Microvascular Blood Volume

Microvascular blood volume is the amount of blood contained within the smallest vessels, including arterioles, capillaries, and venules, where tissue perfusion and exchange occur. It changes as vascular smooth muscle regulates vessel diameter and as local pressure, flow, and oxygen demand alter capillary recruitment and blood distribution. In medicine, assessing microvascular blood volume helps characterize tissue oxygen delivery and vascular function in conditions such as shock, inflammation, diabetes, and cardiovascular disease. Measurements obtained through imaging, tracer-based methods, or other hemodynamic techniques can support disease monitoring, treatment evaluation, and research on impaired microcirculation.

Microvascular Blood Volume - Related Videos

Research

JoVE Journal - Medicine
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Stretch in Brain Microvascular Endothelial Cells (cEND) as an In Vitro Traumatic Brain Injury Model of the Blood Brain Barrier

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Cited by 18 •

2013

In vitro traumatic brain injury models are being developed to reproduce in vivo brain deformation. Stretch-induced injury has been employed for astrocytes, neurons, glial cells, aortic, and brain endothelial cells. However, our system uses a blood brain barrier (BBB) model that possesses properties constituting a legitimate model of the BBB to establish an in vitro TBI model.

Research

JoVE EoE - Neuroimaging

Measuring Cerebral Blood Volume in the Auditory Cortex Using Vascular Space Occupancy

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2025

Position a human participant’s head within the head coil of a functional magnetic resonance imaging, or fMRI, system.Employ vascular space occupancy or VASO, a technique to measure changes in cerebral blood volume, or CBV, the blood volume within the brain.Begin by applying an inversion recovery pulse to suppress signals from blood, allowing only signals from the surrounding tissue within the region to be detected.Next, use MRI-compatible earbuds to deliver auditory stimuli.The stimuli reach...

Endothelialized Microfluidics for Studying Microvascular Interactions in Hematologic Diseases

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Cited by 52 •

2012

A method to culture an endothelial cell monolayer throughout the entire inner 3D surface of a microfluidic device with microvascular-sized channels (<30 μm) is described. This in vitro microvasculature model enables the study of biophysical interactions between blood cells, endothelial cells, and soluble factors in hematologic diseases.

Research

JoVE Journal - Biology
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Measuring Blood Pressure in Mice using Volume Pressure Recording, a Tail-cuff Method

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Cited by 175 •

2009

The CODA 8-Channel High Throughput Non-Invasive Blood Pressure system measures the blood pressure in up to 8 mice or rats simultaneously. This tail-cuff system uses Volume Pressure Recording (VPR) to measure the blood pressure by determining the tail blood volume.

Laser Doppler: A Tool for Measuring Pancreatic Islet Microvascular Vasomotion In Vivo

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Cited by 7 •

2018

Pancreatic islet microvascular vasomotion regulates islet blood distribution and maintains the physiological function of islet β cells. This protocol describes using a laser Doppler monitor to determine the functional status of pancreatic islet microvascular vasomotion in vivo and to assess the contributions of pancreatic islet microcirculation to pancreatic-related diseases.

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