Cerebrovascular Events

Cerebrovascular events are acute disorders in which disrupted blood flow or bleeding damages the brain, making them major medical emergencies. Ischemic events occur when a clot or narrowed artery blocks cerebral circulation, while hemorrhagic events result from a ruptured vessel that releases blood into or around brain tissue; both can deprive neurons of oxygen and cause rapid neurological dysfunction. Clinical assessment and brain imaging help distinguish these mechanisms and guide time-sensitive treatment. Studying cerebrovascular events supports early recognition, stroke prevention, rehabilitation planning, and research into therapies that limit brain injury and improve long-term outcomes.

Cerebrovascular Events - Related Videos

Research

JoVE Journal - Biology
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Imaging and 3D Reconstruction of Cerebrovascular Structures in Embryonic Zebrafish

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Cited by 1 •

2014

Imaging of cerebrovascular development in larval zebrafish is described. Techniques to facilitate 3D imaging and modify cerebrovascular development using chemical treatments are also provided.

Research

JoVE Journal - Neuroscience
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Cerebrovascular Casting of the Adult Mouse for 3D Imaging and Morphological Analysis

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Cited by 29 •

2011

In this article, we present a simple, practical technique for cerebrovascular casting that is easy to perform and can be utilized to image the vascular tree of the adult mouse brain.

Research

JoVE Journal - Medicine
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MRI Mapping of Cerebrovascular Reactivity via Gas Inhalation Challenges

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Cited by 79 •

2014

Non-invasive imaging of the brain vasculature’s ability to dilate or constrict may allow a better understanding of cerebrovascular pathophysiology in various neurological diseases. The present report describes a reproducible and patient-comfortable protocol to perform vascular reactivity imaging in humans using magnetic resonance imaging (MRI).

Education

JoVE Science Education - Psychology

Event-related Potentials and the Oddball Task

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California Given the overwhelming amount of information captured by the sensory organs, it is crucial that the brain is able to prioritize the processing of certain stimuli, to spend less effort on what might not be currently important and to attend to what is. One heuristic the brain uses is to ignore stimuli that are frequent or constant in favor of stimuli that are unexpected or unique. Therefore, rare events...

Live Cell Imaging of Early Autophagy Events: Omegasomes and Beyond

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Cited by 13 •

2013

Time-lapse microscopy of fluorescently labeled autophagy markers allows monitoring of the dynamic autophagy response with high temporal resolution. Using specific autophagy and organelle markers in a combination of 3 different colors, we can follow the contribution of a protein to autophagosome formation in a robust spatial and temporal context.

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