Search results for "Ventricle"

showing 10 items of 431 documents

Effect of local ischemia on induction of cardiac reentries

1992

In this paper, we study the effects of local ischemia on the process of triggering of reentry mechanism. We present computer simulations based on a cellular automata model of the propagation of the depolarizing wave through a ventricular surface element. We simulate a local area of ischemia where effects of refractory period dispersion are investigated. We use a gaussian distribution of the refractory periods characterized by a mean value and a standard deviation. These simulations show that there exist critical conditions necessary to initiate a reentry mechanism invading progressively the whole ventricle.

Materials scienceRefractory periodIschemiaDepolarizationMechanicsReentrymedicine.diseaseStandard deviationmedicine.anatomical_structureVentriclemedicineSurface elementDispersion (water waves)SimulationProceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society
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Atrial natriuretic peptide and CD34 overexpression in human idiopathic dilated cardiomyopathies.

2007

Idiopathic dilated cardiomyopathy (IDCM) is a primary myocardial disease of unknown cause characterized by ventricular chamber enlargement with impaired contractile function. In familial forms of IDCM, mutations of genes coding for cytoskeletal proteins related to force transmission, such as dystrophin, cardiac actin, desmin, and delta-sarcoglycan, have been identified. Here, we report the data of a retrospective investigation carried out to evaluate the expression of atrial natriuretic peptide (ANP), CD34, troponin T and nestin in the myocardium of patients affected with IDCM. Formalin-fixed and paraffin-embedded consecutive tissue sections from the ventricular wall of 10 human normal hear…

Microbiology (medical)ventricular myocytesCardiomyopathy Dilatedmedicine.medical_specialtyHeart VentriclesCardiomyopathyAntigens CD34Nerve Tissue ProteinsANP; CD34; nestin; troponin T; endothelial cells; ventricular myocytesPathology and Forensic MedicineNestinAtrial natriuretic peptideIntermediate Filament ProteinsTroponin TAntigens CDReference ValuesInternal medicineIdiopathic dilated cardiomyopathymedicineImmunology and AllergyHumansTroponin Tbiologybusiness.industryDilated cardiomyopathyGeneral MedicineNestinmedicine.diseaseTroponinImmunohistochemistryCardiologybiology.proteinendothelial cellDesminCD34AutopsybusinessANPAtrial Natriuretic FactorBiomarkersAPMIS : acta pathologica, microbiologica, et immunologica Scandinavica
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Quantitative study of cardiac wall motion from cine-MRI using frequency-based optical flow methods

2010

The aim of this thesis is to study parietal desynchronisation of the left ventricle from conventional cine-MRI. The first part of our work consisted in the quantification of the left ventricle wall motion of the heart directly from conventional retrospective SSFP type cine-MRI sequences used in the study of cardiac function. The developed methods for measuring displacements within the images are frequency-based optical flow methods. These techniques seem to be particularly adapted to MRI specificities. We have demonstrated their robustness in the event of Rician noise and pixel intensity variations as a function of time. These variations are often associated with the through-plane motion of…

Multicoil MRI[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyIRM multicanauxOptical flowAsynchronismeHeartLeft ventricleMotion estimationFlux optique multicanauxCiné-IRMEstimation de mouvementsVitesse pariétaleFlux optiqueMulticoil optical flow[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyCine-MRIAsynchronismParietal velocityVentricule gauche[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyCoeur
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Different intracellular cation-content present in right and left ventricle dependent on varying extracellular Ca2+-concentrations.

