Head Immobilization

Head immobilization is the controlled restriction of head movement to maintain a stable, repeatable position during observation, measurement, or intervention. It works by using physical supports or positioning systems to limit translation and rotation, reducing motion-related changes in recorded or targeted signals while preserving access to relevant anatomical regions. In neuroscience, this stability can improve the consistency of behavioral testing, imaging, electrophysiological recording, and other procedures that depend on precise alignment. Careful immobilization also supports reliable comparisons across trials, although it must be designed to minimize discomfort, stress, and unintended effects on natural behavior.

Head Immobilization - Related Videos

Research

JoVE EoE - Neuropathology

Inducing Depression-like Behavior in a Mouse via Immobilization Stress

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2025

This video demonstrates the method of inducing chronic stress in a mouse through repeated immobilization, leading to corticosterone release and reduced glutamate receptor activity in neurons, which results in depression-like behavior.

Hydrophobic Salt-modified Nafion for Enzyme Immobilization and Stabilization

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Cited by 23 •

2012

This article will describe the procedure for synthesizing a hydrophobically modified Nafion enzyme immobilization membrane and how to immobilize proteins and/or enzymes within the membrane and test their specific activity.

Bacterial Immobilization for Imaging by Atomic Force Microscopy

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Cited by 36 •

2011

Live Gram-negative and Gram-positive bacteria can be immobilized on gelatin-coated mica and imaged in liquid using Atomic Force Microscopy (AFM).

Inverted Motility Assay: An In Vitro Technique to Visualize Myosin Movement on Immobilized Actin Filaments

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2025

In this video, we perform an in vitro motility assay to analyze the actin-myosin interactions. The gliding movement of actin filaments on immobilized myosin molecules is visualized using fluorescence microscopy.

Monitoring Electrical Signals from the Afferent Neurons in an Immobilized Zebrafish Larva

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2025

This video demonstrates the recording of electrical signals from the afferent neurons in a paralyzed zebrafish larva by positioning a micropipette near the lateral line ganglion and forming a loose seal for signal capture. The extracellular solution maintains neuronal viability during this process.

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