Search results for "Near-Infrared Spectroscopy"

showing 10 items of 138 documents

Near-infrared emitting fluorescent homobimetallic gold(I) complexes displaying promising in vitro and in vivo therapeutic properties

2021

International audience; Boron neutron capture therapy (BNCT) has the potential to specifically destroy tumor cells without damaging the tissues infiltrated by the tumor. BNCT is a binary treatment method based on the combination of two agents that have no effect when applied individually: 10B and thermal neutrons. Exclusively, the combination of both produces an effect, whose extent depends on the amount of 10B in the tumor but also on the organs at risk. It is not yet possible to determine the 10B concentration in a specific tissue using non-invasive methods. At present, it is only possible to measure the 10B concentration in blood and to estimate the boron concentration in tissues based o…

Boron Compoundsinorganic chemicalsCell SurvivalInfrared RaysAntineoplastic Agents01 natural sciencesMiceStructure-Activity Relationship03 medical and health sciencesOptical imagingCoordination ComplexesIn vivoDrug DiscoveryTumor Cells CulturedAza-bodipyAnimalsHumans[CHIM]Chemical SciencesNir fluorescenceComputingMilieux_MISCELLANEOUSCell ProliferationFluorescent Dyes030304 developmental biologyPharmacologyAza CompoundsMice Inbred BALB C0303 health sciencesDose-Response Relationship DrugMolecular Structure010405 organic chemistryChemistryOptical ImagingOrganic ChemistryNear-infrared spectroscopyNeoplasms ExperimentalGeneral MedicineFluorescenceIn vitro3. Good health0104 chemical sciencesBiophysicsGoldDrug Screening Assays AntitumorCancer cell lines
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MILES extended: Stellar population synthesis models from the optical to the infrared

2016

We present the first single-burst stellar population models which covers the optical and the infrared wavelength range between 3500 and 50000 Angstrom and which are exclusively based on empirical stellar spectra. To obtain these joint models, we combined the extended MILES models in the optical with our new infrared models that are based on the IRTF (Infrared Telescope Facility) library. The latter are available only for a limited range in terms of both age and metallicity. Our combined single-burst stellar population models were calculated for ages larger than 1 Gyr, for metallicities between [Fe/H] = -0.40 and 0.26, for initial mass functions of various types and slopes, and on the basis …

CAII TRIPLETStellar populationInfraredMetallicityINITIAL MASS FUNCTIONBROWN DWARFSInfrared telescopeFOS: Physical sciencesAstrophysicsAstrophysics::Cosmology and Extragalactic Astrophysics01 natural sciencesAstronomical spectroscopyinfrared: galaxiesATMOSPHERIC PARAMETERS0103 physical sciencesRange (statistics)Astrophysics::Solar and Stellar Astrophysics2.5 MU-MGIANT BRANCH STARS010303 astronomy & astrophysicsinfrared: starsEMPIRICAL CALIBRATIONAstrophysics::Galaxy AstrophysicsPhysics010308 nuclear & particles physicsNear-infrared spectroscopyHIGH-SPECTRAL-RESOLUTIONAstronomy and AstrophysicsEVOLUTIONARY SYNTHESISAstrophysics - Astrophysics of GalaxiesGalaxySpace and Planetary ScienceAstrophysics of Galaxies (astro-ph.GA)NEWTON-TELESCOPE LIBRARYgalaxies: stellar contentAstrophysics::Earth and Planetary Astrophysics
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Near-infrared diffuse reflectance spectroscopy and neural networks for measuring nutritional parameters in chocolate samples.