1979

Abstract The different intracellular cation-contents present in the right and left ventricle depend on varying Ca2+-concentrations. The effect of extracellular Ca2+-concentrations varied within the physiological range has been studied on an isolated guinea pig heart preparation, showing excellent stable experimental conditions. By increasing the extracellular Ca2+-concentration from 0.45 m m to 3.6 m m the tissue contents of calcium and potassium were increased dependent on [Ca]e whereas that of Na was reduced. This was due to a change in the composition of the intracellular cations as the extracellular space (inulin) and water-content of the heart muscle tissue were not influenced by incre…

Muscle tissuemedicine.medical_specialtyPotassiumHeart VentriclesGuinea Pigschemistry.chemical_elementCalciumRight ventricular myocardiumGuinea pig heartInternal medicinemedicineExtracellularAnimalsMolecular BiologyMyocardiumSodiumMyocardial ContractionEndocrinologymedicine.anatomical_structurechemistryVentriclePotassiumCalciumCardiology and Cardiovascular MedicineExtracellular SpaceIntracellularJournal of molecular and cellular cardiology
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Adult Neural Stem Cells Are Alerted by Systemic Inflammation through TNF-α Receptor Signaling.

2021

Summary Adult stem cells (SCs) transit between the cell cycle and a poorly defined quiescent state. Single neural SCs (NSCs) with quiescent, primed-for-activation, and activated cell transcriptomes have been obtained from the subependymal zone (SEZ), but the functional regulation of these states under homeostasis is not understood. Here, we develop a multilevel strategy to analyze these NSC states with the aim to uncover signals that regulate their level of quiescence/activation. We show that transitions between states occur in vivo and that activated and primed, but not quiescent, states can be captured and studied in culture. We also show that peripherally induced inflammation promotes a …

NeurogenesisInflammationBiologyReceptors Tumor Necrosis Factor03 medical and health sciences0302 clinical medicineNeural Stem CellsLateral VentriclesGeneticsSubependymal zonemedicineHumansReceptor030304 developmental biologyInflammation0303 health sciencesMicrogliaTumor Necrosis Factor-alphaNeurogenesisCell BiologyNeural stem cellCell biologyAdult Stem Cellsmedicine.anatomical_structurenervous systemReceptors Tumor Necrosis Factor Type IMolecular MedicineSignal transductionmedicine.symptom030217 neurology & neurosurgeryAdult stem cellSignal TransductionCell stem cell
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Implications of irradiating the subventricular zone stem cell niche

2016

Radiation therapy is a standard treatment for brain tumor patients. However, it comes with side effects, such as neurological deficits. While likely multi-factorial, the effect may in part be associated with the impact of radiation on the neurogenic niches. In the adult mammalian brain, the neurogenic niches are localized in the subventricular zone (SVZ) of the lateral ventricles and the dentate gyrus of the hippocampus, where the neural stem cells (NSCs) reside. Several reports showed that radiation produces a drastic decrease in the proliferative capacity of these regions, which is related to functional decline. In particular, radiation to the SVZ led to a reduced long-term olfactory memo…

NeurogénesisNeoplasias encefálicasCarcinogenesisSubventricular zoneNeurogenesis:Diseases::Neoplasms::Neoplasms by Site::Nervous System Neoplasms::Central Nervous System Neoplasms::Brain Neoplasms [Medical Subject Headings]Brain tumorSubventricular zoneBrain damageBiologyBrain tumorsArticle03 medical and health sciencesLateral ventricles0302 clinical medicineRadioterapiaLateral VentriclesGliomamedicineAnimalsHumans:Diseases::Neoplasms::Neoplasms by Histologic Type::Neoplasms Nerve Tissue::Neuroectodermal Tumors::Neoplasms Neuroepithelial::Glioma [Medical Subject Headings]Stem Cell Nichelcsh:QH301-705.5:Anatomy::Cells::Stem Cells::Neural Stem Cells [Medical Subject Headings]Medicine(all)Neural stem cellsRadiationDentate gyrus:Analytical Diagnostic and Therapeutic Techniques and Equipment::Therapeutics::Radiotherapy [Medical Subject Headings]NeurogenesisBrainCell BiologyGeneral MedicineAnatomymedicine.diseaseCélulas-madre neuralesNeural stem cellBrain tumormedicine.anatomical_structurelcsh:Biology (General)nervous system030220 oncology & carcinogenesis:Analytical Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Epidemiologic Methods::Statistics as Topic::Survival Analysis::Disease-Free Survival [Medical Subject Headings]medicine.symptomNeuroscience030217 neurology & neurosurgeryDevelopmental BiologyStem Cell Research
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The human brain subventricular zone: stem cells in this niche and its organization.

