Search results for "Wave"

showing 10 items of 6009 documents

Efficacy of dulaglutide on vascular health indexes in subjects with type 2 diabetes: a randomized trial

2021

Abstract Background Recent cardiovascular outcome trials have shown significant reductions in major cardiovascular (CV) events with glucagon-like peptide (GLP)-1 receptor agonists. Additionally, adjunctive surrogates for cardiovascular risk validated by some studies include arterial stiffness and endothelial function indexes. To date, no randomized trial has addressed the possible effects of antidiabetic interventional drugs such as GLP1 agonists on endothelial and arterial stiffness indexes as surrogate markers of vascular damage. Aims We aimed to evaluate metabolic efficacy and surrogate vascular efficacy endpoints of once-weekly dulaglutide (1.5 mg) plus traditional antidiabetic treatmen…

Blood GlucoseMalelcsh:Diseases of the circulatory (Cardiovascular) systemSettore MED/09 - Medicina InternaTime FactorsEndocrinology Diabetes and MetabolismGlucagon-Like PeptidesBlood PressureType 2 diabetesGastroenterologylaw.inventionRandomized controlled triallawPulse wave velocityOriginal InvestigationDiabetesMiddle AgedLipidsVasodilationTreatment OutcomeItalyDrug Therapy CombinationFemaleCardiology and Cardiovascular Medicinemedicine.drugmedicine.medical_specialtyRecombinant Fusion ProteinsIncretinsGlucagon-Like Peptide-1 ReceptorVascular StiffnessDiabetes mellitusInternal medicinemedicineHumansHypoglycemic AgentsDulaglutideAngiologyAgedVascular healthGlycated Hemoglobinbusiness.industrymedicine.diseasedulaglutide diabetes arterial stiffnessImmunoglobulin Fc FragmentsBlood pressureDiabetes Mellitus Type 2lcsh:RC666-701Arterial stiffnessDulaglutidebusinessBiomarkersCardiovascular Diabetology
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Photoplethysmography system for blood pulsation detection in unloaded artery conditions

2012

Photoplethysmography (PPG) is an optical method of blood pulsation recording and has been extensively studied for decades. Recently PPG is widely used in the medical equipment for patient monitoring and in laboratories for research and physiological studies. In spite of the technological progress in the field of medical equipment, there are no generally accepted standards for clinical PPG measurements up to date. One of the most important factors affecting PPG waveform is the contact pressure between tissue and PPG probe. The aim of the current study was to develop and evaluate a system for software-assisted PPG signal acquisition from the unloaded artery. Novel PPG waveform derived Optimal…

Blood pressureTransmural pressuremedicine.anatomical_structureComputer scienceRemote patient monitoringPhotoplethysmogrammedicinePlethysmographWaveformsense organsArteryBiomedical engineeringSPIE Proceedings
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3-D attenuation image of fluid storage and tectonic interactions across the Pollino fault network

2021

SUMMARYThe Pollino range is a region of slow deformation where earthquakes generally nucleate on low-angle normal faults. Recent studies have mapped fault structures and identified fluid-related dynamics responsible for historical and recent seismicity in the area. Here, we apply the coda-normalization method at multiple frequencies and scales to image the 3-D P-wave attenuation (QP) properties of its slowly deforming fault network. The wide-scale average attenuation properties of the Pollino range are typical for a stable continental block, with a dependence of QP on frequency of $Q_\mathrm{ P}^{-1}=(0.0011\pm 0.0008) f^{(0.36\pm 0.32)}$. Using only waveforms comprised in the area of seism…

Body Waves; Seismic attenuation; Seismic tomography; Fractures; faults and high strain deformation zonesSeismic attenuationgeographySeismic tomographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesBody wavesAttenuationand high strain deformation zonesfaultsFault (geology)010502 geochemistry & geophysics01 natural sciencesImage (mathematics)TectonicsGeophysicsBody WavesGeochemistry and PetrologySeismic tomographyFracturesGeologySeismology0105 earth and related environmental sciencesGeophysical Journal International
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Wave propagation in 1D elastic solids in presence of long-range central interactions

2011

Abstract In this paper wave propagation in non-local elastic solids is examined in the framework of the mechanically based non-local elasticity theory established by the author in previous papers. It is shown that such a model coincides with the well-known Kroner–Eringen integral model of non-local elasticity in unbounded domains. The appeal of the proposed model is that the mechanical boundary conditions may easily be imposed because the applied pressure at the boundaries of the solid must be equilibrated by the Cauchy stress. In fact, the long-range forces between different volume elements are modelled, in the body domain, as central body forces applied to the interacting elements. It is …

Body forceAcoustics and UltrasonicsCONTINUAWave propagationMechanical EngineeringWeak solutionMODELSElastic energyGRADIENT ELASTICITYWeak formulationElasticity (physics)Condensed Matter PhysicsWave equationMEDIANONLOCAL ELASTICITYClassical mechanicsMechanics of MaterialsBoundary value problemSettore ICAR/08 - Scienza Delle CostruzioniMathematicsJournal of Sound and Vibration
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The mechanically-based approach to 3D non-local linear elasticity theory: Long-range central interactions

