Flow Rate Monitoring

Flow rate monitoring is the measurement and tracking of how much fluid passes through a system over a given time, an essential practice for controlling transport in bioengineering devices and processes. Sensors estimate volumetric or mass flow by detecting variables such as pressure differences, fluid velocity, thermal transfer, or transit time, then convert these signals into flow-rate data. In bioreactors, microfluidic platforms, perfusion systems, and medical devices, monitoring helps maintain stable operating conditions, regulate nutrient and oxygen delivery, identify blockages or leaks, and protect sensitive cells or tissues. Reliable measurements also support process optimization, reproducibility, and feedback control in research and clinical technologies.

Flow Rate Monitoring - Related Videos

Education

JoVE Science Education - Engineering

Mass Conservation and Flow Rate Measurements

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2023

Source: Ricardo Mejia-Alvarez and Hussam Hikmat Jabbar, Department of Mechanical Engineering, Michigan State University, East Lansing, MI The purpose of this experiment is to demonstrate the calibration of a flow passage as a flowmeter using a control volume (CV) formulation [1, 2]. The CV analysis focuses on the macroscopic effect of flow on engineering systems, rather than the detailed description that could be achieved with a detailed differential analysis. These two techniques should be...

Research

JoVE Journal - Bioengineering
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Monitoring the Reductive and Oxidative Half-Reactions of a Flavin-Dependent Monooxygenase using Stopped-Flow Spectrophotometry

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Cited by 12 •

2012

We describe the use of a stopped-flow instrument to investigate both the reductive and oxidative half-reactions of Aspergillus fumigatus siderophore A (SidA), a flavin-dependent monooxygenase. We then show the spectra corresponding to the species in the reaction of SidA and we calculate the rate constants for their formation.

Flow Cytometry-based Assay for the Monitoring of NK Cell Functions

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Cited by 12 •

2016

A simple and reliable method is described here to analyze a set of NK cell functions such as degranulation, cytokine and chemokine production within different NK cell subsets.

Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example

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Cited by 6 •

2015

Real-time monitoring allows for fast optimization of reactions performed using continuous-flow processing. Here the preparation of 3-acetylcoumarin is used as an example. The apparatus for performing in-situ Raman monitoring is described, as are the steps required to optimize the reaction.

Zebrafish Rheotaxis Assay: A Method for Measuring Orientation Behavior in Response to Different Water Flow Rates

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2023

This video describes the rheotaxis assay in zebrafish. The method involves the measurement of orientation behavior of zebrafish in response to different water flow rates under the influence of different magnetic fields.

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