Audio Recording

Audio recording is the process of capturing sound as a time-varying signal, creating a lasting record of vocalizations, environmental sounds, or other acoustic behavior. A microphone converts changes in air pressure into an electrical signal, which is then amplified, sampled, and stored as digital data for playback or analysis. In behavioral research, recordings can document communication, calls, responses to stimuli, and activity patterns without interrupting observation. Researchers use spectrograms, acoustic measurements, and behavioral coding to compare individuals or conditions, quantify changes over time, and investigate how sound contributes to social interaction, learning, and adaptation.

Audio Recording - Related Videos

Research

JoVE Journal - Medicine

Development of an Audio-based Virtual Gaming Environment to Assist with Navigation Skills in the Blind

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Cited by 33 •

2013

Audio-based Environment Simulator (AbES) is virtual environment software designed to improve real world navigation skills in the blind.

Research

JoVE Journal - Behavior
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Recording Mouse Ultrasonic Vocalizations to Evaluate Social Communication

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Cited by 80 •

2016

Mouse ultrasonic vocalizations are used as proxies to model the genetic bases of vocal communication deficits in mouse models for neuropsychiatric disorders. The present protocol describes three experimental contexts that reliably elicit ultrasonic vocalizations from pups (throughout development) and adult mice (same-sex interactions, male-estrus female interactions).

Research

JoVE Journal - Behavior
Free Sample

Investigating the Effect of Visual Imagery and Learning Shape-Audio Regularities on Bouba and Kiki

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Cited by 3 •

2019

The aim of the presented protocol is to investigate the role of visual imagery in the bouba/kiki-effect, whether training in noticing the bouba/kiki shape-audio regularities affects the bouba/kiki-effect and the recognition of individual bouba and kiki shapes, and finally what mental images these regularities produce.

Juxtacellular Recording and Staining for Precise Mapping of Neural Activity in an Awake Rat

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2025

Source: Moore, J. D., et al. Juxtacellular Monitoring and Localization of Single Neurons within Sub-cortical Brain Structures of Alert, Head-restrained Rats. J. Vis. Exp. (2015)This video demonstrates the method of juxtacellular recording and staining in a restrained, awake rat. The procedure involves recording signals from neurons and injecting dye to precisely localize the recording site. This technique allows accurate mapping of neural activity to the brain's anatomical structure.

Electroencephalography-Based Recording Technique to Record the Epileptiform Activity

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2025

This video describes the technique for recording the epileptiform activity of rhinal cortex-hippocampus organotypic slices ex vivo using electrophysiology or EEG set-up. This helps to study the dynamics and progression of epileptogenesis and screen potential therapeutic targets to treat epilepsy.

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