2010

Abstract This paper presents the generalization to a three-dimensional (3D) case of a mechanically-based approach to non-local elasticity theory, recently proposed by the authors in a one-dimensional (1D) case. The proposed model assumes that the equilibrium of a volume element is attained by contact forces between adjacent elements and by long-range forces exerted by non-adjacent elements. Specifically, the long-range forces are modelled as central body forces depending on the relative displacement between the centroids of the volume elements, measured along the line connecting the centroids. Further, the long-range forces are assumed to be proportional to a proper, material-dependent, dis…

Body forceNon-local elasticityWAVESPROPAGATIONContact forceLattice modelsCentral forcesCentral forceVARIATIONAL-PRINCIPLESMaterials Science(all)Modelling and SimulationVariational formulationsGeneral Materials ScienceVirtual workPLASTICITYSTRAIN-GRADIENT ELASTICITYMathematicsPlane stressDISCRETECONTINUAMechanical EngineeringApplied MathematicsLinear elasticityElastic energySTRAIN-GRADIENT ELASTICITY; VARIATIONAL-PRINCIPLES; CRACK SUBJECT; PROPAGATION; PLASTICITY; DISCRETE; CONTINUA; DEFECTS; LATTICE; WAVESMechanicsDEFECTSCondensed Matter PhysicsLATTICELong-range interactionsClassical mechanicsContact mechanicsStatic–kinematic dualityMechanics of MaterialsModeling and SimulationSettore ICAR/08 - Scienza Delle CostruzioniCRACK SUBJECTInternational Journal of Solids and Structures
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Effect of pressure on structural properties and energy band gaps of γ-InSe

2003

We have investigated theoretically the effect of hydrostatic pressure on interatomic bond lengths and energy band gaps of γ-InSe. Total energy calculations were performed using the linear augmented plane wave (LAPW) method, taking into account scalar relativistic corrections as well as spin-orbit coupling. Internal structural parameters were optimized for different pressures by adopting as input the unit cell parameters known from experiment. Our theoretical results for the nearest-neighbor In-Se bond length are in excellent agreement with a recent experimental determination from high-pressure EXAFS measurements. The covalent In-In bond is found to be more compressible than the partially io…

Bond lengthCondensed matter physicsChemical bondBand gapChemistryHydrostatic pressurePlane waveIonic bondingCondensed Matter PhysicsElectronic band structurePressure coefficientElectronic Optical and Magnetic Materialsphysica status solidi (b)
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GERMANIUM DICARBIDE: EVIDENCE FOR A T−SHAPED GROUND STATE STRUCTURE

2017

The equilibrium structure of germanium dicarbide GeC2 has been an open question since the late 1950s. Although most high-level quantum calculations predict an L-shaped geometry, a T-shaped or even a linear geometry cannot be ruled out because of the very flat potential energy surface. By recording the rotational spectrum of this dicarbide using sensitive microwave and millimeter techniques, we unambiguously establish that GeC2 adopts a vibrationally averaged T-shaped structure in its ground state. From analysis of 14 isotopologues, a precise r0 structure has been derived, yielding a Ge–C bond length of 1.952(1) A and an apex angle of 38.7(2)°.

Bond lengthMaterials sciencechemistryPotential energy surfacechemistry.chemical_elementMillimeterIsotopologueGermaniumLinear molecular geometryGround stateMolecular physicsMicrowaveNuclear chemistryProceedings of the 72nd International Symposium on Molecular Spectroscopy
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Analysis of the CIPSI/DCCI approach to characterize the HF AND F2 single bond

1990

Abstract The aim of the present work is to account for the main differential correlation contributions occurring during the bond breaking process of HF and F2 molecules in an accurate and inexpensive way. Starting from the dissociation-consistent configuration interaction (DCCI) scheme by Goddard and co-workers the corresponding contributions are evaluated within the framework reported by Malrieu and co-workers, namely configuration interaction by perturbation with multiconfigurational zeroth-order wavefunction selected by iterative process (CIPSI). In addition, the DCCI scheme has been improved by introducing the dispersion effects associated with the valence MOs adjacent to the bond. The …

Bond lengthValence (chemistry)Electronic correlationComputational chemistryChemistryGeneral Physics and AstronomySingle bondElectronic structurePhysical and Theoretical ChemistryConfiguration interactionWave functionMolecular physicsDiatomic moleculeChemical Physics
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84 Enhanced Characterization of the Thickness and Bone Mineral Density of the Radius and Tibia by Low-Frequency Guided-Wave Ultrasound

2009

Bone mineralGuided wave testingbusiness.industryEndocrinology Diabetes and MetabolismUltrasoundRadiusLow frequencyCharacterization (materials science)MedicineRadiology Nuclear Medicine and imagingOrthopedics and Sports MedicineTibiabusinessBiomedical engineeringJournal of Clinical Densitometry
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A new shoreline boundary condition for a highly nonlinear 1DH Boussinesq model for breaking waves

2008

In order to model the wave motion and, in turn, the flow, within the nearshore region, in the last decades the derivation and the application of Boussinesq type of models have been extensively investigated. Nevertheless, in the framework of such depth integrated numerical models, the problems of modeling wave breaking and moving onshore boundary at the shoreline are not trivial and several approaches have been proposed to overcome these limits. In the present work an effort toward a more physical based model of the surf and the swash zone has been accomplished. In particular, starting from the work of Musumeci et al. (2005), a new model of the shoreline boundary condition has been implement…

Boussinesq modelSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaBreakingwave runup
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