Search results for "laser"

showing 10 items of 3161 documents

Raman scattering study of the anharmonic effects in CeO2−ynanocrystals

2007

We have studied the temperature dependence of the F2g Raman mode phonon frequency and broadening in CeO2−y nanocrystals. The phonon softening and phonon linewidth are calculated using a model which takes into account the three-and four-phonon anharmonic processes. A detailed comparison of the experimental data with theoretical calculations revealed the predominance of four-phonon anharmonic processes in the temperature dependence of the phonon energy and broadening of the nanocrystals. On the other hand, three-phonon processes dominate the temperature behavior of phonons in polycrystalline samples. The anti-Stokes/Stokes peak intensity ratio was also investigated and found to be smaller for…

Condensed matter physicsPhononChemistryAnharmonicitySoft modesCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsCondensed Matter::Materials Sciencesymbols.namesakeLaser linewidthNanocrystalCondensed Matter::SuperconductivitysymbolsCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceCrystalliteRaman spectroscopyRaman scatteringJournal of Physics: Condensed Matter
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Characterization of quantum dot/conducting polymer hybrid films and their application to light-emitting diodes.

2009

Quantum dot/conducting polymer hybrid films are used to prepare light-emitting diodes (LEDs). The hybrid films (CdSe@ZnS quantum dots excellently dispersed in a conducting polymer matrix, see figure) are readily prepared by various solution-based processes and are also easily micropatterned. The LEDs exhibit a turn-on voltage of 4 V, an external quantum efficiency greater than 1.5%, and almost pure-green quantum-dot electroluminescence.

Conductive polymerMaterials sciencebusiness.industryMechanical EngineeringElectroluminescenceCondensed Matter::Mesoscopic Systems and Quantum Hall Effectlaw.inventionCondensed Matter::Materials ScienceMechanics of MaterialsQuantum dot laserlawQuantum dotOptoelectronicsGeneral Materials ScienceQuantum efficiencyHybrid materialbusinessDiodeLight-emitting diodeAdvanced materials (Deerfield Beach, Fla.)
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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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Motion Artifact Detection in Confocal Laser Endomicroscopy Images

2018

Confocal Laser Endomicroscopy (CLE), an optical imaging technique allowing non-invasive examination of the mucosa on a (sub)- cellular level, has proven to be a valuable diagnostic tool in gastroenterology and shows promising results in various anatomical regions including the oral cavity. Recently, the feasibility of automatic carcinoma detection for CLE images of sufficient quality was shown. However, in real world data sets a high amount of CLE images is corrupted by artifacts. Amongst the most prevalent artifact types are motion-induced image deteriorations. In the scope of this work, algorithmic approaches for the automatic detection of motion artifact-tainted image regions were develo…

Confocal laser endomicroscopyArtifact (error)Computer sciencebusiness.industryDeep learningCellular levelOral cavity01 natural sciencesMotion (physics)010309 optics03 medical and health sciences0302 clinical medicineOptical imaging030220 oncology & carcinogenesis0103 physical sciencesComputer visionArtificial intelligencebusinessReal world data
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Transferability of Deep Learning Algorithms for Malignancy Detection in Confocal Laser Endomicroscopy Images from Different Anatomical Locations of t…

2019

Squamous Cell Carcinoma (SCC) is the most common cancer type of the epithelium and is often detected at a late stage. Besides invasive diagnosis of SCC by means of biopsy and histo-pathologic assessment, Confocal Laser Endomicroscopy (CLE) has emerged as noninvasive method that was successfully used to diagnose SCC in vivo. For interpretation of CLE images, however, extensive training is required, which limits its applicability and use in clinical practice of the method. To aid diagnosis of SCC in a broader scope, automatic detection methods have been proposed. This work compares two methods with regard to their applicability in a transfer learning sense, i.e. training on one tissue type (f…

