Arduino Microcontroller System

An Arduino microcontroller system is a programmable electronics platform that combines a microcontroller board, software, and connected sensors or actuators to collect data and control physical processes. It works by executing code stored on the board: sensors convert environmental conditions such as temperature, humidity, light, or air quality into electrical signals, which the microcontroller reads and processes before triggering outputs or recording measurements. In environmental research and monitoring, Arduino systems support low-cost data logging, automated control, and prototype development for applications such as weather stations, water-quality monitoring, and greenhouse management. Their accessible hardware and adaptable programming help students and researchers test measurement strategies and build customized field instruments.

Arduino Microcontroller System - Related Videos

Research

JoVE Journal - Bioengineering

A Microcontroller Operated Device for the Generation of Liquid Extracts from Conventional Cigarette Smoke and Electronic Cigarette Aerosol

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2018

Here, we describe a programmable laboratory device that can be used to create extracts of conventional cigarette smoke and electronic cigarette aerosol. This method provides a useful tool for making direct comparisons between conventional cigarettes and electronic cigarettes, and is an accessible entry point into electronic cigarette research.

FRET Microscopy for Real-time Monitoring of Signaling Events in Live Cells Using Unimolecular Biosensors

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Cited by 29 •

2012

Förster resonance energy transfer (FRET) microscopy is a powerful technique for real-time monitoring of signaling events in live cells using various biosensors as reporters. Here we describe how to build a customized epifluorescence FRET imaging system from commercially available components and how to use it for FRET experiments.

Developing a Behavioral Box for Assessing Prepulse Inhibition and Neural Activity in Psychiatric Animal Models

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2025

This protocol presents a microcontroller-based behavioral box to assess prepulse inhibition (PPI) by collecting acceleration data from a sensor beneath the box. This data evaluates sensory gating deficits in socially isolated rats, with an added method for synchronizing data with neuronal activity to advance neurophysiology studies on behavioral disorders.

A Method for Evaluating Timeliness and Accuracy of Volitional Motor Responses to Vibrotactile Stimuli

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Cited by 6 •

2016

This article describes a technique for applying vibrotactile stimuli to the thigh of a human participant, and measuring the accuracy and reaction time of the participant's volitional response for various combinations of stimulation location and frequency.

Research

JoVE Journal - Bioengineering
Free Sample

The Bionic Clicker Mark I & II

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Cited by 2 •

2017

A device was created to demonstrate electromyography-based control to a lay audience. After the success of the initial device, a second device was made with greater flexibility in functionality for demonstration and research purposes. This protocol describes the process of building and calibrating both devices.

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