Cerebral Perfusion

Cerebral perfusion is the delivery of oxygen- and nutrient-rich blood to brain tissue, a process essential for maintaining neuronal function and preventing ischemic injury. It depends on cerebral perfusion pressure, commonly estimated as mean arterial pressure minus intracranial pressure, and is regulated by changes in cerebral vessel diameter, blood pressure, carbon dioxide levels, and metabolic demand. In neuroscience and clinical care, assessing cerebral perfusion helps researchers and clinicians understand brain function and identify impaired blood flow in conditions such as stroke, traumatic brain injury, and intracranial hypertension. Perfusion imaging and monitoring can guide diagnosis, treatment decisions, and efforts to protect vulnerable tissue.

Cerebral Perfusion - Related Videos

Research

JoVE Journal - Neuroscience

Intravascular Perfusion of Carbon Black Ink Allows Reliable Visualization of Cerebral Vessels

0 Views •

Cited by 16 •

2013

Analysis of rodent cerebrovascular anatomy plays an important role in experimental stroke research. In this context, intravascular perfusion with colored latex has been considered as a standard tool for several years. However, this technique implies distinct technical limitations, which undermine its reproducibility. Here, we describe a simple method to visualize cerebral vessels in a reproducible manner. Injection of a mixture of two commercially available carbon black inks through the left...

Research

JoVE Journal - Medicine
Free Sample

Optimized System for Cerebral Perfusion Monitoring in the Rat Stroke Model of Intraluminal Middle Cerebral Artery Occlusion

0 Views •

Cited by 8 •

2013

Cerebral perfusion monitoring has been demonstrated to improve accuracy in ischemic stroke models. Technical difficulties often limit the use of this essential tool for cerebrovascular research. In this video, an optimized system is shown to obtain a single or multi-site hemodynamic monitoring during intraluminal middle cerebral artery occlusion in rats.

Antegrade Perfusion Model: An Ex Vivo Technique to Perfuse Isolated Mouse Heart

0 Views •

2025

This video describes an antegrade perfusion technique of an isolated mouse heart during which a perfusate is injected through the left ventricle, and eventually, it perfuses the entire myocardium. This method can be used to isolate cardiomyocytes from murine models and generate decellularized hearts for further downstream applications.

Isolation and Cannulation of Cerebral Parenchymal Arterioles

0 Views •

Cited by 28 •

2016

This manuscript describes a simple and reproducible protocol for isolation of intracerebral arterioles (a group of blood vessels encompassing parenchymal arterioles, penetrating arterioles and pre-capillary arterioles) from mice, to be used in pressure myography, immunofluorescence, biochemistry, and molecular studies.

Langendorff Retrograde Heart Perfusion: An Ex Vivo Technique to Perfuse Isolated Mouse Heart

0 Views •

2025

In this video, we perform Langendorff retrograde perfusion of an isolated mouse heart. During the procedure, the cardiac activity of the heart is maintained by perfusing it retrogradely with a perfusion solution via the coronary arteries using a cannula inserted into the ascending aorta. The model is used to study the cardiac pathophysiology of the heart.

View All Results

FAQs

Related Topics