Confocal laser endomicroscopyComputer sciencebusiness.industryDeep learningTransferabilityPattern recognitionMalignancymedicine.diseaseConvolutional neural network03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesismedicinePreprocessorUpper gastrointestinalArtificial intelligence030223 otorhinolaryngologybusinessTransfer of learning
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Examination Technique of Confocal Laser Endomicroscopy

2007

The first publication about a confocal fluorescence microscope integrated into the distal tip of a conventional colonoscope (Pentax EC 3830FK, Tokyo, Japan) appeared in 2004 [1], showing that in vivo microscopy at subcellular resolution (0.7 µm) simultaneously displayed with white-light endoscopy had become possible. Today, endomicroscopy can be performed in the upper and lower GI tract [2]–[10]. This chapter deals with the examination technique of confocal laser endomicroscopy.

Confocal laser endomicroscopyMaterials scienceHome positionConfocalResolution (electron density)Fluorescence microscopeEndomicroscopyIn vivo microscopyExamination techniqueBiomedical engineering
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In Vivo Imaging of Enteric Neuronal Networks in Humans Using Confocal Laser Endomicroscopy

2012

Confocal laser endomicroscopyPathologymedicine.medical_specialtyMicroscopy ConfocalHepatologyGastrointestinal Diseasesbusiness.industryConfocalGastroenterologyColonic PolypsMyenteric PlexusColonoscopySubmucous PlexusMicroscopymedicineHumansEnteric nervous systemAcriflavineNerve NetGastrointestinal MotilitybusinessPreclinical imagingFluorescent DyesGastroenterology
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Confocal laser endomicroscopy for gastrointestinal diseases.

2008

Confocal laser endomicroscopy enables in vivo microscopy of the mucosal layer of the gastrointestinal tract with subcellular resolution during ongoing endoscopy. Endomicroscopy opens the door to immediate tissue and vessel analysis. Different types of diseases can be diagnosed with optical surface and subsurface analysis. Analysis of the in vivo microarchitecture can be used for targeting biopsies to relevant areas, and subsurface imaging can unmask microscopic diseases or bacterial infection. Molecular imaging is becoming feasible, which will enable new indications in gastrointestinal endoscopy. This article reviews the current and rapidly expanding clinical data on endomicroscopy and give…

Confocal laser endomicroscopyPathologymedicine.medical_specialtyMicroscopy Confocalmedicine.diagnostic_testbusiness.industryColonGastrointestinal DiseasesGastroenterologyfood and beveragesColitisEndoscopy GastrointestinalEndoscopyBarrett EsophagusCeliac DiseaseOptical surfaceEndomicroscopyMedicineIn vivo microscopyHumansVessel analysisMolecular imagingbusinessGastrointestinal endoscopyGastrointestinal NeoplasmsGastrointestinal endoscopy clinics of North America
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Confocal laser endomicroscopy: technical status and current indications.

2006

Confocal laser endomicroscopy is a newly introduced endoscopic tool that makes it possible to carry out confocal microscopic examination of the mucosal layer during ongoing endoscopy. Different types of tissue and diseases can be diagnosed immediately, facilitating early diagnosis of gastrointestinal cancer. Analysis of the in vivo microarchitecture is helpful in targeting biopsies to relevant areas. In addition, subsurface imaging can unmask microscopic diseases - (microscopic colitis) or bacterial infection ( HELICOBACTER PYLORI), for example. Molecular imaging is becoming feasible, and this will shortly open the door to new indications in gastrointestinal endoscopy (e.g., in vivo recepto…

Confocal laser endomicroscopyPathologymedicine.medical_specialtyMicroscopy Confocalmedicine.diagnostic_testbusiness.industryConfocalLasersGastroenterologymedicine.diseaseColitisEndoscopy GastrointestinalEndoscopyBarrett EsophagusMicroscopic colitisIn vivoStomach NeoplasmsBiopsymedicineHumansGastrointestinal cancerMolecular imagingbusinessEndoscopy
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