2007

Abstract A rapid and non-destructive method has been developed for the characterization of chocolate samples based on diffuse reflectance near-infrared Fourier transform spectroscopy (DRIFTS) and artificial neural networks (ANNs). This methodology provides a potentially useful alternative to time-consuming chemical methods of analysis. To assess its utility, 36 chocolate samples purchased from the Spanish market were analyzed for the determination of the main nutritional parameters like carbohydrates, fat, proteins, energetic value and cocoa content. Direct triplicate measurements of each sample were carried out by DRIFTS. Cluster hierarchical analysis was used for selecting calibration and…

CacaoDiffuse reflectance infrared fourier transformMean squared errorChemistryFood HandlingNear-infrared spectroscopyAnalytical chemistryCarbohydratesInfrared spectroscopyCalorimetryBiochemistryStandard deviationFourier transform spectroscopyAnalytical ChemistryMilkNutrition AssessmentApproximation errorSpectroscopy Fourier Transform InfraredCalibrationEnvironmental ChemistryAnimalsNerve NetSpectroscopyAnalytica chimica acta
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An integrated approach for high spatial resolution mapping of water and carbon fluxes using multi-sensor satellite data

2012

In the last years, modeling of surface processes - such as water, energy and carbon budgets, as well as vegetation growth- seems to be focused on integrated approaches that combine aspects of hydrology, biology and meteorology into unified analyses. In this context, remotely sensed data often have a core role due to the cross-cutting impact of this novel source of spatially distributed information on all these research areas. However, several applications - such as drought monitoring, yield forecasting and crop management - require spatially detailed products at sub-field scales, which can be obtained only with support of adequately fine resolution remote sensing data (< 100 m). In particul…

CanopyMoistureNear-infrared spectroscopySettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaData fusioncomputer.software_genreSensor fusionEnergy budgetSurface energy balanceThermal infrared optical bands data fusion surface energy balanceOptical bandsEvapotranspirationEnvironmental scienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliLeaf area indexThermal infraredcomputerRemote sensingData integration
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The scattering and re-absorption of red and near-infrared chlorophyll fluorescence in the models Fluspect and SCOPE

2019

Scattering and re-absorption have been recognized as relevant aspects for the interpretation of solar induced chlorophyll fluorescence (SIF) in vegetation remote sensing. In an earlier study [Yang and Van der Tol, RSE 215, 97–108, 2018] we addressed the problem of scattering and re-absorption of near-infrared fluorescence in the vegetation canopy. In this study we analyse within-leaf re-absorption of both red and near-infrared fluorescence using the radiative transfer model Fluspect. The leaf scattering determines the ratio of backward to total leaf fluorescence emission Fb/(Fb + Ff). Fluspect reproduces this ratio with an RMSE of less than 0.1, and explains the observed dependence of the s…

CanopySpectral shape analysisMaterials science010504 meteorology & atmospheric sciences0208 environmental biotechnologyAnalytical chemistryUT-Hybrid-DSoil ScienceRadiative transfer model02 engineering and technology01 natural sciencesRe absorptionScatteringAtmospheric radiative transfer codesComputers in Earth SciencesChlorophyll fluorescence0105 earth and related environmental sciencesRemote sensingScatteringNear-infrared spectroscopyGeologyFluorescence22/4 OA procedure020801 environmental engineeringITC-ISI-JOURNAL-ARTICLEChlorophyll fluorescenceRemote sensing of environment
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Near-infrared imaging and structured light ranging for automatic catheter insertion

2006

Vein localization and catheter insertion constitute the first and perhaps most important phase of many medical procedures. Currently, catheterization is performed manually by trained personnel. This process can prove problematic, however, depending upon various physiological factors of the patient. We present in this paper initial work for localizing surface veins via near-infrared (NIR) imaging and structured light ranging. The eventual goal of the system is to serve as the guidance for a fully automatic (i.e., robotic) catheterization device. Our proposed system is based upon near-infrared (NIR) imaging, which has previously been shown effective in enhancing the visibility of surface vein…

Catheter insertionbusiness.industryComputer scienceNear-infrared spectroscopyProcess (computing)Image processingRangingmedicine.anatomical_structuremedicineComputer visionArtificial intelligenceVeinbusinessVisibilityStructured lightSPIE Proceedings
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Hydration Chemistry of Cement Studied by Near Infrared Spectroscopy

