Search results for " green"

showing 10 items of 405 documents

Primary transpupillary thermotherapy (TTT) for malignant choroidal melanoma

2002

. Purpose:  To evaluate the efficacy of transpupillary thermotherapy (TTT) as the only method of treatment for small choroidal melanoma. Patients and Methods:  In a prospective non-randomized analysis, 20 patients with primary choroidal melanoma (posterior to the equator with base ≤ 2 and thickness ≤ 4.5 mm) were treated with TTT as the only method of treatment (diode laser at 810 nm, beam diameter 3 mm, power setting 0.3–0.9 W, exposure time 20–37 min). During follow-up of at least 6 months, clinical aspects, ultrasonographic tumour thickness, fluorescein and indocyanine green angiographic patterns, visual acuity and ocular side-effects were recorded. Results:  In 17 eyes the tumour regres…

Choroidal melanomamedicine.medical_specialtyVisual acuitygenetic structuresbusiness.industryMelanomaUveamedicine.diseaseeye diseasesMetastasisSurgeryOphthalmologychemistry.chemical_compoundmedicine.anatomical_structurechemistryOphthalmologymedicinesense organsChoroidmedicine.symptombusinessIndocyanine greenSynechiaActa Ophthalmologica Scandinavica
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Spectrophotometric determination of chlorhexidine with bromocresol green by flow-injection and manual methods

1986

Abstract A spectrophotometric study of the chlorhexidine/bromocresol green/Triton X-100 system is reported; at pH 5.3, both 2:1 and 1:1 bromocresol green/chlorhexidine complexes are formed. In the manual spectrophotometric method, Beer's law is obeyed for chlorhexidine concentrations of 2.9–32.2 μg ml −1 (r.s.d. 0.4–1.3%); the molar absorptivity is 12 500 l mol −1 cm −1 . In the flow-injection method, the calibration graph is linear for the chlorhexidine range 23.0–83.9 μg ml −1 (r.s.d. 0.8%); the injection is ca. 60 h −1 . Benzocaine, acetylsalicylic acid, ascorbic acid and sucrose are tolerated at 10 −2 −10 −3 M levels. Hibitane 5% was analyzed successfully.

ChromatographyBromocresol greenmedicine.diagnostic_testChlorhexidineMolar absorptivityAscorbic acidBiochemistryAnalytical ChemistryBenzocainechemistry.chemical_compoundchemistrySpectrophotometrymedicineEnvironmental ChemistrySpectroscopymedicine.drugAnalytica Chimica Acta
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Extractive Spectrophotometric Determination of Ondansetron by Ion-Pair Formation with Bromocresol Green

1996

Abstract An empirical spectrophotometric procedure for the determination of the antiemetic ondansetron is carried out. The method is based on the formation of a 1:1 ion pair with bromocresol green in the pH range over 3.2 – 4.4, extraction into chloroform layer and spectrophotometric measurement at 420.8 nm. The calibration graph is linear over the range 0.1 – 20 μg ml−1 ondansetron, with a relative standard deviation of 2.7%; the influence of foreign substances is also studied. The method is applied to ondansetron determination in human urine.

ChromatographyChloroformBromocresol greenmedicine.diagnostic_testCalibration curveBiochemistry (medical)Clinical BiochemistryExtraction (chemistry)Ion pairsBiochemistryAnalytical ChemistryOndansetronchemistry.chemical_compoundchemistrySpectrophotometryElectrochemistrymedicineQuantitative analysis (chemistry)Spectroscopymedicine.drugAnalytical Letters
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Staining mitochondria in Saccharomyces cerevisiae.

1969

After testing various procedures (amidoblack 10B, acid fuchsin-methyl blue, Luxol fast blue MBS-phloxine, toluidine blue O, Jams green B and pinacyanol), three stains can be recommended for staining both types of mitochondria (globose and threadlike) in the cells of Saccharomyces cerevisiae: (1) 0.1% solution of amidoblack 10B in citrate buffer (pH 3.0) for 10 min; (2) 0.01% solution of toluidine blue O in phosphate buffer (pH 6.0) for 30 min; (3) 0.01% solution of Janus green B in distilled water (pH 5.6) for 30 min. The latter stain is most specific because its staining reaction depends upon the action of the mitochondrial enzyme cytochrome c oxidase. Yet, low concentrations and short inc…

ChromatographyTime FactorsStaining and LabelingJanus Green BSaccharomyces cerevisiaeBiologyBuffersHydrogen-Ion Concentrationbiology.organism_classificationStainLuxol fast blue stainStainingMitochondriaElectron Transport Complex IVchemistry.chemical_compoundSaccharomyceschemistryBiochemistryDistilled waterbiology.proteinMethodsCytochrome c oxidaseAnatomyColoring AgentsIncubationStain technology
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Innovative “Green” and Novel Strategies for the Extraction of Bioactive Added Value Compounds from Citrus Wastes—A Review

2017

Citrus is a major processed crop that results in large quantities of wastes and by-products rich in various bioactive compounds such as pectins, water soluble and insoluble antioxidants and essential oils. While some of those wastes are currently valorised by various technologies (yet most are discarded or used for feed), effective, non-toxic and profitable extraction strategies could further significantly promote the valorisation and provide both increased profits and high quality bioactives. The present review will describe and summarize the latest works concerning novel and greener methods for valorisation of citrus by-products. The outcomes and effectiveness of those technologies such a…

