Microfluidic Circuit

A microfluidic circuit is an interconnected network of microscale channels, chambers, and fluid-control elements that routes and manipulates tiny liquid volumes, enabling precise, low-volume experiments. In neuroscience, pressure-driven flow, channel resistance, and integrated valves or pumps regulate the delivery of media, drugs, signaling molecules, or other inputs while compartmentalized chambers control where fluids and cells interact. These systems can create chemical gradients, isolate neuronal cell bodies from axons, maintain perfusion, and support controlled stimulation or sampling. By reproducing aspects of tissue organization in a compact platform, microfluidic circuits enable studies of neuronal communication, neurotoxicity, disease mechanisms, and interactions between neural cells and other tissues.

Microfluidic Circuit - Related Videos

Research

JoVE Journal - Biology

Studies of Bacterial Chemotaxis Using Microfluidics - Interview

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Cited by 1 •

2007

Education

JoVE Science Education - Physics

RC/RL/LC Circuits

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2023

Source: Yong P. Chen, PhD, Department of Physics & Astronomy, College of Science, Purdue University, West Lafayette, IN Capacitors (C), inductors (L), and resistors (R) are each an important circuit element with distinct behaviors. A resistor dissipates energy and obeys Ohm's law, with its voltage proportional to its current. A capacitor stores electrical energy, with its current proportional to the rate of change of its voltage, while an inductor stores magnetic energy, with its voltage...

High Throughput Microfluidic Rapid and Low Cost Prototyping Packaging Methods

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2013

In this article we describe different techniques for microfluidic rapid prototyping platforms. The proposed techniques are based on ultraviolet (UV) sensitive and temperature curing epoxies, polydimethylsiloxane (PDMS) based tubing, wire-bonding, and anisotropic adhesive films. The assembling procedures presented are developed for both one-time use devices as well as reusable microfluidic systems.

Multi-step Variable Height Photolithography for Valved Multilayer Microfluidic Devices

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Cited by 26 •

2017

Multilayer microfluidic devices often involve the fabrication of master molds with complex geometries for functionality. This article presents a complete protocol for multi-step photolithography with valves and variable height features tunable to any application. As a demonstration, we fabricate a microfluidic droplet generator capable of producing hydrogel beads.

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