Daily Activity Rhythms

Daily activity rhythms are recurring patterns in an organism’s behavior or physiological activity across a 24-hour cycle, shaped by internal timing systems and environmental conditions. A biological clock coordinates these rhythms, while light, temperature, food availability, and interactions with other organisms can reset or modify their timing through cues called zeitgebers. In environmental research, measuring when animals move, feed, rest, or reproduce helps reveal how species use habitats and respond to seasonal change, artificial light, temperature shifts, and other human-driven pressures. These observations support biodiversity monitoring, ecosystem assessment, and predictions of how environmental change may alter species interactions and survival.

Daily Activity Rhythms - Related Videos

Research

JoVE Journal - Neuroscience

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 - Neuroscience
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Assaying Locomotor Activity to Study Circadian Rhythms and Sleep Parameters in Drosophila

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Cited by 165 •

2010

We describe procedures for recording daily locomotor activity rhythms of Drosophila and subsequent data analysis. Locomotor activity rhythms are a reliable behavioral output of animal circadian clocks and are used as the standard readout of clock function when studying circadian mutants or examining how the environment regulates the circadian system.

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.

EEG Mu Rhythm in Typical and Atypical Development

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Cited by 3 •

2014

Assessment of the EEG mu rhythm provides a unique methodology for examining brain activity and when combined with behaviorally based assays, can be a powerful tool for elucidating aspects of social cognition, such as imitation, in clinical populations.

Design and Analysis of Temperature Preference Behavior and its Circadian Rhythm in Drosophila

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Cited by 26 •

2014

We recently identified a novel Drosophila circadian output, temperature preference rhythm (TPR), in which the preferred temperature in flies rises during the day and falls during the night. TPR is regulated independently from another circadian output, locomotor activity. Here we describe the design and analysis of TPR in Drosophila.

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