Startle Response Measurement

Startle response measurement is a neuroscience method for quantifying the rapid defensive reaction to an unexpected sensory stimulus, such as a loud sound. Researchers typically present a brief acoustic pulse and record reflexive muscle activity, often using electromyography to measure the eyeblink-related contraction around the eye, while controlling stimulus intensity and timing. Changes in response amplitude, latency, or habituation reveal how sensory processing, attention, emotion, and motor circuits regulate defensive behavior. The method supports investigations of neural circuit function, fear and anxiety, sensorimotor gating, and neurological or psychiatric conditions, providing an objective measure of brain and behavioral reactivity.

Startle Response Measurement - Related Videos

Research

JoVE Journal - Neuroscience
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Habituation and Prepulse Inhibition of Acoustic Startle in Rodents

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Cited by 164 •

2011

Habituation and prepulse inhibition of startle are operational measures of sensory gating. Sensory gating is disrupted in schizophrenia, and some other mental disorders and neurodegenerative diseases. We here describe a standard protocol to assess short-term and long-term habituation as well as prepulse inhibition of acoustic startle responses in rats and mice.

Research

JoVE Journal - Biology
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Evaluating Toxicity of Chemicals using a Zebrafish Vibration Startle Response Screening System

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Cited by 6 •

2024

We describe a screening system's workflow and data analysis for evaluating chemical compound toxicity based on the zebrafish embryo vibration startle response. The system records the movements of zebrafish embryos upon exposure to a vibration stimulus and allows for an integrated evaluation of general toxicity/lethality and neuromuscular toxicity.

Research

JoVE Journal - Neuroscience

Methods to Characterize Spontaneous and Startle-induced Locomotion in a Rotenone-induced Parkinson's Disease Model of Drosophila

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Cited by 10 •

2014

Parkinson’s disease is a neurodegenerative disorder that results from the degeneration of dopaminergic neurons in the central nervous system, causing locomotion defects. Rotenone models Parkinson’s disease in Drosophila. This paper outlines two assays that characterize both spontaneous and startle-induced locomotion deficiencies caused by rotenone.

Measuring the Auditory Brainstem Response in Mice

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2025

Source: Lee, D., et. al. Modified Experimental Conditions for Noise-Induced Hearing Loss in Mice and Assessment of Hearing Function and Outer Hair Cell Damage. J. Vis. Exp. (2023)This video demonstrates the measurement of auditory brainstem response (ABR) in a mouse. Electrodes are placed on the head, behind the ear, and near the tail of an anesthetized mouse. Acoustic stimuli at various intensities are delivered, and electric signals generated are recorded as waveforms.

Measurement of Compressive Stress-Strain Response at Small-Strains

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2025

This protocol presents the configuration of a compression test device capable of precisely measuring the mechanical properties of microstructures in the small-strain region, along with a systematic method for compression testing using this device. The proposed device can be used to analyze various microstructures and the mechanical behavior of polymer-based materials.

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