Fly Head Preparation

Fly head preparation is a dissection technique used to expose the Drosophila brain for anatomical, physiological, and behavioral neuroscience experiments. By stabilizing the fly and carefully removing external cuticle and tissue, researchers create access to neural structures while preserving the brain’s organization and, in some preparations, its activity. The resulting preparation supports microscopy, electrophysiology, neural circuit labeling, and targeted manipulation of neurons. Consistent handling and protection from mechanical damage are essential for reliable measurements, making this method a foundation for studying sensory processing, motor control, learning, and disease-related mechanisms in a genetically tractable model.

Fly Head Preparation - Related Videos

Research

JoVE EoE - Neuropathology

A Technique to Inflict Closed-Head Traumatic Brain Injury in Drosophila Flies

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2025

This video demonstrates a procedure to inflict a closed-head traumatic injury in anesthetized Drosophila flies using a strike device with a gas-propelled impactor. The injury affects neuronal function and impairs walking ability.

Embedding Adult Drosophila Heads in Paraffin: Preparing Tissue for Histology

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2023

This video describes how to embed Drosophila heads in paraffin using the collar method, a technique that prepares fly heads for serial sectioning. Paraffin sections are used for histological examinations of the brain's anatomy and for the assessment of neurodegeneration. The featured protocol demonstrates how multiple flies can be processed in one preparation, thereby increasing time-efficiency and minimizing experimental artifacts.

Preparation of Drosophila Heart: A Technique to Study Heart Physiology in the Adult Fly

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2023

This video describes the fly's adult heart, or otherwise called the Drosophila dorsal vessel. The featured protocol demonstrates a dissection procedure for live heart preparations.

Research

JoVE Journal - Biochemistry
Free Sample

Measuring and Interpreting Oxygen Consumption Rates in Whole Fly Head Segments

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Cited by 4 •

2019

Measuring alterations in metabolic rates is central to understanding the progression of various diseases and aging. Here, we present a novel technique to measure whole head oxygen consumption that more closely resembles the physiological state and may aid in revealing novel drugs that modify mitochondrial activity.

The FlyBar: Administering Alcohol to Flies

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Cited by 15 •

2014

Drosophila has emerged as a significant model system for dissecting the cellular and molecular underpinnings of behavioral responses to alcohol. Here we present a protocol for the collection of alcohol sensitivity data in a circadian context that can be easily applied to other experiments and is well-suited for undergraduate research.

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