Visual Stimulus Response

Visual stimulus response is the way the nervous system detects and interprets changes in light, patterns, color, or motion, forming the basis of visual perception. Photoreceptors in the retina convert light into electrical signals, which retinal circuits refine before transmitting them through the optic nerve to visual regions of the brain, where neural activity reflects features of the stimulus. Measuring these responses helps researchers study sensory processing, attention, perception, and neural coding. In neuroscience, visual stimulus paradigms also support investigations of brain function, developmental disorders, and abnormalities in sensory pathways.

Visual Stimulus Response - Related Videos

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JoVE EoE - Danio rerio (zebrafish)

Zebrafish Avoidance and Thigmotaxis Assay: A High-Throughput Method to Examine Larval Behavior in Response to Aversive Visual Stimulus

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2023

The video describes the avoidance and thigmotaxis assay of zebrafish larvae. The video examines the behavior of zebrafish larvae in response to visual aversive stimulus.

Electroretinogram Analysis of the Visual Response in Zebrafish Larvae

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Cited by 22 •

2015

We present a method for the electroretinographic (ERG) analysis of zebrafish larvae utilizing micromanipulation and electroretinography techniques. This is a simple and straightforward method for assaying visual function of zebrafish larvae in vivo.

Stimulus-specific Cortical Visual Evoked Potential Morphological Patterns

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Cited by 1 •

2019

In this paper, we present a protocol to investigate differential cortical visual evoked potential morphological patterns through stimulation of ventral and dorsal networks using high-density EEG. Visual object and motion stimulus paradigms, with and without temporal jitter, are described. Visual evoked potential morphological analyses are also...

Optokinetic Response Assay: A Method to Measure Visual Acuity in Zebrafish

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2023

This video describes the optokinetic response assay in zebrafish. The video measures the reflexive eye movements based on the visual moving stimulus and determines the visual acuity in zebrafish.

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.

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