Daily Activity Recording

Daily Activity Recording is the systematic documentation of an individual’s actions, movements, or functional behaviors across each day, providing time-based data for analysis in bioengineering and health research. It works by capturing activities at defined intervals or as they occur, using structured logs, observational protocols, wearable sensors, or connected devices to record variables such as duration, frequency, intensity, and context. These records help researchers evaluate mobility, rehabilitation progress, assistive technologies, and human-device interactions under real-world conditions. Consistent activity data can reveal behavioral patterns, support personalized interventions, and strengthen the assessment of biomedical systems over time.

Daily Activity Recording - Related Videos

Research

JoVE Journal - Behavior

Evaluation of a Smartphone-based Human Activity Recognition System in a Daily Living Environment

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Cited by 6 •

2015

A standardized evaluation method was developed for Wearable Mobility Monitoring Systems (WMMS) that includes continuous activities in a realistic daily living environment. Testing with a series of daily living activities can decrease activity recognition sensitivity; therefore, realistic testing circuits are encouraged for valid evaluation of WMMS performance.

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.

Recording and Analysis of Circadian Rhythms in Running-wheel Activity in Rodents

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Cited by 35 •

2013

Circadian rhythms in voluntary wheel-running activity in mammals are tightly coupled to the molecular oscillations of a master clock in the brain. As such, these daily rhythms in behavior can be used to study the influence of genetic, pharmacological, and environmental factors on the functioning of this circadian clock.

Research

JoVE Journal - Medicine
Free Sample

A Method for Quantifying Upper Limb Performance in Daily Life Using Accelerometers

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Cited by 98 •

2017

This protocol describes a method to quantify upper limb performance in daily life using wrist-worn accelerometers.

Recordings of Neural Circuit Activation in Freely Behaving Animals

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Cited by 7 •

2009

Non-invasive measurements of neural activity patterns in freely behaving animals are obtained by combining neurophysiological recordings with high speed videography.

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