Search results for "flow pattern"

showing 2 items of 12 documents

Role of Hemodynamic Forces in Unruptured Intracranial Aneurysms: An Overview of a Complex Scenario.

2017

Background An understanding of the natural history of unruptured intracranial aneurysms (IAs) has always played a critical role in presurgical or endovascular planning, to avoid possibly fatal events. Size, shape, morphology, and location are known risk factors for rupture of an aneurysm, but morphologic parameters alone may not be sufficient to perform proper rupture risk stratification. Methods We performed a systematic PubMed search and focused on hemodynamics forces that may influence aneurysmal initiation, growth, and rupture. Results We included 223 studies describing several hemodynamic parameters related to aneurysm natural history. In these studies, different modalities of aneurysm…

medicine.medical_specialty030218 nuclear medicine & medical imagingWall shear stress03 medical and health sciences0302 clinical medicineAneurysmComputational fluid dynamicmedicineHumansRupture riskHemodynamicIntensive care medicineCerebral aneurysmHemodynamic forcesModalitiesbusiness.industryHemodynamicsIntracranial AneurysmHemodynamics Intracranial aneurysms Cerebral aneurysm Wall shear stressCcomputational fluid dynamics.Flow patternmedicine.diseaseSurgeryCerebral AngiographyNatural historyCerebrovascular CirculationTreatment strategySurgeryNeurology (clinical)business030217 neurology & neurosurgeryWorld neurosurgery
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Effect of the submerged vegetation distribution on flow characteristics and lateral dispersion: Experimental analysis at the apex section of a meande…

2020

Understanding of how the vegetation distribution influences flow patterns and turbulence structure is extremely important to analyse environmental processes as the sediment transport and the mixing of transported quantities. In the present paper attention is focused on the effect of flexible vegetation on flow characteristics and dispersion processes at the apex section of a large-amplitude meandering bend. The analysis is conducted with the aid of data collected in a laboratory meandering flume both in the absence of vegetation on the bed and in the presence of real and flexible vegetation on the bed. Results show that the presence of vegetation affects both the lateral dispersion coeffici…

turbulenceFlow (psychology)Settore ICAR/01 - IdraulicaApex (geometry)FlumevegetationSection (archaeology)medicineGeotechnical engineeringflow patternmedicine.symptomVegetation (pathology)Dispersion (water waves)Geology
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