Search results for "aortic failure"

showing 4 items of 4 documents

On the prospect of serum exosomal miRNA profiling and protein biomarkers for the diagnosis of ascending aortic dilatation in patients with bicuspid a…

2018

Background: To determine the impact of circulating miRNA and protein activity on the severity of ascending aortic dilatation in patients with bicuspid (BAV) and tricuspid aortic valve (TAV). Methods: By reverse transcription polymerase chain reaction, exosomal circulating expression levels (versus healthy aorta) of miRNAs and absolute levels of transforming growth factor β (TGF-β), matrix metalloproteinases (MMP-2, -3 and -9), tissue inhibitors (TIMP-1, -2, -3 and -4), and soluble receptors for advanced glycation end products AGEs (sRAGE) were evaluated in ascending dilated aortas of 71 patients with different valve morphotype. Results: Less-dilated ascending aorta exhibited a specific miRN…

0301 basic medicineAortic valveAdultMalePathologymedicine.medical_specialtyBicuspid aortic valveHeart Valve Diseases030204 cardiovascular system & hematologyMatrix metalloproteinaseExosomesCohort Studies03 medical and health sciences0302 clinical medicineBicuspid aortic valveBicuspid Aortic Valve DiseaseGlycationmedicine.arteryAscending aortamedicineHumansProspective StudiesReceptorTissue inhibitorAortaAgedAortabusiness.industryAortic failure Ascending aortic dilatationGene Expression ProfilingTransforming growth factor-βMicroRNAMiddle Agedmedicine.diseaseAortic AneurysmReverse transcription polymerase chain reactionMatrix metalloproteinaseMicroRNAs030104 developmental biologymedicine.anatomical_structureAortic Valvecardiovascular systemFemaleTricuspid ValveCardiology and Cardiovascular MedicinebusinessBiomarkersInternational journal of cardiology
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Three-dimensional parametric modeling of bicuspid aortopathy and comparison with computational flow predictions

2016

Bicuspid aortic valve (BAV)-associated ascending aneurysmal aortopathy (namely “bicuspid aortopathy”) is a heterogeneous disease making surgeon predictions particularly challenging. Computational flow analysis can be used to evaluate the BAV-related hemodynamic disturbances, which likely lead to aneurysm enlargement and progression. However, the anatomic reconstruction process is time consuming so that predicting hemodynamic and structural evolution by computational modeling is unfeasible in routine clinical practice. The aim of the study was to design and develop a parametric program for three-dimensional (3D) representations of aneurysmal aorta and different BAV phenotypes starting fr…

MalePatient-Specific ModelingBicuspid aortic valveComputed Tomography AngiographyHeart Valve DiseasesBiomedical EngineeringMedicine (miscellaneous)Bioengineering—Three-dimensional anatomic reconstructionElectrocardiographyImaging Three-DimensionalBicuspid Aortic Valve DiseaseSettore ING-IND/12 - Misure Meccaniche E TermicheHumans—Finite-element analysiProspective StudiesAortaAgedRetrospective Studies—Aortic failureHemodynamicsModels CardiovascularComputational BiologySettore ING-IND/34 - Bioingegneria IndustrialeMiddle AgedBiomaterialAortic Aneurysm—Ascending thoracic aortic aneurysmAortic ValveFemaleStress MechanicalSoftware
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Computational modeling of bicuspid aortopathy: Towards personalized risk strategies.

2019

This paper describes current advances on the application of in-silico for the understanding of bicuspid aortopathy and future perspectives of this technology on routine clinical care. This includes the impact that artificial intelligence can provide to develop computer-based clinical decision support system and that wearable sensors can offer to remotely monitor high-risk bicuspid aortic valve (BAV) patients. First, we discussed the benefit of computational modeling by providing tangible examples of in-silico software products based on computational fluid-dynamic (CFD) and finite-element method (FEM) that are currently transforming the way we diagnose and treat cardiovascular diseases. Then…

0301 basic medicineProcess (engineering)Computer scienceFinite Element AnalysisHeart Valve DiseasesWearable computerCoronary Artery Disease030204 cardiovascular system & hematologyClinical decision support system03 medical and health sciences0302 clinical medicineSoftwareBicuspid aortic valveBicuspid Aortic Valve DiseaseArtificial IntelligencemedicineHumansClinical careMolecular Biologybusiness.industryHemodynamicsModels Cardiovascularaortic failure bicuspid aortic valvemedicine.diseaseFractional Flow Reserve Myocardial030104 developmental biologyRisk analysis (engineering)Aortic ValvePersonalized medicineCardiology and Cardiovascular MedicinebusinessJournal of molecular and cellular cardiology
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Constitutive modeling of ascending thoracic aortic aneurysms using microstructural parameters.

2016

Ascending thoracic aortic aneurysm (ATAA) has been associated with diminished biomechanical strength and disruption in the collagen fiber microarchitecture. Additionally, the congenital bicuspid aortic valve (BAV) leads to a distinct extracellular matrix structure that may be related to ATAA development at an earlier age than degenerative aneurysms arising in patients with the morphological normal tricuspid aortic valve (TAV). The purpose of this study was to model the fiber-reinforced mechanical response of ATAA specimens from patients with either BAV or TAV. This was achieved by combining image-analysis derived parameters of collagen fiber dispersion and alignment with tensile testing dat…

Aortic valvemedicine.medical_specialtyMaterials scienceBicuspid aortic valve0206 medical engineeringFinite Element AnalysisBiomedical EngineeringBiophysics02 engineering and technology030204 cardiovascular system & hematologyThoracic aortic aneurysmModels BiologicalArticleExtracellular matrixSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchine03 medical and health sciencesAortic aneurysmFinite Element Analysi0302 clinical medicineBicuspid aortic valveFinite elementmedicine.arteryInternal medicineTensile StrengthAscending aortamedicineHumansAortaMechanical PhenomenaAortaAortic aneurysmAortic Aneurysm ThoracicSettore ING-IND/34 - Bioingegneria IndustrialeBiomechanical strengthExtracellular matrixAnatomymedicine.disease020601 biomedical engineeringBiomechanical Phenomenamedicine.anatomical_structureBiophysicCardiologycardiovascular systemCollagenStress MechanicalAortic failureHumanMedical engineeringphysics
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