Search results for "Vascular flow"

showing 4 items of 4 documents

NO Hemodynamic Speed Limit for Hippocampal Neurogenesis

2019

Newborn dentate granule cells (DGCs) are continuously generated in the adult brain. The mechanism underlying how the adult brain governs hippocampal neurogenesis remains poorly understood. In this study, we investigated how coupling of pre-existing neurons to the cerebrovascular system regulates hippocampal neurogenesis. Using a new in vivo imaging method in freely moving mice, we found that hippocampus-engaged behaviors, such as exploration in a novel environment, rapidly increased microvascular blood flow velocity in the dentate gyrus. Importantly, blocking this exploration-elevated blood flow dampened experience-induced hippocampal neurogenesis. By imaging the neurovascular niche in comb…

0301 basic medicineNeurogenesisGeneral NeuroscienceNeurogenesisHemodynamicsHemodynamicsHippocampal formationBiologyHippocampusArticleCoupling (electronics)03 medical and health sciences030104 developmental biology0302 clinical medicinemedicine.anatomical_structurenervous systemNeuroblastVascular flowDentate GyrusmedicineNeurovascular CouplingNeuronNeuroscience030217 neurology & neurosurgeryNeuron
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Ultrasonographic Detection of Vascularity of Focal Breast Lesions: Microvascular Imaging Versus Conventional Color and Power Doppler Imaging.

2021

To compare microvascular flow imaging (MVFI) to conventional Color-Doppler (CDI) and Power-Doppler (PDI) imaging in the detection of vascularity of Focal Breast Lesions (FBLs). A total of 180 solid FBLs (size: 3.5–45.2 mm) detected in 180 women (age: 21–87 years) were evaluated by means of CDI, PDI, and MVFI. Two blinded reviewers categorized lesion vascularity in absent or present, and vascularity pattern as (a) internal; (b) vessels in rim; (c) combined. The presence of a “penetrating vessel” was assessed separately. Differences in vascularization patterns (chi2 test) and intra- and inter-observer agreement (Fleiss method) were calculated. ROC analysis was performed to assess performance…

AdultBreast Neoplasms01 natural sciencesSensitivity and Specificity030218 nuclear medicine & medical imagingDiagnosis Differential03 medical and health sciencessymbols.namesakePower dopplerYoung Adult0302 clinical medicineVascularity0103 physical sciencesmedicineHumansRadiology Nuclear Medicine and imagingBreastUltrasonography Doppler Color010301 acousticsAgedAged 80 and overRadiological and Ultrasound Technologybusiness.industryUltrasonography DopplerMiddle AgedROC CurvesymbolsFemalebreast Doppler imaging microvessels ultrasonographymedicine.symptomUltrasonographyNuclear medicinebusinessDoppler effectMicrovascular flowUltrasonic imaging
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Novel Simulation Model with Pulsatile Flow System for Microvascular Training, Research, and Improving Patient Surgical Outcomes

2020

Background Simulation allows surgical trainees to acquire surgical skills in a safe environment. With the aim of reducing the use of animal experimentation, different alternative nonliving models have been pursued. However, one of the main disadvantages of these nonliving models has been the absence of arterial flow, pulsation, and the ability to integrate both during a procedure on a blood vessel. In the present report, we have introduced a microvascular surgery simulation training model that uses a fiscally responsible and replicable pulsatile flow system. Methods We connected 30 human placentas to a pulsatile flow system and used them to simulate aneurysm clipping and vascular anastomosi…

Models AnatomicMicrosurgeryPlacentamedicine.medical_treatmentNeurosurgeryPulsatile flowMicrovascular surgeryAnastomosisNeurosurgical ProceduresSimulation training03 medical and health sciences0302 clinical medicineAneurysmPregnancymedicineHumansSimulation Trainingbusiness.industryAnastomosis SurgicalClipping (medicine)Microsurgerymedicine.diseaseAneurysmPulsatile Flow030220 oncology & carcinogenesisVascular flowFemaleSurgeryNeurology (clinical)business030217 neurology & neurosurgeryBiomedical engineeringWorld Neurosurgery
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Developments in numerical modelling of cardiovascular fluid dynamics

1998

numerical simulationCardiovascular flowarterial flowCFDSettore BIO/09 - FisiologiaSettore ING-IND/19 - Impianti Nucleari
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