Mechanical Stimulus

A mechanical stimulus is a physical force, such as pressure, stretch, vibration, or movement, that changes the state of a biological system and can produce a neural response. In neuroscience, mechanosensory cells and neurons detect these forces when deformation of the cell membrane or associated proteins opens mechanically gated ion channels, converting physical energy into electrical signals. This process, called mechanotransduction, supports touch, hearing, balance, proprioception, and pain perception. Studying mechanical stimuli helps researchers understand sensory coding, neural circuit function, and disorders involving abnormal touch or movement, while informing the development of prosthetic sensors, neural interfaces, and rehabilitation strategies.

Mechanical Stimulus - Related Videos

Research

JoVE EoE - Neurophysiology

Inducing Axonal Varicosities with a Micromechanical Stimulus on Neurons

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2025

This video demonstrates the induction of axonal varicosities by applying micromechanical stimulus on neurons. The system comprises a micropipette attached to a syringe containing buffer via tubing. Using a micromanipulator, the micropipette is positioned above the neurons. Fluid pressure is then applied to induce varicosities in axons.

Research

JoVE Journal - Neuroscience
Free Sample

How to Find Effects of Stimulus Processing on Event Related Brain Potentials of Close Others when Hyperscanning Partners

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Cited by 2 •

2018

This protocol describes key steps involved in assessing the sensitivity of the brain of one person to the stimulus processing of a close other by selecting pairs of partners, recording their electroencephalogram (EEG) simultaneously and computing their event-related brain potentials (ERPs).

Research

JoVE Journal - Neuroscience
Free Sample

Behavioral Determination of Stimulus Pair Discrimination of Auditory Acoustic and Electrical Stimuli Using a Classical Conditioning and Heart-rate Approach

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Cited by 21 •

2012

The application of a classical fear conditioning behavioral paradigm for auditory prosthetic research in rats is described. This paradigm provides a mechanism for identifying both detection of, and discrimination between, distinct acoustic and electrical stimuli using heart-rate as an outcome measure.

Mechanical Stimulation of Chondrocyte-agarose Hydrogels

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Cited by 29 •

2012

The biosynthesis of cartilaginous extracellular matrix by chondrocytes can be affected by application of mechanical stimuli. This method describes the technique of applying dynamic compressive strains to chondrocytes encapsulated in 3D constructs and the evaluation of induced changes in chondrocyte metabolism.

Desensitization and Recovery of Crayfish Photoreceptors Upon Delivery of a Light Stimulus

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Cited by 1 •

2019

A protocol for the study of desensitization and sensitivity recovery of crayfish photoreceptors as a function of circadian time is presented.

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