2018

Cement is a complex mixture of inorganic compounds which mainly composed of calcium silicates and calcium aluminates. Cement is mixed with water to form concrete. During the mixing calcium silicate hydrate (CSH) and calcium hydroxide are formed. The ratio of water/cement (w/c ratio) is important to obtain a mixture that gives optimum strength to the concrete. In this work, three different cement samples were mixed with water in four different ratios, including 0.35, 0.40, 0.45 and 0.55, respectively. The hydration process of cement was investigated by using near infrared (NIR) spectroscopy over a period of 28 days. The combination frequency of OH stretching and bending of water molecules gi…

CementChemical engineeringMechanics of MaterialsChemistryMechanical Engineering0206 medical engineeringNear-infrared spectroscopyGeneral Materials Science02 engineering and technology021001 nanoscience & nanotechnology0210 nano-technology020601 biomedical engineering
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Quantitative Determination of Calcium Hydroxide by using Near Infrared Spectroscopy

2018

Calcium hydroxide (CH) is a by-product from hydration reaction of cement along with calcium silicate hydrate (C-S-H) gel. It helps to protect the steel reinforcements in concrete structures from corrosion process due to carbonation. The presence of calcium hydroxide provides a basic environment (pH˃10) that induces the formation of passive oxide film and keeps steel structures from corrosion. The detection and quantification of calcium hydroxide in concrete structures are important to understand the nature and state of the steel structures in concretes. In this research work, the variation of calcium hydroxide to calcium silicate ratios in cement were measured by using near-infrared spectro…

CementMaterials scienceCalcium hydroxideMechanical EngineeringNear-infrared spectroscopy0211 other engineering and technologies02 engineering and technology021001 nanoscience & nanotechnologyQuantitative determinationchemistry.chemical_compoundchemistryMechanics of Materials021105 building & constructionGeneral Materials Science0210 nano-technologyNuclear chemistry
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Application of infrared spectroscopy as Process Analytics Technology (PAT) approach in biodiesel production process utilizing Multivariate Curve Reso…

2019

Abstract Process Analytical Technology means at-line collection of analytical information from the process when the reaction is in progress. Obtained information enables process engineers to better control the Critical Process Parameters and direct the reaction to desirable routs. Near-infrared spectroscopy due to its analytical features, as well as the high capability of automation, versatile sampling and spectral acquisition methods is a useful tool in process monitoring when coupled to chemometrics. The Multiple Scatter Correction preprocessing technique and Alternative Least Square method can extract spectral and concentration information of a reaction mixture simultaneously, were emplo…

Chemistrybusiness.industryProcess analytical technologyNear-infrared spectroscopyProcess (computing)02 engineering and technologyWork in process010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAutomationAtomic and Molecular Physics and Optics0104 chemical sciencesAnalytical ChemistryChemometricsBiodiesel production0210 nano-technologyBiological systembusinessSpectroscopyInstrumentationSpectroscopySpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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Determination of Olive Oil Parameters by Near Infrared Spectrometry

2010

Publisher Summary Near infrared (NIR) covers the region between 780 and 2500 nm, and based on the absorption, transmission or reflection of the light, NIR spectroscopy provides a fast and non-destructive technique which is very useful for the simultaneous determination of several compounds in the same sample. Food NIR spectra comprise broad bands corresponding to overtones and combinations of vibrational modes involving C–H, O–H, and N–H chemical bonds, providing a great amount of information which properly treated by chemometrics is useful for classification and for the quantification of many parameters. The olive oil extraction process starts in the harvesting and transport of olive fruit…

ChemometricsMaterials scienceMoistureNear-infrared spectroscopyPomaceAnalytical chemistryOlive oil extractionAbsorption (electromagnetic radiation)MalaxationOlive oil
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