electron density)Orthographic projectionGeneral EngineeringSingle shotfourier lightfield microscopeGPU computingÒptica021001 nanoscience & nanotechnologySample (graphics)Microscòpialightfield microscopeoptical sectioninglcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:TK1-9971
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The Lightfield Microscope Eyepiece

2021

Lightfield microscopy has raised growing interest in the last few years. Its ability to get three-dimensional information about the sample in a single shot makes it suitable for many applications in which time resolution is fundamental. In this paper we present a novel device, which is capable of converting any conventional microscope into a lightfield microscope. Based on the Fourier integral microscope concept, we designed the lightfield microscope eyepiece. This is coupled to the eyepiece port, to let the user exploit all the host microscope’s components (objective turret, illumination systems, translation stage, etc.) and get a 3D reconstruction of the sample. After the optical design, …

FiMicMicroscopeComputer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONTP1-1185Translation (geometry)BiochemistryAnalytical Chemistrylaw.inventionEyepieceOpticslawlightfield eyepieceMicroscopyplenoptic eyepieceElectrical and Electronic EngineeringInstrumentationLightingFourier integral microscopeMicroscopylightfield microscopybusiness.industryCommunicationChemical technology3D reconstructionSingle shotTime resolutionSample (graphics)Atomic and Molecular Physics and OpticsÒptica Aparells i instrumentsMicroscòpia3D microscopybusinessSensors
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PLLA/Fibrin Tubular Scaffold: A New Way for Reliable Endothelial Cell Seeding

2014

In the present work a simple and quick technique for cell seeding into tubular-shaped scaffolds, which allows a homogeneous cell distribution, was tested. The poly-L-lactide (PLLA) scaffolds, prepared via diffusion induced phase separation (DIPS), were filled with fibrin gel in order to obtain a hybrid scaffold for Vascular Tissue Engineering applications. The formation of immobilized fibrin networks on the inner surface of the tubular scaffolds was observed using confocal microscopy and SEM. Morphological analysis of the so-obtained scaffold revealed that the fibrin gel is uniformly distributed on the internal surface of the scaffold, leading to an organized structure. Moreover a penetrati…

FibrinScaffoldMaterials sciencebiologyCell growthGeneral MedicinePenetration (firestop)Fibrinlaw.inventionEndothelial stem cellPhase SeparationTubular scaffoldConfocal microscopylawbiology.proteinSeedingVascular Tissue EngineeringBiomedical engineeringConference Papers in Science
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