Microperfusion Assessment

Microperfusion assessment is the quantitative evaluation of fluid flow and transport through micro-scale vascular networks, tissues, or engineered constructs, where local perfusion strongly influences cell survival and function. In bioengineering, it typically combines controlled perfusion with measurements such as flow rate, pressure, imaging, or tracer movement to determine how efficiently fluid reaches and exchanges across small channels. These measurements help characterize engineered blood vessels, organ-on-chip systems, and tissue scaffolds, while revealing transport limitations, nonuniform perfusion, or vessel dysfunction. By linking microscale flow behavior to biological performance, microperfusion assessment supports device optimization, disease modeling, and the development of more functional tissue-engineered systems.

Microperfusion Assessment - Related Videos

Research

JoVE Journal - Cancer Research

Use of Cerebral Open-Flow Microperfusion for the Longitudinal Collection of Interstitial Fluid in an Animal Model of Glioblastoma

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2025

In vivo, intercellular communications underpinning many central nervous system diseases, such as glioblastoma (GBM), are notoriously difficult to measure and characterize. Here, we describe procedures of cerebral open-flow microperfusion (cOFM) that can be employed to sample interstitial fluid components in a longitudinal animal model of GBM.

Real-Time Assessment of Spinal Cord Microperfusion in a Porcine Model of Ischemia/Reperfusion

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Cited by 5 •

2020

Spinal cord microcirculation plays a pivotal role in spinal cord injury. Most methods do not allow real-time assessment of spinal cord microcirculation, which is essential for the development of microcirculation-targeted therapies. Here, we propose a protocol using Laser-Doppler-Flow Needle probes in a large animal model of ischemia/reperfusion.

Microperfusion Technique to Investigate Regulation of Microvessel Permeability in Rat Mesentery

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Cited by 3 •

2015

The modified Landis technique enables paired measurement of the hydraulic conductivity of individual microvessels in the mesentery of normal and genetically modified rats under control and test conditions using microperfusion techniques. It provides a convenient method to evaluate mechanisms that regulate microvessel permeability and transvascular exchange under physiological conditions.

Neurotoxicity Assessment in Adult Danio rerio using a Battery of Behavioral Tests in a Single Tank

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Cited by 3 •

2023

Here, we present a comprehensive behavioral test battery, including the novel tank, Shoaling, and social preference tests, to effectively determine the potential neurotoxic effects of chemicals (e.g., methamphetamine and glyphosate) on adult zebrafish using a single tank. This method is relevant to neurotoxicity and environmental research.

Systematic Assessment of Well-Being in Mice for Procedures Using General Anesthesia

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Cited by 25 •

2018

We developed a protocol to assess well-being in mice during procedures using general anesthesia. A series of behavioral parameters indicating levels of well-being as well as glucocorticoid metabolites were analyzed. The protocol can serve as a general aid to estimate the degree of severity in a scientific, animal-centered manner.

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