Search results for "Engineering sciences"

showing 10 items of 2347 documents

Magnitude, temporal trends, and projections of the global prevalence of blindness and distance and near vision impairment: a systematic review and me…

2017

PubMed: 28779882

AFRICAPopulation ageingmedicine.medical_specialtyVisual acuity[SDV]Life Sciences [q-bio]PopulationVisual impairmentVision DisordersVisual AcuityEYEBlindnessGlobal Health03 medical and health sciences0302 clinical medicineSDG 3 - Good Health and Well-being[SDV.IDA]Life Sciences [q-bio]/Food engineeringPrevalenceJournal ArticleGlobal healthHumansMedicineVISUAL IMPAIRMENT[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering030212 general & internal medicineeducationPublic Environmental & Occupational Healtheducation.field_of_studyScience & Technologybusiness.industryMORTALITYPublic healthlcsh:Public aspects of medicineMedicine (all)COSTlcsh:RA1-1270General MedicinePresbyopiamedicine.diseaseVision Loss Expert Group3. Good healthMeta-analysis030221 ophthalmology & optometry/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingHEALTHmedicine.symptombusinessLife Sciences & BiomedicineDemography
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Cerebral plasmogens and aldehydes in senescence-accelerated mice P8 and R1 : Acomparison between weaned, adult and aged mice

2006

International audience; In contrast with senescence-accelerated mice R1, SAM P8 show abnormal aging characteristics. Changes occurring during aging could be mainly caused by free radical reactions. The brain is a plasmalogen-rich tissue. These particular phospholipids may act as endogenous antioxidants, be oxidized and release long chain aldehydes and α-hydroxyaldehydes during oxidative stress. The aim of this study was to examine by GC/MS the age- and strain-related levels of plasmalogens, aldehydes and α-hydroxyaldehydes in brain homogenates of SAM P8 and R1 at weaning, 5 months and 9 months of age in order to better understand the differences between both strains. In SAM R1, the evolutio…

AGINGSAM P8[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringALPHA-HYDROXYALDEHYDE[SDV.IDA]Life Sciences [q-bio]/Food engineeringSAM R1ALDEHYDESENESCENCE-ACCELERATED MICE[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering[SDV.IDA] Life Sciences [q-bio]/Food engineeringOXIDATIVE STRESSBRAINPLASMALOGEN
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In senescence accelerated mouse (SAM) heart, the protective effect of postconditioning is associated with a decrease in oxidative stress

2006

Supplément vol.27, World Congress of Cardiology 2006; International audience; The senescent heart susceptibility to ischemia (I) triggers multiple processes especially oxidative stress but precise mechanisms remain unclear. New animal’s models such as "Senescence Accelerated Mouse" Prone 8 (SAM-P8) and their control (SAM-R1) can be useful for a better understanding of aging process. We studied heart adaptation of these mice to I/reperfusion (R) sequence and a putative cardioprotector effect of post-conditioning (PC). Isolated working mice (8 months) hearts were subjected to a global total ischemia (20 minutes at 38°C), followed by 40 minutes of reperfusion. 4 groups of hearts were constitut…

AGING[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringOXIDATIVE STRESSISCHEMIA/REPERFUSION[SDV.IDA] Life Sciences [q-bio]/Food engineering
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Approche nutritionnelle de la thérapie du syndrome de l'œil sec : prévention par les acides gras polyinsaturés

2008

Dry eye disease affects 15% of the population over the age of 65. It is characterized mainly by inflammation of the ocular surface (tear film, conjunctiva and cornea) which represents a relevant target for therapeutic strategies. The side effects and long-term intolerance of anti-inflammatory drugs give rise to an increasing interest for dietary components exhibiting anti-inflammatory properties, such as polyunsaturated fatty acids (PUFAs). In these studies, we developed a scopolamine-induced dry eye model in the rat that mimics changes occurring in Humans suffering from moderate dry eye. We described the time course of clinical signs, inflammation and mucin production loss. We investigated…

ALIMENTATIONPOLYUNSATURED FATTY ACIDSSYNDROME DE l'OEIL SECSURFACE OCULAIRE[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringOCULAR SURFACEPROSTAGLNADINES[SDV.IDA] Life Sciences [q-bio]/Food engineeringACIDES GRAS POLYINSATURESDIETINFLAMMATIONPROSTAGLANDINS[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringDRY EYE DISEASE
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Texture - flavour cross-modal interactions in dairy desserts: physico-chemical or cognitive mecanisms?

