Search results for "Finite Element Analysi"

showing 10 items of 108 documents

Modeling Right Ventricle Failure After Continuous Flow Left Ventricular Assist Device: A Biventricular Finite-Element and Lumped-Parameter Analysis

2017

The risk of right ventricle (RV) failure remains a major contraindication for continuous-flow left ventricular assist device (CF-LVAD) implantation in patients with heart failure. It is therefore critical to identify the patients who will benefit from early intervention to avoid adverse outcomes. We sought to advance the computational modeling description of the mechanisms underlying RV failure in LVAD-supported patients. RV failure was studied by computational modeling of hemodynamic and cardiac mechanics using lumped-parameter and biventricular finite element (FE) analysis. Findings were validated by comparison of bi-dimensional speckle-tracking echocardiographic strain assessment of the …

MaleCardiac CatheterizationCardiac outputVentricular Dysfunction Rightmedicine.medical_treatmentHemodynamicsSpeckle tracking echocardiography02 engineering and technology030204 cardiovascular system & hematologySeverity of Illness IndexRight ventricular failure Left ventricular assist device Speckle-tracking echocardiography Lumped-parameter Finite-element analysis.Ventricular Function LeftVentricular Dysfunction Left0302 clinical medicineRisk FactorsMedicineModels CardiovascularMiddle AgedTreatment Outcomemedicine.anatomical_structureEchocardiographyCardiologyFemaleCardiology and Cardiovascular MedicineAdultmedicine.medical_specialtyFinite Element Analysis0206 medical engineeringBiomedical EngineeringProsthesis DesignProsthesis Implantation03 medical and health sciencesInternal medicineSettore ING-IND/12 - Misure Meccaniche E TermicheHumansComputer SimulationInterventricular septumContraindicationRetrospective StudiesHeart Failurebusiness.industryHemodynamicsmedicine.disease020601 biomedical engineeringVentricleVentricular assist deviceHeart failureVentricular Function RightHeart-Assist DevicesbusinessCardiovascular Engineering and Technology
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Simulation study of transcatheter heart valve implantation in patients with stenotic bicuspid aortic valve

2019

Bicuspid aortic valve (BAV) anatomy has routinely been considered an exclusion in the setting of transcatheter aortic valve implantation (TAVI) because of the large dimension of the aortic annulus having a more calcified, bulky, and irregular shape. The study aims to develop a patient-specific computational framework to virtually simulate TAVI in stenotic BAV patients using the Edwards SAPIEN 3 valve (S3) and its improved version SAPIEN 3 Ultra and quantify stent frame deformity as well as the severity of paravalvular leakage (PVL). Specifically, the aortic root anatomy of n.9 BAV patients who underwent TAVI was reconstructed from pre-operative CT imaging. Crimping and deployment of S3 fram…

MaleModels Anatomicmedicine.medical_treatment02 engineering and technology030218 nuclear medicine & medical imaging0302 clinical medicineBicuspid aortic valveBicuspid Aortic Valve DiseaseImage Processing Computer-AssistedCardiac skeletonPrecision MedicineAged 80 and overCardiac cycleSettore ING-IND/34 - Bioingegneria IndustrialeComputer Science Applicationsmedicine.anatomical_structureSurgery Computer-Assistedcardiovascular systemCardiologyFemalemedicine.symptommedicine.medical_specialtyBicuspid aortic valve0206 medical engineeringFinite Element AnalysisBiomedical EngineeringDiastoleTranscatheter Aortic Valve Replacement03 medical and health sciencesFluid-solid interactionInternal medicinePreoperative CaremedicineDeformityHumansIn patientHeart valveAgedRetrospective StudiesTranscatheter aortic valve implantationbusiness.industryStentComputational BiologyFinite-element analysiAortic Valve Stenosismedicine.disease020601 biomedical engineeringbusinessTomography X-Ray ComputedEchocardiography Transesophageal
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Short-Term Precision Error of Bone Strain Index, a New DXA-Based Finite Element Analysis Software for Assessing Hip Strength

2020

Abstract Bone Strain Index (BSI) is a new finite element analysis tool applied to hip dual energy X-ray absorptiometry scans. The aim of this study was to assess the short-term precision error of BSI on the proximal femur, both on a phantom and patients. The International Society for Clinical Densitometry guidelines were followed for short-term precision error assessment. Dual energy X-ray absorptiometry measurements were performed on an anthropomorphic femur phantom that was scanned twice for 30 times, for a total of 60 scans. For the in vivo part, 30 subjects were scanned twice. BSI precision error was compared to that of bone mineral density (BMD). Both for the phantom and the in vivo st…

