Direct current stimulation of endothelial monolayers induces a transient and reversible increase in transport due to the electroosmotic effect (original) (raw)

Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier in vitro

Bingmei Fu

Frontiers in Cell and Developmental Biology, 2021

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Direct current stimulation to increase cerebrovascular function

Victor Pulgar

2019

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DBS-relevant electric fields increase hydraulic conductivity of in vitro endothelial monolayers

Abhishek datta

Journal of Neural Engineering, 2010

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Transcranial direct current stimulation induces polarity-specific changes of cortical blood perfusion in the rat

Veit Rohde

Experimental Neurology, 2011

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Direct electric stimulation to increase cerebrovascular function

Victor Pulgar

Frontiers in Systems Neuroscience, 2015

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Cathodal transcranial direct current stimulation induces regional, long-lasting reductions of cortical blood flow in rats

Ali Waghefi

Neurological Research, 2013

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Temporal Characterization of Blood–Brain Barrier Disruption with High-Frequency Electroporation

Jonathan Hinckley

Cancers, 2019

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Electrical parameters of transcranial direct current stimulation that effectively alter cerebral blood flow in experimental animals: a systematic review

EDUARDO JOSE NEPOMUCENO MONTENEGRO

Research, Society and Development

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The morphological and molecular changes of brain cells exposed to direct current electric field stimulation

Martin Lévesque, A. Chabrat, Isabelle St-amour

The international journal of neuropsychopharmacology / official scientific journal of the Collegium Internationale Neuropsychopharmacologicum (CINP), 2014

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Animal models of transcranial direct current stimulation: Methods and mechanisms

Mark P Jackson

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Electric Fields Induced By Transcutaneous And Intracranial Current Injections In The Rat Brain

Mesut Sahin, PhD

2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), 2018

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A phenomological model for capturing cerebrovascular reactivity to anodal transcranial direct current stimulation

D. Guiraud

2013 6th International IEEE/EMBS Conference on Neural Engineering (NER), 2013

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Focal blood-brain-barrier disruption with high-frequency pulsed electric fields

John Rossmeisl

TECHNOLOGY, 2014

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No effect of pulsed magnetic stimulation on the blood-brain barrier in rats

Mads Ravnborg

Neuroscience, 1990

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Transendothelial Electrical Resistance Measurement across the Blood–Brain Barrier: A Critical Review of Methods

Sándor Valkai

Micromachines, 2021

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An Investigation for Large Volume, Focal Blood-Brain Barrier Disruption with High-Frequency Pulsed Electric Fields

Jonathan Hinckley

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MRI Study on Reversible and Irreversible Electroporation Induced Blood Brain Barrier Disruption

David Guez

PLoS ONE, 2012

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Reversible, reproducible reduction of brain water apparent diffusion coefficient by cortical electroshocks

James Prichard

Magnetic Resonance in Medicine, 1997

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Transcranial direct current stimulation: Critical review

Linda Brown

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Electric fields caused by blood flow modulate vascular endothelial electrophysiology and nitric oxide production

Peter Bergethon

Bioelectromagnetics, 2013

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Immediate and after effects of transcranial direct-current stimulation in the mouse primary somatosensory cortex

Guy Cheron

Scientific Reports, 2021

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Prefrontal hemodynamic changes produced by anodal direct current stimulation

Banu Onaral

NeuroImage, 2010

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Pulsed Electromagnetic Field (PEMF) Mitigates High Intracranial Pressure (ICP) Induced Microvascular Shunting (MVS) in Rats

Sean Hagberg

Intracranial Pressure & Neuromonitoring XVI, 2018

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Efflux transporters in the blood–brain interfaces – in vitro and in vivo methods and correlations

Beáta Tóth, Franciska Erdo

Expert Opinion on Drug Metabolism & Toxicology, 2012

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Variation of cerebrospinal fluid in specific regions regulates focality in transcranial direct current stimulation

Rajan Kashyap

Frontiers in Human Neuroscience, 2022

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Increases in microvascular perfusion and tissue oxygenation via pulsed electromagnetic fields in the healthy rat brain

Denis E Bragin

Journal of neurosurgery, 2014

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