Burrowing Behavior

Burrowing behavior is an innate activity in which animals excavate or occupy tunnels, shelters, or substrates, providing a measurable window into motivation, adaptation, and behavioral organization. In neuroscience, rodents typically burrow by coordinating forelimb movements, digging, carrying, and substrate manipulation, with performance influenced by environmental conditions, sensory cues, and neural circuits involved in reward and motor control. Researchers quantify factors such as the amount of material displaced, tunnel use, and task persistence to assess motivated behavior and changes in neurological function. Burrowing assays can therefore support studies of stress, pain, neurodegenerative disease, and the effects of pharmacological or genetic interventions.

Burrowing Behavior - Related Videos

Research

JoVE Journal - Neuroscience
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Assessing Burrowing, Nest Construction, and Hoarding in Mice

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Cited by 210 •

2012

Burrowing, nesting, and hoarding are species-typical activities that mice readily perform in the laboratory. This article describes how they can be easily and cheaply assessed. These protocols are extremely sensitive to mouse strain, brain lesions and diseases. Moreover they constitute “environmental enrichment” for the mice, and embody the “Refinement” aspect of the “3 Rs”18.

Research

JoVE EoE - Drosophila melanogaster (fruit fly)

Drosophila Burrowing and Tunneling Assay: A Method to Assess Tissue Hypoxia in Fly Larvae

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2023

This video shows a method to test hypoxia in Drosophila larvae by assessing their burrowing and tunneling abilities. Using this technique researchers can distinguish larvae experiencing oxygen deprivation from those with developmental deficits. The example protocol demonstrates the setup for this assay.

Hypoxia-Induced Climbing Behavior of Drosophila melanogaster

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2026

Source:Siddarth Gunnala1, Nafisa M. Jadavji2,3,41Department of Biomedical Sciences, Midwestern University, Glendale, AZ, USA2Division of Integrative and Molecular Physiology, Department of Biomedical Sciences, Southern University of Illinois, Carbondale, IL, USA3Department of Child Health, College of Medicine Phoenix, University of Arizona, Phoenix, AZ, USA4Department of Neuroscience, Carleton University, Ottawa, ON, CanadaThis video demonstrates hypoxia-induced climbing behavior in Drosophila...

Research

JoVE Journal - Behavior
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Behavioral Phenotyping of Murine Disease Models with the Integrated Behavioral Station (INBEST)

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Cited by 4 •

2015

Prolonged and comprehensive monitoring of mice in a home-cage environment provides a deeper understanding of aberrant behavior in murine models of brain diseases. This paper describes the Integrated Behavioral Station (INBEST) as the key component of contemporary behavioral analysis.

Research

JoVE Journal - Behavior
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A Burrowing/Tunneling Assay for Detection of Hypoxia in Drosophila melanogaster Larvae

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Cited by 2 •

2018

The protocol describes a simple assay to identify Drosophila melanogaster larvae that are experiencing hypoxia under normal atmospheric oxygen levels. This protocol allows hypoxic larvae to be distinguished from other mutants that show overlapping phenotypes such as sluggishness or slow growth.

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