Insect Flight

Insect flight is the powered movement of an insect through air, produced by coordinated wing motion and rapid control of the body’s muscles and nervous system. Neural circuits activate and regulate flight muscles while sensory feedback from the eyes, antennae, and mechanosensory organs adjusts wingbeats, posture, and direction in response to changing aerodynamic forces. Studying these sensorimotor systems reveals how brains coordinate rhythmic movement, balance, and fast behavioral decisions. In neuroscience, insect flight provides tractable models for motor control, neural feedback, locomotion, and learning, while also informing the design of agile flying robots and bioinspired control systems.

Insect Flight - Related Videos

Research

JoVE Journal - Neuroscience
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A Simple Flight Mill for the Study of Tethered Flight in Insects

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Cited by 37 •

2015

Flight in insects is influenced by a number of factors and the propensity to disperse is an important variable in understanding insect ecology and biological control strategies. We describe the construction and use of a simple, relatively inexpensive, and flexible flight mill for measuring parameters of tethered flight in insects.

Research

JoVE Journal - Behavior

Early Metamorphic Insertion Technology for Insect Flight Behavior Monitoring

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Cited by 4 •

2014

We present a novel surgical procedure to implant electrodes in Manduca sexta during its early metamorphic stages. This technique allows mechanically stable and electrically reliable coupling with the neuromuscular tissue to study flight neurophysiology dynamics. We also present a novel magnetic levitation platform for tethered studies of insect yaw.

Building an Enhanced Flight Mill for the Study of Tethered Insect Flight

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Cited by 4 •

2021

This protocol uses three-dimensional (3D) printers and laser cutters found in makerspaces in order to create a more flexible flight mill design. By using this technology, researchers can reduce costs, enhance design flexibility, and generate reproducible work when constructing their flight mills for tethered insect flight studies.

Research

JoVE Journal - Biology
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Dissection of Drosophila melanogaster Indirect Flight Muscles for Microscopy Approaches

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2025

Drosophila is a powerful model to understand fundamental mechanisms of myogenesis. This protocol for the dissection and preparation of thorax hemi-sections enables microscopy analysis of indirect flight muscle from both pupal and adult stages. This protocol enables confocal imaging of cellular morphology, protein localization, muscle structure, and multiple other aspects of myogenesis.

Education

JoVE Core - Biology

Osmoregulation in Insects

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2019

Malpighian tubules are specialized structures found in the digestive systems of many arthropods, including most insects, that handle excretion and osmoregulation. The tubules are typically arranged in pairs and have a convoluted structure that increases their surface area. Malpighian tubules extend from the digestive tract, typically the area between the midgut and hindgut, into the hemolymph—a mixture of blood and interstitial fluid found in insects and other arthropods, as well as most...

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