Search results for "Heart Ventricle"

showing 10 items of 163 documents

Cardiomyocyte apoptosis is related to left ventricular dysfunction and remodelling in dilated cardiomyopathy, but is not affected by growth hormone t…

2007

Background and aims Cardiomyocyte apoptosis (CA) is a common feature of end-stage heart failure. We examined whether CA is associated with cardiac dysfunction and remodelling in heart failure due to dilated cardiomyopathy and studied the effect of human growth hormone (hGH) on CA. Methods and results We studied 38 patients, included in a phase III multi-center, randomised, double-blind and placebo-controlled trial of biosynthetic hGH treatment in dilated cardiomyopathy, at baseline and after 14 weeks treatment. Twenty-six patients received hGH and 12 received placebo. CA was quantified in endomyocardial biopsies using the TUNEL assay. CA correlated with left ventricular size (r=0.43, p=0.00…

Cardiomyopathy DilatedMalemedicine.medical_specialtyHeart VentriclesApoptosisPlaceboVentricular Dysfunction LeftInterquartile rangeSomatomedinsInternal medicinemedicineHumansMyocytes CardiacTUNEL assayEjection fractionbusiness.industryHuman Growth HormoneDilated cardiomyopathyStroke VolumeMiddle Agedmedicine.diseaseFas receptorImmunohistochemistryGrowth hormone treatmentEndocrinologyHeart failureCardiologyFemaleCardiology and Cardiovascular MedicinebusinessEuropean journal of heart failure
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Automatic left ventricle volume calculation with explainability through a deep learning weak-supervision methodology

2021

[EN] Background and objective: Magnetic resonance imaging is the most reliable imaging technique to assess the heart. More specifically there is great importance in the analysis of the left ventricle, as the main pathologies directly affect this region. In order to characterize the left ventricle, it is necessary to extract its volume. In this work we present a neural network architecture that is capable of directly estimating the left ventricle volume in short axis cine Magnetic Resonance Imaging in the end-diastolic frame and provide a segmentation of the region which is the basis of the volume calculation, thus offering explain-ability to the estimated value. Methods: The network was des…

Computer scienceHeart VentriclesMagnetic Resonance Imaging CineHealth InformaticsWeak supervisionTECNOLOGIA ELECTRONICAsymbols.namesakeMagnetic resonance imagingSegmentationApproximation errorImage Processing Computer-AssistedHumansSegmentationBasis (linear algebra)Artificial neural networkbusiness.industryDeep learningPattern recognitionHeartDeep learningLeft ventricleExplainabilityPearson product-moment correlation coefficientComputer Science ApplicationsTest setsymbolsArtificial intelligenceNeural Networks ComputerbusinessSoftwareVolume (compression)
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Atrial activity extraction for atrial fibrillation analysis using blind source separation.

2004

This contribution addresses the extraction of atrial activity (AA) from real electrocardiogram (ECG) recordings of atrial fibrillation (AF). We show the appropriateness of independent component analysis (ICA) to tackle this biomedical challenge when regarded as a blind source separation (BSS) problem. ICA is a statistical tool able to reconstruct the unobservable independent sources of bioelectric activity which generate, through instantaneous linear mixing, a measurable set of signals. The three key hypothesis that make ICA applicable in the present scenario are discussed and validated: 1) AA and ventricular activity (VA) are generated by sources of independent bioelectric activity; 2) AA …

Computer scienceSpeech recognitionHeart VentriclesBiomedical EngineeringSignalBlind signal separationSensitivity and SpecificityElectrocardiographyRobustness (computer science)Heart Conduction SystemAtrial FibrillationmedicineHumansDiagnosis Computer-AssistedHeart AtriaPrincipal Component Analysismedicine.diagnostic_testBody Surface Potential MappingContrast (statistics)Reproducibility of ResultsAtrial fibrillationmedicine.diseaseIndependent component analysisKurtosisElectrocardiographyAlgorithmsIEEE transactions on bio-medical engineering
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Graph cut-based method for segmenting the left ventricle from MRI or echocardiographic images

2017

International audience; In this paper, we present a fast and interactive graph cut method for 3D segmentation of the endocardial wall of the left ventricle (LV) adapted to work on two of the most widely used modalities: magnetic resonance imaging (MRI) and echocardiography. Our method accounts for the fundamentally different nature of both modalities: 3D echocardiographic images have a low contrast, a poor signal-to-noise ratio and frequent signal drop, while MR images are more detailed but also cluttered and contain highly anisotropic voxels. The main characteristic of our method is to work in a 3D Bezier coordinate system instead of the original Euclidean space. This comes with several ad…