2006

International audience

AROMASENSORYTASTE[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringTEXTUREFLAVOUR[SDV.IDA] Life Sciences [q-bio]/Food engineeringPHYSICO-CHEMICALINTERACTIONDESSERTComputingMilieux_MISCELLANEOUS
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Mechanical, thermal and acoustical characterizations of an insulating bio-based composite made from sunflower stalks particles and chitosan

2014

International audience; This study has for objective the determination of thermal, mechanical and acoustical properties of insulating bio-based composite made with chitosan and sunflower's stalks particles. An experimental design was established to find the size grading of particles, the ratio chitosan/sunflower particles and the stress of compaction influencing the thermal and mechanical properties. Composites with a thermal conductivity $(\kappa)$ of 0.056 W/m/K, a maximum stress $(\sigma_{\text{max}})$ of 2 MPa and an acoustic coefficient of absorption $(\alpha)$ of 0.2 were obtained with a ratio of chitosan of 4.3% (w/w) and a size grading of particles higher to 3 mm. These mechanical a…

Absorption (acoustics)Materials science020209 energyComposite numberCompactionYoung's modulus02 engineering and technologyChitosanStress (mechanics)[SPI]Engineering Sciences [physics]chemistry.chemical_compoundsymbols.namesakeThermal conductivityThermal0202 electrical engineering electronic engineering information engineeringYoung modulus[INFO]Computer Science [cs]Composite material[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]Chitosan[ SPI.ACOU ] Engineering Sciences [physics]/Acoustics [physics.class-ph]021001 nanoscience & nanotechnologySunflowerBio-based compositechemistryThermal conductivitysymbols0210 nano-technologyAgronomy and Crop ScienceIndustrial Crops and Products
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On the variations of acoustic absorption peak with particle velocity in micro-perforated panels at high level of excitation.

2010

The acoustic behavior of micro-perforated panels (MPP) is studied theoretically and experimentally at high level of pressure excitation. A model based on Forcheimer's regime of flow velocity in the perforations is proposed. This model is valid at relatively high Reynolds numbers and low Mach numbers. The experimental method consists in measuring the acoustical pressure at three different positions in an impedance tube, the two measurement positions usually considered in an impedance tube and one measurement in the vicinity of the rear surface of the MPP. The impedance tube is equipped with a pressure driver instead of the usual loudspeaker and capable of delivering a high sound pressure lev…

Absorption (acoustics)Materials scienceAcoustics and UltrasonicsAcoustics[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]FOS: Physical sciencesPhysics - Classical PhysicsPolypropylenes01 natural sciences010305 fluids & plasmasAbsorption[SPI]Engineering Sciences [physics]symbols.namesakeMotionArts and Humanities (miscellaneous)0103 physical sciencesPressureParticle velocitySound pressure010301 acoustics[ PHYS.MECA.ACOU ] Physics [physics]/Mechanics [physics]/Acoustics [physics.class-ph][SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph][ SPI.ACOU ] Engineering Sciences [physics]/Acoustics [physics.class-ph]Construction MaterialsAirFluid Dynamics (physics.flu-dyn)Classical Physics (physics.class-ph)Reynolds numberPhysics - Fluid DynamicsAcousticsModels TheoreticalSound intensity[PHYS.MECA.ACOU]Physics [physics]/Mechanics [physics]/Acoustics [physics.class-ph]Mach numberFlow velocityNonlinear DynamicsSteelFacility Design and Construction[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]symbolsLinear ModelsAcoustic impedanceNoisePorosityThe Journal of the Acoustical Society of America
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Synthesis, Characterization, and Electrochemistry of Open-Chain Pentapyrroles and Sapphyrins with Highly Electron-Withdrawing meso -Tetraaryl Substit…

