Vascular Reactivity

Vascular reactivity is the ability of blood vessels to change their diameter in response to chemical, neural, mechanical, or hormonal stimuli, a function essential for regulating tissue perfusion and blood pressure. It depends largely on signaling between the vascular endothelium and smooth muscle, where mediators such as nitric oxide can promote relaxation and vasodilation, while other signals trigger contraction and vasoconstriction. In medicine, assessing vascular reactivity helps characterize endothelial function and identify abnormalities associated with cardiovascular disease, hypertension, diabetes, and inflammation. These measurements also support research into vascular mechanisms, disease progression, and responses to potential therapies.

Vascular Reactivity - Related Videos

Research

JoVE Journal - Biology

The ex vivo Isolated Skeletal Microvessel Preparation for Investigation of Vascular Reactivity

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Cited by 20 •

2012

An ex vivo preparation is described for isolation of the largest gracilis muscle resistance arterioles for interrogation of both vascular responses to vasoactive stimuli and the assessment of basic structural properties via passive wall mechanics.

Retinal Vascular Reactivity as Assessed by Optical Coherence Tomography Angiography

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Cited by 11 •

2020

This article describes a method for measuring retinal vasculature reactivity in vivo with human subjects using a gas breathing provocation technique to deliver vasoactive stimuli while acquiring retinal images.

Near-Infrared Spectroscopy During Reactive Hyperemia for the Assessment of Lower Limb Vascular Function

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Cited by 3 •

2024

Here, we describe a non-invasive approach using near-infrared spectroscopy to assess reactive hyperemia in the lower limb. This protocol provides a standardized assessment of vascular and microvascular responsiveness that may be used to determine the presence of vascular dysfunction as well as the efficacy of therapeutic interventions.

Research

JoVE Journal - Medicine
Free Sample

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 - Advanced Biology

Detecting Reactive Oxygen Species

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2023

Reactive oxygen species are chemically active, oxygen-derived molecules capable of oxidizing other molecules. Because of their reactive nature, there are many deleterious effects associated with unchecked ROS production, including structural damage to DNA and other biological molecules. However, ROS can also be mediators of physiological signaling. There is accumulating evidence that ROS play significant roles in everything from activation of transcription factors to the mediation of...

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