Arthropod Behavior

Arthropod behavior is the study of how insects, spiders, crustaceans, and related animals sense, process, and respond to internal and environmental information. Nervous systems integrate sensory inputs such as light, odors, touch, vibration, and chemical cues with neural circuits, hormones, and motor outputs to produce behaviors including locomotion, feeding, communication, courtship, and defense. In neuroscience, arthropods provide experimentally accessible models for linking neural activity to behavior, from simple reflexes to learning and social interactions. Their behaviors also inform research on sensory processing, decision-making, neural computation, robotics, and ecological responses to changing environments.

Arthropod Behavior - Related Videos

Research

JoVE Journal - Biology

Clear Resin Casting of Arthropods for Use in Education, Outreach, and Research

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2026

Here we show key steps in the process of creating high-quality, resin-embedded arthropods for educational instruction and outreach.

Research

JoVE Journal - Environment
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Modification and Application of a Leaf Blower-vac for Field Sampling of Arthropods

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Cited by 18 •

2016

Assessment of arthropod abundance in crops is critical for investigating population dynamics and species interactions. Here we describe the modification and application of a leaf blower-vac for suction sampling of arthropods in rice.

Research

JoVE Journal - Environment
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Technique for Studying Arthropod and Microbial Communities within Tree Tissues

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Cited by 8 •

2014

We provide a technique to preserve intact tree phloem and prepare it for observation. We create an apparatus called a phloem sandwich that allows for the introduction and observation of arthropods, microbes, and other organisms that inhabit phloem tissues.

Research

JoVE Journal - Neuroscience
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Vertical T-maze Choice Assay for Arthropod Response to Odorants

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Cited by 18 •

2013

A vertical, T-maze olfactometer is described for assaying the behavioral response of arthropods. The olfactometer allows the experimenter to measure choices performed by test subjects when subjected to two potential odor fields. Both attraction to and repulsion from odorants can be measured with this device.

Quantifying Corticolous Arthropods Using Sticky Traps

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Cited by 2 •

2020

We describe a semi-quantitative approach of measuring characteristics of corticolous (bark-dwelling) arthropod communities. We placed commercially manufactured sticky traps on tree boles to estimate abundance, total length (a surrogate to biomass), richness, and Shannon diversity for comparison among tree species.

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