Search results for "myofiber stress"

showing 2 items of 2 documents

Left Ventricle Biomechanics of Low-Flow, Low-Gradient Aortic Stenosis: A Patient-Specific Computational Model

2022

This study aimed to create an imaging-derived patient-specific computational model of low-flow, low-gradient (LFLG) aortic stenosis (AS) to obtain biomechanics data about the left ventricle. LFLG AS is now a commonly recognized sub-type of aortic stenosis. There remains much controversy over its management, and investigation into ventricular biomechanics may elucidate pathophysiology and better identify patients for valve replacement. ECG-gated cardiac computed tomography images from a patient with LFLG AS were obtained to provide patient-specific geometry for the computational model. Surfaces of the left atrium, left ventricle (LV), and outflow track were segmented. A previously validated …

PhysiologyPhysiology (medical)Settore ING-IND/34 - Bioingegneria Industrialeaortic stenosis finite elememt method myofiber stress realistic simulation ventricle-aortic coupling ventricular functionFrontiers in Physiology
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Impact of Aortic Stenosis on Myofiber Stress: Translational Application of Left Ventricle-Aortic Coupling Simulation

2020

The severity of aortic stenosis (AS) has traditionally been graded by measuring hemodynamic parameters of transvalvular pressure gradient, ejection jet velocity, or estimating valve orifice area. Recent research has highlighted limitations of these criteria at effectively grading AS in presence of left ventricle (LV) dysfunction. We hypothesized that simulations coupling the aorta and LV could provide meaningful insight into myocardial biomechanical derangements that accompany AS. A realistic finite element model of the human heart with a coupled lumped-parameter circulatory system was used to simulate AS. Finite element analysis was performed with Abaqus FEA. An anisotropic hyperelastic mo…

medicine.medical_specialtyPhysiology0206 medical engineeringfinite element methodHemodynamics02 engineering and technology030204 cardiovascular system & hematologylcsh:PhysiologyStress (mechanics)03 medical and health sciences0302 clinical medicinemedicine.arteryInternal medicinePhysiology (medical)medicinemyofiber stressMyocyteAortalcsh:QP1-981business.industryAortic stenosisBiomechanicsrealistic simulationSettore ING-IND/34 - Bioingegneria Industrialemedicine.disease020601 biomedical engineeringStenosismedicine.anatomical_structureVentricleCirculatory systemCardiologyventricular functionventricle-aortic couplingbusiness
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