Malemusculoskeletal diseases0301 basic medicineEndocrinology Diabetes and MetabolismCoefficient of variationFinite Element Analysis030209 endocrinology & metabolismPatient PositioningImaging phantom03 medical and health sciencesAbsorptiometry Photon0302 clinical medicineBone DensitymedicineHumansRadiology Nuclear Medicine and imagingOrthopedics and Sports MedicineFemurFemurDual-energy X-ray absorptiometryAgedFemoral neckBone mineralReproducibilitymedicine.diagnostic_testPhantoms Imagingbusiness.industryReproducibility of Resultsbacterial infections and mycosesmedicine.anatomical_structureOsteoporosisFemale030101 anatomy & morphologyDensitometrybusinessNuclear medicinehuman activitiesSoftwareJournal of Clinical Densitometry
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Design av en offshore gangbru i fiberarmert polymer

2018

Masteroppgave bygg BYG508 - Universitetet i Agder 2018 Innovation and development are essential for a market in demand of faster, lighter and stronger solutions. As a material with high strength to weight ratio, and good possibilities of being premade, fiber reinforced polymers can meet those requirements. However, it has yet to challenge concrete, steel and aluminum as a structural material. This is the underlying challenge for the problem statement of this assignment, to construct an offshore gangway using fiber reinforced polymers. The design concept is based on existing steel and aluminum constructions within the size range of 25- 30m fully extended. To solve the problem and answer the …

Material technologyANSYSVDP::Teknologi: 500::Materialteknologi: 520Fiber reinforced polymersrisk analysisBYG508composite constructionfinite element analysisVDP::Teknologi: 500::Bygningsfag: 530::Arkitektur og bygningsteknologi: 531price estimation
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Static strength and fatigue life of optimized hybrid single lap aluminum–CFRP structural joints

2017

Hybrid bolted/bonded joints are used to assemble structural components, commonly made by carbon fiber reinforced plastics (CFRP), with aluminum frames. Hence, they have become common solutions in a number of modern structural applications in the industrial fields, as well as civil constructions. Unfortunately, due to the lack of understanding of the relationships between the multiple parameters of influence that characterize their mechanical performance, only limited improvement have been achieved so far over classical bonding approaches, in terms of static and fatigue strength. As a result, further studies are needed in order to better exploit the potential of hybrid bolted/bonded joints a…

Materials Chemistry2506 Metals and AlloysMaterials scienceStatic strengthSurfaces Coatings and Filmchemistry.chemical_element02 engineering and technologydelaminationSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchine0203 mechanical engineeringAluminiumMaterials Chemistrymedicinefinite element analysis (FEA)Mechanics of MaterialComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria Industrialebusiness.industryChemistry (all)StiffnessSurfaces and InterfacesGeneral ChemistryStructural engineering021001 nanoscience & nanotechnologyStrength of materialsFatigue limitSurfaces Coatings and FilmsAdhesive joint020303 mechanical engineering & transportschemistryMechanics of MaterialsfatigueAdhesivemedicine.symptom0210 nano-technologybusinessSurfaces and Interfacestructural compositeThe Journal of Adhesion
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Formulation and validation of a reduced order model of 2D materials exhibiting a two-phase microstructure as applied to graphene oxide

2018

Abstract Novel 2D materials, e.g., graphene oxide (GO), are attractive building blocks in the design of advanced materials due to their reactive chemistry, which can enhance interfacial interactions while providing good in-plane mechanical properties. Recent studies have hypothesized that the randomly distributed two-phase microstructure of GO, which arises due to its oxidized chemistry, leads to differences in nano- vs meso‑scale mechanical responses. However, this effect has not been carefully studied using molecular dynamics due to computational limitations. Herein, a continuum mechanics model, formulated based on density functional based tight binding (DFTB) constitutive results for GO …

Materials scienceFinite element analysiMembrane deflection02 engineering and technologyCondensed Matter Physic010402 general chemistry01 natural scienceslaw.inventionMolecular dynamicsTight bindingContinuum damage modellawNano-MonolayerMechanics of MaterialComposite materialGraphene oxideContinuum mechanicsGrapheneMechanical Engineering021001 nanoscience & nanotechnologyCondensed Matter PhysicsMicrostructureRepresentative volume elementFinite element method0104 chemical sciencesMechanics of MaterialsChemical physicsModel development and validation0210 nano-technology
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Engineering the crack path in lattice cellular materials through bio-inspired micro-structural alterations