2007

The human brain harbors stem cells in the subventricular zone (SVZ). The authors have collected postmortem and intraoperative tissue from adult human patients and found that it contains a unique ribbon of astrocytes that proliferate in vivo and can function as neural stem cells in vitro. Furthermore, they have conducted an anatomic, cytoarchitectural, and ultrastructural study in complete postmortem brains to define the precise organization of the lateral walls of the human lateral ventricles. With immunohistochemistry, the authors mapped a proliferative glial fibrillary acidic protein (GFAP)--positive ribbon of astrocytic cells in the human SVZ. In this article, the authors report on four …

NeuronsGlial fibrillary acidic proteinbiologybusiness.industryHippocampusSubventricular zoneGeneral MedicineHuman brainNeural stem cellCell biologyCerebral VentriclesLateral ventriclesAdult Stem Cellsmedicine.anatomical_structurenervous systemAstrocytesNeural Pathwaysmedicinebiology.proteinImmunohistochemistryHumansSurgeryNeurology (clinical)Stem cellbusinessNeurosurgery clinics of North America
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Architecture and cell types of the adult subventricular zone: in search of the stem cells.

1998

Neural stem cells are maintained in the subventricular zone (SVZ) of the adult mammalian brain. Here, we review the cellular organization of this germinal layer and propose lineage relationships of the three main cell types found in this area. The majority of cells in the adult SVZ are migrating neuroblasts (type A cells) that continue to proliferate. These cells form an extensive network of tangentially oriented pathways throughout the lateral wall of the lateral ventricle. Type A cells move long distances through this network at high speeds by means of chain migration. Cells in the SVZ network enter the rostral migratory stream (RMS) and migrate anteriorly into the olfactory bulb, where t…

NeuronsRostral migratory streamGeneral NeuroscienceStem CellsNeurogenesisSubventricular zoneBiologyOlfactory BulbNeural stem cellCerebral VentriclesNeuroepithelial cellCellular and Molecular Neurosciencemedicine.anatomical_structurenervous systemCell MovementInterneuronsSubependymal zonemedicineAnimalsStem cellNeuroscienceCell DivisionAdult stem cellJournal of neurobiology
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Neurogenesis in adult subventricular zone

2002

Much excitement has been generated by the identification of adult brain regions harboring neural stem cells and their continual generation of new neurons throughout life. This is an important departure from traditional views of the germinal potential of the postnatal brain. However, a more profound

NeuronsRostral migratory streamGeneral NeuroscienceStem CellsNeurogenesisSubventricular zoneCell DifferentiationBiologyMini-ReviewNeural stem cellLateral ventriclesmedicine.anatomical_structureCell MovementNeuroblast migrationAstrocytesLateral VentriclesmedicineSubependymal zoneAnimalsHumansRegenerationStem cellNeuroscience
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A combined ex/in vivo assay to detect effects of exogenously added factors in neural stem cells.

2007

We describe a protocol developed/modified by our group for the ex vivo and in vivo assessment of the response to a soluble factor of murine neural stem cells from the adult sub-ventricular zone (SVZ). The procedure includes several experimental options that can be used either independently or in combination. Potential factor effects on self-renewal, survival and proliferation are assayed by means of neurosphere cultures, with the factor administered directly in vitro to the culture plates (Step 1) or infused in vivo immediately before tissue dissociation (Step 3). We also use bromodeoxiuridine (BrdU) retention to label slowly dividing cells in vivo and subsequently perform two different typ…

NeuronsStaining and LabelingStem CellsImmunocytochemistryTransfectionBiologyImmunohistochemistryGeneral Biochemistry Genetics and Molecular BiologyIn vitroNeural stem cellCell biologyCerebral VentriclesMiceBromodeoxyuridineIn vivoNeurosphereAnimalsIntercellular Signaling Peptides and ProteinsStem cellEx vivoCells CulturedNature protocols
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