Solenoid Valves

Solenoid valves are electrically controlled devices that regulate the flow of liquids or gases, making them useful for precise fluid handling in laboratory and biological systems. When current passes through a coil, it generates a magnetic field that moves a ferromagnetic plunger against a spring or valve seat, opening or closing a flow path; removing the current reverses this action in normally closed or normally open designs. In biology, solenoid valves support automated media delivery, perfusion, microfluidic control, gas regulation, and sampling in cell culture and bioreactor systems. Their rapid, repeatable switching helps researchers maintain controlled conditions and integrate fluidic operations into automated experiments.

Solenoid Valves - Related Videos

Education

JoVE Core - Physics

Solenoids

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2026

A solenoid is a conducting wire coated with an insulating material, wound tightly in the form of a helical coil. The magnetic field for a solenoid is the vector sum of the magnetic field due to its individual turns. For an ideal solenoid, the magnetic field inside is almost uniform and parallel to the solenoid axis, while the magnetic field outside the solenoid is nearly zero. Each turn in a solenoid can be approximated as a circular current carrying coil that generates a dipole moment. The...

Magnetic Field of a Solenoid

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2026

A solenoid is a conducting wire coated with an insulating material, wound tightly in the form of a helical coil. The magnetic field due to a solenoid is the vector sum of the magnetic fields due to its individual turns. Therefore, for an ideal solenoid, the magnetic field within the solenoid is directly proportional to the number of turns per unit length and the current. Conversely, the magnetic field outside the solenoid is zero. Consider a solenoid with 100 turns wrapped around a cylinder of...

Research

JoVE Journal - Bioengineering

Design of a Cyclic Pressure Bioreactor for the Ex Vivo Study of Aortic Heart Valves

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Cited by 7 •

2011

A cyclic pressure bioreactor capable of subjecting heart valve tissue to physiological and pathological pressure conditions has been designed. A LabVIEW program allows users to control pressure magnitude, amplitude and frequency. This device can be used to study the mechanobiology of heart valve tissue or isolated cells.

Research

JoVE Journal - Developmental Biology
Free Sample

Isolation and Characterization of Primary Rat Valve Interstitial Cells: A New Model to Study Aortic Valve Calcification

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Cited by 16 •

2017

This protocol describes the isolation, culture, and calcification of rat-derived valve interstitial cells, a highly physiological in vitro model of calcific aortic valve disease (CAVD). Exploitation of this rat model facilitates CAVD research in exploring the cell and molecular mechanisms that underlie this complex pathological process.

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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