Search results for "diagnostics."

showing 10 items of 190 documents

Comparison of LIBS results on ITER-relevant samples obtained by nanosecond and picosecond lasers

2019

This work has been carried out within the framework of the EUROfusion Consortium and has received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement number 633053. The views and opinions expressed herein do not necessarily reflect those of the European Commission. Work performed under EUROfusion WP PFC.

Nuclear and High Energy PhysicsMaterials scienceMaterials Science (miscellaneous)chemistry.chemical_element01 natural sciences010305 fluids & plasmaslaw.inventionPulsed laser depositionsymbols.namesakeLIBS diagnosticslaw0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]Temperature of laser-produced plasmaLaser-induced breakdown spectroscopyta216010302 applied physicsArgonta114Pulse durationNanosecondLaserlcsh:TK9001-9401Nuclear Energy and EngineeringchemistryStark effectPicosecondITER-relevant coatingssymbolslcsh:Nuclear engineering. Atomic powerDetection of hydrogen isotopesElemental depth profilesAtomic physicsNuclear Materials and Energy
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Spatial and Spectral Distributions of the Hydrogen $\hbox{H}_{\alpha}$ Line in Dielectric-Barrier Discharges

2008

It is shown that the optical emission method, based on measured spatial and spectral distributions of the Halpha radiation, provides valuable information on physical conditions in the volume of dielectric-barrier discharges. In the case when the registration allows the determination of light polarization, the measured spectra may provide information about the distribution of the electric-field strength in a direction that is perpendicular to the surfaces limiting the discharge volume. Visualization of the experimental data of spatial distributions of the hydrogen Halpha line is presented.

Nuclear and High Energy PhysicsMaterials sciencebusiness.industryOptical polarizationDielectricDielectric barrier dischargeRadiationCondensed Matter PhysicsPolarization (waves)Spectral lineComputational physicsOpticsPlasma diagnosticsEmission spectrumbusinessIEEE Transactions on Plasma Science
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Breath testing as a method for detecting lung cancer

2014

Early diagnosis of lung cancer is important due to high mortality in late stages of the disease. An ideal approach for population screening could be the breath analysis, due to its non-invasiveness, simplicity and cheapness. Using sensitive methods of analysis like gas chromatography/mass spectrometry in exhaled air of cancer patients were discovered some volatile organic compounds - possible candidates for cancer markers. However, these compounds were not specific for cancer cells. At the same time, integrative approaches used to analyze the exhaled breath have demonstrated high sensitivity and specificity of this method for lung cancer diagnosis. Such integrative approaches include detect…

Oncologyelectronic nosemedicine.medical_specialtyPathologyLung Neoplasms:MEDICINE [Research Subject Categories]Sensitivity and SpecificityGas Chromatography-Mass SpectrometryBreath testingInternal medicineCancer screeningBiomarkers TumormedicineHumansPharmacology (medical)Lung cancerEarly Detection of CancerNeoplasm StagingVolatile Organic CompoundsElectronic nosecancer diagnosticsbusiness.industryCancerExhalationexhaled breath analysismedicine.diseaselung cancerBreath TestsOncologyBreath gas analysisExhalationcancer screeningGas chromatographybusiness
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Personalized cancer medicine: from molecular diagnostics to targeted therapy with natural products.

2010

Personalized cancer medicine aims to develop individualized treatment options adapted to factors relevant for the prognosis of each patient. Molecular biomarkers are required to predict the likelihood of an individual tumor's responsiveness or of toxicity in normal organs and to advise optimized treatments with improved efficacy at reduced side effects for each cancer patient. In the present review, we present a concept, which takes advantage of methods of molecular diagnostics to identify predictive markers at the DNA, mRNA, and protein levels. Markers with prognostic value concerning treatment response and patient survival can then be used as targets to develop optimized drugs. We focus o…

Oncologymedicine.medical_specialtyPathologymedicine.medical_treatmentPharmaceutical ScienceDrug resistanceAnalytical ChemistryTargeted therapyCytogeneticsInternal medicineNeoplasmsDrug DiscoverymedicineBiomarkers TumorHumansEpidermal growth factor receptorATP Binding Cassette Transporter Subfamily B Member 1RNA MessengerPrecision MedicinePharmacologyChemotherapyBiological ProductsAlanineAntibiotics Antineoplasticbiologybusiness.industryOrganic ChemistryCancerGenetic VariationMolecular diagnosticsmedicine.diseaseErbB ReceptorsComplementary and alternative medicineDrug Resistance NeoplasmPharmacogenomicsbiology.proteinMolecular MedicinebusinessComparative genomic hybridizationPhytotherapyPlanta medica
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Portable two-channel PPG cardiovascular sensor device

2003

A portable sensor device for simultaneous detection and processing of skin-remitted optical signals from any two sites of the body has been developed and tested. The photoplethysmography (PPG) principle was applied to follow the dilatation and contraction of skin blood vessels during the cardiac cycle. The newly developed two-channel approach allows to estimate the vascular blood flow resistance by analysis of time shifts between the PPG pulses detected at different body sites. Potential of the sensor device for express-assessment of human cardio-vascular condition and for body fitness tests has been demonstrated.