Convex hullHeart VentriclesEnergy MinimizationCoordinate systemEchocardiography Three-DimensionalHealth InformaticsBézier curve02 engineering and technology[SDV.IB.MN]Life Sciences [q-bio]/Bioengineering/Nuclear medicinecomputer.software_genreAutomated Segmentation030218 nuclear medicine & medical imaging[ SDV.IB.MN ] Life Sciences [q-bio]/Bioengineering/Nuclear medicine03 medical and health sciences0302 clinical medicineVoxelCut0202 electrical engineering electronic engineering information engineering[INFO.INFO-IM]Computer Science [cs]/Medical ImagingMagnetic-Resonance ImagesHumansRadiology Nuclear Medicine and imagingComputer vision[ SDV.IB ] Life Sciences [q-bio]/BioengineeringCardiac MriImage gradientMathematicsWhole MyocardiumLeft ventricular 3-D segmentationRadiological and Ultrasound Technology[ INFO.INFO-IM ] Computer Science [cs]/Medical ImagingEuclidean spacebusiness.industryComputer Graphics and Computer-Aided DesignMagnetic Resonance ImagingEchocardiographyConstrained Level-SetGraph (abstract data type)020201 artificial intelligence & image processing[SDV.IB]Life Sciences [q-bio]/BioengineeringComputer Vision and Pattern RecognitionArtificial intelligencebusiness2d-EchocardiographycomputerAlgorithmsGraph cutMRI
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Extracellular site of action of phenylalkylamines on L-type calcium current in rat ventricular myocytes.

1995

The effects of the phenylalkylamines verapamil, gallopamil, and devapamil on L-type calcium currents (ICa) were studied in ventricular myocytes from rat hearts using the whole-cell patch-clamp technique. In particular, the question was addressed, whether the pharmacological binding sites for these drugs were located at the inner and/or at the outer surface of the cell membrane. Therefore, tertiary verapamil, gallopamil, and devapamil and their corresponding quaternary derivatives were applied either from the outside or the inside of the cell membrane. Extracellular application of verapamil, gallopamil and devapamil (each at 3 microM) reduced ICa to 16.1 +/- 8.6%, 11 +/- 8.9%, and 9.3 +/- 6%…

DevapamilGallopamilPatch-Clamp TechniquesHeart Ventricleschemistry.chemical_elementPharmacologyCalciumRats Sprague-Dawleychemistry.chemical_compoundmedicineExtracellularAnimalsPatch clampGallopamilPharmacologyBinding SitesChemistryCalcium channelCell MembraneGeneral MedicineCalcium Channel BlockersRatsVerapamilcardiovascular systemVerapamilCalcium ChannelsIntracellularmedicine.drugNaunyn-Schmiedeberg's archives of pharmacology
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New epicardial mapping electrode with warming/cooling function for experimental electrophysiology studies

2010

Cardiac electrical activity is influenced by temperature. In experimental models, the induction of hypothermia and/or hyperthermia has been used for the study of mechanisms of cardiac arrhythmia. A system that allows for localized, controlled induction, besides simultaneously recording electrical activity in the same induced area, needs to be developed ad hoc. This article describes the construction and application of a new system capable of locally modifying the epicardial temperature of isolated hearts and of carrying out cardiac mapping with sufficient spatial resolution. The system is based on a thermoelectric refrigerator and an array of 128 stainless steel unipolar electrodes in encap…

Epicardial MappingMaterials scienceCardiac electrophysiologyHeart VentriclesTemperatureBiomedical EngineeringBiophysicsCardiac arrhythmiamedicine.diseaseQT intervalElectrophysiological PhenomenaElectrophysiologymedicine.anatomical_structureHeart RateVentricleVentricular FibrillationElectrodeVentricular fibrillationmedicineAnimalsVentricular FunctionSinus rhythmRabbitsBiomedical engineeringMedical Engineering & Physics
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A rule‐based method to model myocardial fiber orientation in cardiac biventricular geometries with outflow tracts

2019

Rule-based methods are often used for assigning fiber orientation to cardiac anatomical models. However, existing methods have been developed using data mostly from the left ventricle. As a consequence, fiber information obtained from rule-based methods often does not match histological data in other areas of the heart such as the right ventricle, having a negative impact in cardiac simulations beyond the left ventricle. In this work, we present a rule-based method where fiber orientation is separately modeled in each ventricle following observations from histology. This allows to create detailed fiber orientation in specific regions such as the endocardium of the right ventricle, the inter…

FOS: Computer and information sciencesmedicine.medical_specialtyHeart VentriclesBiomedical EngineeringFOS: Physical sciencesVolume mesh030204 cardiovascular system & hematology[INFO.INFO-AI]Computer Science [cs]/Artificial Intelligence [cs.AI]030218 nuclear medicine & medical imagingComputational Engineering Finance and Science (cs.CE)03 medical and health sciences0302 clinical medicineRule-based methodInternal medicine[INFO.INFO-IM]Computer Science [cs]/Medical ImagingmedicineHumansComputer SimulationElectrophysiological simulationsInterventricular septumOutflow tractComputer Science - Computational Engineering Finance and ScienceMolecular BiologyEndocardiumFiber (mathematics)Orientation (computer vision)MyocardiumApplied MathematicsFiber orientationOutflow tract ventricular arrhythmiaModels CardiovascularRule-based systemSeptumMagnetic Resonance Imaging[INFO.INFO-MO]Computer Science [cs]/Modeling and SimulationPhysics - Medical PhysicsElectrophysiological Phenomenamedicine.anatomical_structureComputational Theory and MathematicsVentricleModeling and Simulationcardiovascular systemCardiologyOutflowMedical Physics (physics.med-ph)SoftwareGeologyInternational Journal for Numerical Methods in Biomedical Engineering
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Influence of contrast agent dose and image acquisition timing on the quantitative determination of nonviable myocardial tissue using delayed contrast…

