Cortical Vasculature Exposure

Cortical vasculature exposure is a neuroscience procedure that makes blood vessels on the brain’s cortical surface accessible for direct observation and experimental manipulation. It typically involves creating a cranial opening and carefully removing or reflecting the overlying dura while preserving vascular structure, tissue integrity, and physiological conditions. This access supports optical imaging of vessel diameter, blood flow, and neurovascular responses, including studies using intravital microscopy or cranial windows. By linking vascular dynamics with neuronal activity, the procedure helps investigate neurovascular coupling, blood-brain barrier function, cerebrovascular disease, and treatment responses in both healthy and pathological brain states.

Cortical Vasculature Exposure - Related Videos

Research

JoVE Journal - Neuroscience
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A Visual Description of the Dissection of the Cerebral Surface Vasculature and Associated Meninges and the Choroid Plexus from Rat Brain

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Cited by 32 •

2012

This video presentation shows a method of harvesting the two most important highly vascular structures that support forebrain function. They are the cerebral surface (superficial) vasculature along with associated meninges (MAV) and the choroid plexus which are necessary for cerebral blood flow and cerebrospinal fluid (CSF) homeostasis.

Research

JoVE Journal - Immunology and Infection

A Method for Labeling Vasculature in Embryonic Mice

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Cited by 14 •

2011

This article describes a method for labeling embryonic skin and thymus blood vessels.

Non-invasive Optical Imaging of the Lymphatic Vasculature of a Mouse

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Cited by 25 •

2013

Recently developed imaging techniques using near-infrared fluorescence (NIRF) may help elucidate the role the lymphatic system plays in cancer metastasis, immune response, wound repair, and other lymphatic-associated diseases.

Pulsed Laser Diode-Based Desktop Photoacoustic Tomography for Monitoring Wash-In and Wash-Out of Dye in Rat Cortical Vasculature

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Cited by 9 •

2019

A compact pulsed laser diode-based desktop photoacoustic tomography (PLD-PAT) system is demonstrated for high-speed dynamic in vivo imaging of small animal cortical vasculature.

Calcium Imaging of Cortical Neurons using Fura-2 AM

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Cited by 108 •

2009

Calcium signals play a key role in many cellular processes including gene expression, survival and differentiation. Here we demonstrate how to perform calcium imaging using Fura-2 AM. Calcium imaging is a valuable tool to study the regulation of intracellular calcium in real time and its regulation of signaling cascades.

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