2017

International audience; A series of open-chain pentapyrroles and sapphyrins with highly electron-withdrawing substituents (i.e., CN, CF3 , or CO2 Me) on the meso-phenyl rings was synthesized and characterized as to the spectral properties, protonation reactions, and electrochemistry in non-aqueous media. The investigated compounds are represented as (Ar)4 PPyH3 and (Ar)4 SapH3 where PPy and Sap correspond to the tri-anion of the open-chain pentapyrrole and sapphyrin, respectively, and Ar=p-CNPh, p-CF3 Ph, or p-CO2 MePh. UV/Vis and 1 H NMR spectroscopy as well as mass spectrometry data are given for the confirmation of the structures for the newly synthesized compounds. An X-ray structure fo…

Absorption spectroscopyprotonationInorganic chemistryporphyrinoidsProtonationpentapyrroles010402 general chemistry01 natural sciencesRedox[ CHIM ] Chemical SciencesCatalysischemistry.chemical_compound[SPI]Engineering Sciences [physics]PyridinePolymer chemistryTrifluoroacetic acid[CHIM]Chemical SciencesEquilibrium constantsapphyrins010405 organic chemistryOrganic ChemistryGeneral Chemistry0104 chemical scienceschemistryelectrochemistryProton NMRCyclic voltammetry
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Combining gestures and vocalizations to imitate sounds

2015

International audience; Communicating about sounds is a difficult task without a technical language, and naïve speakers often rely on different kinds of non-linguistic vocalizations and body gestures (Lemaitre et al. 2014). Previous work has independently studied how effectively people describe sounds with gestures or vocalizations (Caramiaux, 2014, Lemaitre and Rocchesso, 2014). However, speech communication studies suggest a more intimate link between the two processes (Kendon, 2004). Our study thus focused on the combination of manual gestures and non-speech vocalizations in the communication of sounds. We first collected a large database of vocal and gestural imitations of a variety of …

Acoustics and UltrasonicsComputer scienceInformationSystems_INFORMATIONINTERFACESANDPRESENTATION(e.g.HCI)Speech recognition02 engineering and technologyRepresentation (arts)[ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processing[INFO.INFO-NE]Computer Science [cs]/Neural and Evolutionary Computing [cs.NE][INFO.INFO-CL]Computer Science [cs]/Computation and Language [cs.CL]Loudness[INFO.INFO-AI]Computer Science [cs]/Artificial Intelligence [cs.AI][SCCO]Cognitive science0202 electrical engineering electronic engineering information engineering[ INFO.INFO-NE ] Computer Science [cs]/Neural and Evolutionary Computing [cs.NE]050107 human factorsComputingMilieux_MISCELLANEOUSSound (medical instrument)05 social sciences[ SHS.ANTHRO-SE ] Humanities and Social Sciences/Social Anthropology and ethnology[INFO.INFO-MA]Computer Science [cs]/Multiagent Systems [cs.MA][ SCCO.COMP ] Cognitive science/Computer science[SCCO.PSYC] Cognitive science/Psychology[INFO.INFO-SD]Computer Science [cs]/Sound [cs.SD][ SCCO.NEUR ] Cognitive science/Neuroscience[SCCO.PSYC]Cognitive science/Psychology[ INFO.EIAH ] Computer Science [cs]/Technology for Human Learning[ INFO.INFO-MA ] Computer Science [cs]/Multiagent Systems [cs.MA][INFO.EIAH]Computer Science [cs]/Technology for Human Learning[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingGesture[ SHS.MUSIQ ] Humanities and Social Sciences/Musicology and performing artsAcoustics[SCCO.COMP]Cognitive science/Computer scienceArts and Humanities (miscellaneous)[ INFO.INFO-HC ] Computer Science [cs]/Human-Computer Interaction [cs.HC]0501 psychology and cognitive sciences[ INFO.INFO-CL ] Computer Science [cs]/Computation and Language [cs.CL][INFO.INFO-HC]Computer Science [cs]/Human-Computer Interaction [cs.HC]Set (psychology)[ INFO.INFO-AI ] Computer Science [cs]/Artificial Intelligence [cs.AI][SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph][SPI.ACOU] Engineering Sciences [physics]/Acoustics [physics.class-ph][SHS.MUSIQ]Humanities and Social Sciences/Musicology and performing arts[ INFO.INFO-ET ] Computer Science [cs]/Emerging Technologies [cs.ET][SCCO.NEUR]Cognitive science/Neuroscience020207 software engineering[SHS.ANTHRO-SE]Humanities and Social Sciences/Social Anthropology and ethnologyVariety (linguistics)loudness[INFO.INFO-ET]Computer Science [cs]/Emerging Technologies [cs.ET]Noise (video)[ INFO.INFO-SD ] Computer Science [cs]/Sound [cs.SD]
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Comparing identification of vocal imitations and computational sketches of everyday sounds