2004

BACKGROUND: Delayed contrast-enhanced magnetic resonance imaging (ceMRI) has been shown to identify areas of irreversible myocardial injury due to infarction (MI) with high spatial resolution, allowing precise quantification of nonviable (hyperenhanced) myocardium. The aim of our study was to investigate the size of nonviable myocardium quantitatively as a function of time post-contrast when inversion time is held constant in patients post-myocardial infarction using two contrast agent (CA) doses. METHODS: Nine patients with chronic MI underwent two MR scans on a 1.5 Tesla system. Contrast-enhanced MRI data in two short-axis (SA) slices were continuously acquired until 40 minutes after CA i…

Gadolinium DTPAMaleTime FactorsHeart VentriclesGadoliniummedia_common.quotation_subjectMyocardial InfarctionContrast Mediachemistry.chemical_elementInfarctionReference ValuesmedicineHumansContrast (vision)Image acquisitionRadiology Nuclear Medicine and imagingMyocardial infarctionContrast-enhanced Magnetic Resonance Imagingmedia_commonDose-Response Relationship DrugRadiological and Ultrasound Technologymedicine.diagnostic_testbusiness.industryMyocardiumMagnetic resonance imagingMiddle AgedImage Enhancementmedicine.diseaseMagnetic Resonance ImagingQuantitative determinationchemistryCardiology and Cardiovascular MedicineNuclear medicinebusiness
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Chronic Apical and Nonapical Right Ventricular Pacing in Patients with High-Grade Atrioventricular Block: Results of the Right Pace Study

2018

Objective. The aim of the study was to compare the two approaches to chronic right ventricular pacing currently adopted in clinical practice: right ventricular apical (RVA) and non-RVA pacing. Background. Chronic RVA pacing is associated with an increased risk of atrial fibrillation, morbidity, and even mortality. Non-RVA pacing may yield more physiologic ventricular activation and provide potential long-term benefits and has recently been adopted as standard procedure at many implanting centers. Methods. The Right Pace study was a multicenter, prospective, single-blind, nonrandomized trial involving 437 patients indicated for dual-chamber pacemaker implantation with a high percentage of RV…

Genetics and Molecular Biology (all)Malemedicine.medical_specialtyArticle SubjectImmunology and Microbiology (all)Heart Ventricleslcsh:Medicine030204 cardiovascular system & hematologyBiochemistryGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineInternal medicinemedicine80 and overHumansIn patientSingle-Blind Method030212 general & internal medicineInterventricular septumProspective StudiesAtrioventricular BlockAgedAged 80 and overGeneral Immunology and Microbiologybusiness.industrylcsh:RCardiac Pacing ArtificialReproducibility of ResultsAtrial fibrillationGeneral MedicineVentricular pacingmedicine.diseaseIncreased riskmedicine.anatomical_structureHigh grade atrioventricular blockTreatment OutcomeBaseline characteristicsHeart failureArtificialCardiologyClinical StudyQuality of LifeCardiac PacingFemalebusinessAged; Aged 80 and over; Female; Heart Ventricles; Humans; Male; Prospective Studies; Quality of Life; Reproducibility of Results; Single-Blind Method; Treatment Outcome; Atrioventricular Block; Cardiac Pacing Artificial; Biochemistry Genetics and Molecular Biology (all); Immunology and Microbiology (all)BioMed Research International
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Estimation of Purkinje trees from electro-anatomical mapping of the left ventricle using minimal cost geodesics

2015

The electrical activation of the heart is a complex physiological process that is essential for the understanding of several cardiac dysfunctions, such as ventricular tachycardia (VT). Nowadays, patient-specific activation times on ventricular chambers can be estimated from electro-anatomical maps, providing crucial information to clinicians for guiding cardiac radio-frequency ablation treatment. However, some relevant electrical pathways such as those of the Purkinje system are very difficult to interpret from these maps due to sparsity of data and the limited spatial resolution of the system. We present here a novel method to estimate these fast electrical pathways from the local activati…

GeodesicHeart VentriclesAction PotentialsHealth InformaticsVentricular tachycardiaSensitivity and SpecificityVentricular Function LeftPurkinje FibersImage Interpretation Computer-AssistedmedicineHumansRadiology Nuclear Medicine and imagingImage resolutionFast marching methodSimulationMathematicsRadiological and Ultrasound Technologybusiness.industryBody Surface Potential MappingProcess (computing)Reproducibility of ResultsPattern recognitionImage Enhancementmedicine.diseaseComputer Graphics and Computer-Aided Designmedicine.anatomical_structureRadiology Nuclear Medicine and imagingVentricleSimulated dataFeasibility StudiesComputer Vision and Pattern RecognitionArtificial intelligencebusinessDistance transformAlgorithmsMedical Image Analysis
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