Fluidic Device

A fluidic device is an engineered system that transports, controls, or analyzes liquids and gases, often within channels designed for precise flow management. It operates by using pressure differences, pumps, valves, channel geometry, or surface forces to direct fluids and regulate mixing, separation, and delivery. In bioengineering, fluidic devices support microfluidic assays, cell handling, biomolecule analysis, tissue models, and controlled drug delivery. Their ability to manipulate small sample volumes with high spatial and temporal control improves experimental efficiency, enables portable diagnostic platforms, and helps researchers reproduce complex biological environments.

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Research

JoVE Journal - Environment

Combining Fluidic Devices with Microscopy and Flow Cytometry to Study Microbial Transport in Porous Media Across Spatial Scales

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Cited by 2 •

2020

Breakthrough curves (BTCs) are efficient tools to study the transport of bacteria in porous media. Here we introduce tools based on fluidic devices in combination with microscopy and flow cytometric counting to obtain BTCs.

Research

JoVE Journal - Neuroscience
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Scalable Fluidic Injector Arrays for Viral Targeting of Intact 3-D Brain Circuits

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Cited by 10 •

2010

Controlling and analyzing neural circuits in vivo would be facilitated by a technology for delivery of viruses and other reagents to desired 3-dimensional sets of brain regions. We demonstrate customized fluidic injector array fabrication, and delivery of virally-encoded optical sensitizers, enabling optical manipulation of complex brain circuits.

Thermal Measurement Techniques in Analytical Microfluidic Devices

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Cited by 6 •

2015

Here, we present three protocols for thermal measurements in microfluidic devices.

Construction Methods for Hybrid Polycarbonate-Silicon Microfluidic Devices

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2026

This protocol describes three straightforward sealing methods for fabricating a hybrid microfluidic device that integrates polycarbonate and silicon components. By implementing solvent bonding, thermal compression, and mechanical compression strategies, we enable reliable, low-temperature sealing techniques that avoid specialized equipment for hybrid microfluidic devices.

High Speed Droplet-based Delivery System for Passive Pumping in Microfluidic Devices

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Cited by 1 •

2009

A novel microfluidic system has been developed using the phenomenon of passive pumping and a user controlled fluid delivery system. This microfluidic system has the potential to be used in a wide variety of biological applications given its low cost, ease of use, volumetric precision, high speed, repeatability and automation.

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