2016

International audience; Sounds are notably difficult to describe. It is thus not surprising that human speakers often use many imitative vocalizations to communicate about sounds. In practice,vocal imitations of non-speech everyday sounds (e.g. the sound of a car passing by) arevery effective: listeners identify sounds better with vocal imitations than with verbal descriptions, despite the fact that vocal imitations are often inaccurate, constrained by the human vocal apparatus. The present study investigated the semantic representations evoked by vocal imitations by experimentally quantifying how well listeners could match sounds to category labels. Itcompared two different types of sounds…

Acoustics and UltrasonicsComputer science[ SHS.MUSIQ ] Humanities and Social Sciences/Musicology and performing artsSpeech recognitionAcoustics[SCCO.COMP]Cognitive science/Computer science[ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processing[INFO.INFO-NE]Computer Science [cs]/Neural and Evolutionary Computing [cs.NE][INFO.INFO-CL]Computer Science [cs]/Computation and Language [cs.CL][INFO.INFO-AI]Computer Science [cs]/Artificial Intelligence [cs.AI][SPI]Engineering Sciences [physics][SCCO]Cognitive scienceArts and Humanities (miscellaneous)[ INFO.INFO-HC ] Computer Science [cs]/Human-Computer Interaction [cs.HC][ INFO.INFO-CL ] Computer Science [cs]/Computation and Language [cs.CL][INFO.INFO-HC]Computer Science [cs]/Human-Computer Interaction [cs.HC][ INFO.INFO-NE ] Computer Science [cs]/Neural and Evolutionary Computing [cs.NE][ INFO.INFO-AI ] Computer Science [cs]/Artificial Intelligence [cs.AI]ComputingMilieux_MISCELLANEOUSSound (medical instrument)[ INFO.INFO-ET ] Computer Science [cs]/Emerging Technologies [cs.ET][SHS.MUSIQ]Humanities and Social Sciences/Musicology and performing arts[SCCO.NEUR]Cognitive science/Neuroscience[SHS.ANTHRO-SE]Humanities and Social Sciences/Social Anthropology and ethnologyIdentification (information)[ SHS.ANTHRO-SE ] Humanities and Social Sciences/Social Anthropology and ethnology[INFO.INFO-MA]Computer Science [cs]/Multiagent Systems [cs.MA][ SCCO.COMP ] Cognitive science/Computer science[ SCCO.NEUR ] Cognitive science/Neuroscience[INFO.INFO-SD]Computer Science [cs]/Sound [cs.SD][ INFO.EIAH ] Computer Science [cs]/Technology for Human Learning[ INFO.INFO-MA ] Computer Science [cs]/Multiagent Systems [cs.MA][INFO.INFO-ET]Computer Science [cs]/Emerging Technologies [cs.ET][INFO.EIAH]Computer Science [cs]/Technology for Human Learning[ INFO.INFO-SD ] Computer Science [cs]/Sound [cs.SD][SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing
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