2019

Abstract A computational study on the fracture behaviour of bio-inspired finite-size lattice configurations is performed in this work. The study draws inspiration from recent investigations aimed at increasing the fracture energy of some materials through small modifications of their microstructure. The main question here is whether it is possible, to some extent, to engineer the crack path in metallic cellular materials through such small micro-structural modifications and how to quantify the effect of alternative strategies. Nature provides several examples of strategies used to delay or arrest damage and crack propagation. One striking example is given by the micro-architecture of severa…

Materials scienceFracture mechanicCellular architectureMechanical EngineeringFinite element analysisBioengineeringFracture mechanicsMetallic lattice02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyMicrostructure01 natural sciencesFinite element method0104 chemical sciencesMicroarchitectureMechanics of MaterialsLattice (order)Chemical Engineering (miscellaneous)Figure of meritWood microstructure0210 nano-technologyBiological systemBio-inspired materialEngineering (miscellaneous)Extreme Mechanics Letters
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Viscoelastic material models for more accurate polyethylene wear estimation

2018

Wear debris from ultra-high-molecular-weight polyethylene components used for joint replacement prostheses can cause significant clinical complications, and it is essential to be able to predict implant wear accurately in vitro to prevent unsafe implant designs continuing to clinical trials. The established method to predict wear is simulator testing, but the significant equipment costs, experimental time and equipment availability can be prohibitive. It is possible to predict implant wear using finite element methods, though those reported in the literature simplify the material behaviour of polyethylene and typically use linear or elastoplastic material models. Such models cannot represe…

Materials scienceJoint replacementmedicine.medical_treatmentWear debris02 engineering and technologyfractional viscoelasticityViscoelasticityModeling and simulationchemistry.chemical_compound0203 mechanical engineeringmedicineMechanics of MaterialUnicompartmental knee arthroplastymaterial modelbusiness.industryApplied MathematicsMechanical EngineeringStructural engineeringPolyethylene021001 nanoscience & nanotechnologyStrength of materialsfinite element analysiFinite element method020303 mechanical engineering & transportschemistryMechanics of MaterialsPolyethylene wearModeling and Simulation0210 nano-technologybusinessunicompartmental knee arthroplasty
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A Numerical Study on Interlaminar Defects Characterization in Fibre Metal Laminates with Flying Laser Spot Thermography

2018

This work describes a numerical study on non-destructive evaluation of interlayer disbond defects in aerospace grade Fibre Metal Laminate sheets (FMLs). A recently proposed infrared non-destructive testing setup is considered, where a continuous laser is moved over the material surface, while the thermal footprint of the moving heat source is acquired, e.g. by an infrared thermal camera. Interlayer disbonds are then detected by analysing the features of the acquired thermograms. The experimental feasibility of this approach has been recently proved. The present work proposes a numerical simulation of the NDT approach, where the material thermal response is analysed and correlated to defects…

Materials scienceNon-destructive testingLaser02 engineering and technology01 natural scienceslaw.inventionlawNondestructive testing0103 physical sciencesThermalMechanics of MaterialComposite materialFibre Metal Laminate010302 applied physicsComputer simulationbusiness.industryFinite element analysis (FEA)Mechanical EngineeringDelamination021001 nanoscience & nanotechnologyLaserIR thermographyCharacterization (materials science)Mechanics of MaterialsDelaminationThermographySolid mechanics0210 nano-technologybusiness
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Inclusion of the periodontal ligament in studies on the biomechanical behavior of fiber post-retained restorations: An in vitro study and three-dimen…

2016

Endodontically treated teeth are known to have reduced structural strength. Periodontal ligament may influence fracture resistance. The purpose of this study was to assess the influence of including the periodontal ligament in biomechanical studies about endodontically treated and restored teeth. Forty human maxillary central incisors were treated endodontically and randomly divided into four groups: non-crowned (with and without an artificial ligament) and crowned (with and without an artificial ligament) with glass-ceramic crowns. All groups received prefabricated glass-fiber posts and a composite resin core. Specimens were tested, under a flexural–compressive load, until failure occurre…

Materials sciencePeriodontal Ligamentmedicine.medical_treatmentDental ResearchFinite Element AnalysisDentistryComposite ResinsCrown (dentistry)03 medical and health sciences0302 clinical medicinestomatognathic systemIncisormedicinePeriodontal fiberIn vitro studyHumansMaxillary central incisorRestorative dentistryOrthodonticsTooth Nonvitalbusiness.industryMechanical EngineeringBiomechanics030206 dentistryGeneral MedicineModels DentalBiomechanical PhenomenaIncisorstomatognathic diseasesmedicine.anatomical_structureLigamentbusiness030217 neurology & neurosurgeryProceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine
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