CitrusPharmaceutical Sciencecitrus wastes ; ultrasound ; pulsed electric fields ; microwaves ; high pressure ; supercritical CO2ReviewGarbageCitrus wastes; High pressure; Microwaves; Pulsed electric fields; Supercritical CO2; Ultrasound; Citrus; Fruit; Garbage; Green Chemistry Technology; Plant Extracts; Waste Products; Organic ChemistrymicrowavesLower energysupercritical CO2Analytical Chemistrylcsh:QD241-4410404 agricultural biotechnologylcsh:Organic chemistryDrug DiscoveryAdded valuePhysical and Theoretical ChemistryConventional techniqueWaste Products2. Zero hungercitrus wastesPlant Extractsultrasoundbusiness.industryOrganic ChemistryExtraction (chemistry)food and beveragesGreen Chemistry Technology04 agricultural and veterinary sciences040401 food scienceBiotechnologyhigh pressureWater solublepulsed electric fieldsChemistry (miscellaneous)FruitHigh pressureMolecular MedicineEnvironmental scienceBiochemical engineeringValorisationbusinessMolecules
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Disorder and interactions in systems out of equilibrium : the exact independent-particle picture from density functional theory

2017

Density functional theory (DFT) exploits an independent-particle-system construction to replicate the densities and current of an interacting system. This construction is used here to access the exact effective potential and bias of non-equilibrium systems with disorder and interactions. Our results show that interactions smoothen the effective disorder landscape, but do not necessarily increase the current, due to the competition of disorder screening and effective bias. This puts forward DFT as a diagnostic tool to understand disorder screening in a wide class of interacting disordered systems.

Class (set theory)Current (mathematics)Non-equilibrium thermodynamicsFOS: Physical sciences02 engineering and technologyCondensed Matter::Disordered Systems and Neural Networks01 natural sciencesCondensed Matter - Strongly Correlated ElectronsInformationSystems_GENERALdisordered systems0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)strongly correlated systemsDisorder screeningStatistical physics010306 general physicsdensity functional theoryPhysicsta114Condensed Matter - Mesoscale and Nanoscale PhysicsStrongly Correlated Electrons (cond-mat.str-el)tiheysfunktionaaliteoriaDisordered Systems and Neural Networks (cond-mat.dis-nn)Condensed Matter - Disordered Systems and Neural Networks021001 nanoscience & nanotechnologynonequilibrium Green's functionParticleDensity functional theory0210 nano-technology
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Compression and injection molding of recycled polyethylene for greenhouses in presence of the natural fibres

2003

Compression and injection molding greenhouses natural fibres
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The promise of spintronics for unconventional computing

2021

Novel computational paradigms may provide the blueprint to help solving the time and energy limitations that we face with our modern computers, and provide solutions to complex problems more efficiently (with reduced time, power consumption and/or less device footprint) than is currently possible with standard approaches. Spintronics offers a promising basis for the development of efficient devices and unconventional operations for at least three main reasons: (i) the low-power requirements of spin-based devices, i.e., requiring no standby power for operation and the possibility to write information with small dynamic energy dissipation, (ii) the strong nonlinearity, time nonlocality, and/o…

Computer scienceFOS: Physical sciencesApplied Physics (physics.app-ph)02 engineering and technology01 natural sciencesQuantum nonlocalityAffordable and Clean EnergyBlueprintMesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciencescond-mat.mes-hallElectronic engineeringHardware_ARITHMETICANDLOGICSTRUCTURESStandby powerApplied Physics010302 applied physicsSpintronicsCondensed Matter - Mesoscale and Nanoscale PhysicsMechanical EngineeringReservoir computingPhysics - Applied PhysicsMaterials EngineeringPhysik (inkl. Astronomie)Dissipation021001 nanoscience & nanotechnologyCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCMOS integrated circuits; Computation theory; Energy dissipation; Green computing; Spin fluctuations; Spintronics; Tunnel junctionsCMOS0210 nano-technologyUnconventional computingphysics.app-ph
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Optimizing Renewable Power Management in Transmission Congestion. An Energy Hub Model Using Hydrogen Storage

2021

Energy production from distributed renewable power plants underwent a takeoff in last years as never before. Nevertheless, the installation of technologies based on variable energy resources and their connection on transmission power lines might cause congestions due to the transmission capacity limits. This paper describes the modelization of a HV transmission line with local renewable production and its optimal management through an Energy Hub model. Aim of the study is to identify the optimal size of the power storage, based on an electoryzer, a hydrogen storage and a fuel cell, in order to minimize the congestion risks and to maximize the exploitation of renewable energy production.

Computer sciencebusiness.industryElectrolyzer energy hub green hydrogen optimization wind turbineAutomotive engineeringRenewable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaHydrogen storageElectric power transmissionTransmission (telecommunications)Transmission lineProduction (economics)TakeoffbusinessEnergy (signal processing)2021 IEEE International Conference on Environment and Electrical Engineering and 2021 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe)
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A method for measuring mitochondrial mass and activity

2007

Mitochondria, responsible for the energy-generating process essential for the cell metabolism, differ for the number, localization and activity in animal cells and tissues in relation to the energetic needs. Using fluorescent probes specific for mitochondria, Mitotracker Green (MTG) and Orange (MTO), and Confocal Laser-Scanning Microscope (CLSM), we elaborated a method to measure in vivo the mitochondrial mass and activity, in sea urchin Paracentrotus lividus eggs and embryos. The analysis of captured images, revealed a variation of mitochondrial distribution and an increase of activity after fertilization.

ConfocalClinical BiochemistryBiomedical Engineeringsea urchin.BioengineeringMitochondrionmitochondrial activityParacentrotus lividusMitoTracker GreenHuman fertilizationIn vivobiology.animalSettore BIO/06 - Anatomia Comparata E CitologiaSea urchinmitochondrial mabiologyBrief ReportEmbryoCell BiologyAnatomybiology.organism_classificationFluorescenceCell biologyMitoTracker OrangeCLSM; mitochondrial mass; mitochondrial activity; MitoTracker Green; MitoTracker Orange; sea urchin.CLSMBiotechnologyCytotechnology
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