Optical diagnosticsCardiac cyclebusiness.industryPhotoplethysmogramMedicinesense organsBlood flowbusinessBiomedical engineeringSPIE Proceedings
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Clinical evaluation of melanomas and common nevi by spectral imaging

2012

A clinical trial on multi-spectral imaging of malignant and non-malignant skin pathologies comprising 17 melanomas and 65 pigmented common nevi was performed. Optical density data of skin pathologies were obtained in the spectral range 450-950 nm using the multispectral camera Nuance EX. An image parameter and maps capable of distinguishing melanoma from pigmented nevi were proposed. The diagnostic criterion is based on skin optical density differences at three fixed wavelengths: 540nm, 650nm and 950nm. The sensitivity and specificity of this method were estimated to be 94% and 89%, respectively. The proposed methodology and potential clinical applications are discussed.

Pathologymedicine.medical_specialtyocis:(110.4234) Multispectral and hyperspectral imagingintegumentary systembusiness.industryocis:(170.4580) Optical diagnostics for medicineMelanomaMultispectral imageImage processingOptical densitymedicine.diseaseAtomic and Molecular Physics and OpticsSpectral imagingOptics in Cancer ResearchPigmented NevusMedicinesense organsRadiologybusinessClinical evaluationBiotechnologyBiomedical Optics Express
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Therapeutic and diagnostic applications of nanoparticles.

2011

Nanoparticles are sphere-like biocompatible materials made of inert silica, metal or crystals of a few nanometers in size. They are emerging as a novel class of therapeutics for cancer treatment. Being more selective and specific toward their targets, nanoparticles have the ability to enhance the anticancer effects and to simultaneously reduce systemic toxicity compared with conventional therapeutics. Furthermore, they offer the potential to overcome drug resistance leading to higher intracellular drug accumulation. Nowadays, nanotechnologies are applied to molecular diagnostics and incorporated in cutting-edge molecular diagnostic methods, such as DNA and protein microarray biochips. Nanot…

PharmacologyDrug Carriersbusiness.industryClinical BiochemistryMolecular Diagnostic MethodNanoparticleNanotechnologyAntineoplastic AgentsMolecular diagnosticsDrug accumulationBiocompatible materialMicroarray AnalysisDrug Delivery SystemsNanomedicineNeoplasmsDrug DiscoveryDrug deliveryProtein microarrayMolecular MedicineMedicineAnimalsHumansNanoparticlesbusinessBiochipCurrent drug targets
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PROMINENCE PLASMA DIAGNOSTICS THROUGH EXTREME-ULTRAVIOLET ABSORPTION

2013

In this paper we introduce a new diagnostic technique that uses prominence EUV and UV absorption to determine the prominence plasma electron temperature and column emission measure, as well as He/H relative abundance; if a realistic assumption on the geometry of the absorbing plasma can be made, this technique can also yield the absorbing plasma electron density. This technique capitalizes on the absorption properties of Hydrogen and Helium at different wavelength ranges and temperature regimes. Several cases where this technique can be successfully applied are described. This technique works best when prominence plasmas are hotter than 15,000 K and thus it is ideally suited for rapidly hea…

Physics010308 nuclear & particles physicsExtreme ultraviolet lithographySolar Physicschemistry.chemical_elementAstronomy and AstrophysicsAstrophysicsPlasma7. Clean energy01 natural sciencesSolar prominenceComputational physicsAstrophysicWavelengthSettore FIS/05 - Astronomia E AstrofisicachemistrySpace and Planetary Science0103 physical sciencesCoronal mass ejectionPlasma diagnosticsAstrophysics; Solar PhysicsAbsorption (electromagnetic radiation)010303 astronomy & astrophysicsHelium
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Looking through the photoionisation wake: Vela X−1 at φorb ≈ 0.75 with Chandra/HETG

2021

Context. The supergiant X-ray binary Vela X−1 represents one of the best astrophysical sources to investigate the wind environment of an O/B star irradiated by an accreting neutron star. Previous studies and hydrodynamic simulations of the system have revealed a clumpy environment and the presence of two wakes: an accretion wake surrounding the compact object and a photoionisation wake trailing it along the orbit. Aims. Our goal is to conduct, for the first time, high-resolution spectroscopy on Chandra/HETGS data at the orbital phase φorb ≈ 0.75, when the line of sight is crossing the photoionisation wake. We aim to conduct plasma diagnostics, inferring the structure and the geometry of the…

PhysicsAccretion (meteorology)010308 nuclear & particles physicsAstronomy and AstrophysicsContext (language use)AstrophysicsCompact starVela01 natural sciencesNeutron starSpace and Planetary Science0103 physical sciencesPlasma diagnosticsEmission spectrumSupergiant010303 astronomy & astrophysicsAstronomy & Astrophysics
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Position-sensitive ion detection in precision Penning trap mass spectrometry

2009

A commercial, position-sensitive ion detector was used for the first time for the time-of-flight ion-cyclotron resonance detection technique in Penning trap mass spectrometry. In this work, the characteristics of the detector and its implementation in a Penning trap mass spectrometer will be presented. In addition, simulations and experimental studies concerning the observation of ions ejected from a Penning trap are described. This will allow for a precise monitoring of the state of ion motion in the trap.

PhysicsCondensed Matter::Quantum GasesNuclear and High Energy PhysicsDelay-line detectorFOS: Physical sciencesPenning trap mass spectrometryIon opticsPenning trapMass spectrometryBeam diagnosticsFourier transform ion cyclotron resonanceIon sourceSecondary ion mass spectrometryTOF-ICRPhysics::Plasma PhysicsIon trapPhysics::Atomic PhysicsPosition-sensitive ion detectionNuclear Experiment (nucl-ex)Atomic physicsTime-of-flight mass spectrometryNuclear ExperimentNuclear ExperimentInstrumentationHybrid mass spectrometer
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