Olfactory Visual Tactile Stimuli

Olfactory, visual, and tactile stimuli are sensory signals detected through smell, sight, and touch that influence how organisms perceive and respond to their surroundings. These stimuli activate specialized sensory receptors, which convert environmental information into neural signals that the brain integrates to guide attention, recognition, motivation, and behavior. In behavioral research, presenting controlled combinations of odors, images, and physical sensations helps investigators examine sensory processing, learning, decision-making, social interactions, and responses to environmental cues. Comparing responses across stimulus types can reveal how individual senses and multisensory integration shape behavior in both experimental and natural settings.

Olfactory Visual Tactile Stimuli - Related Videos

Research

JoVE Journal - Behavior

Applying Incongruent Visual-Tactile Stimuli during Object Transfer with Vibro-Tactile Feedback

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2019

We present a protocol to apply incongruent visual-tactile stimuli during an object transfer task. Specifically, during block transfers, performed while the hand is hidden, a virtual presentation of the block shows random occurrences of false block drops. The protocol also describes adding vibrotactile feedback while performing the motor task.

Using Looming Visual Stimuli to Evaluate Mouse Vision

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Cited by 12 •

2019

To examine mouse vision, we conducted a looming test. Mice were placed in a large square arena with a monitor on its ceiling. The looming visual stimulus consistently evoked freezing or flight reactions in the mice.

Quadruple Immunostaining of the Olfactory Bulb for Visualization of Olfactory Sensory Axon Molecular Identity Codes

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2017

Olfactory sensory neurons express a wide variety of axon-sorting molecules to establish proper neural circuitry. This protocol describes an immunohistochemical staining method to visualize combinatorial expressions of axon-sorting molecules at the axon termini of olfactory sensory neurons.

Testing Tactile Masking between the Forearms

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Cited by 2 •

2016

Here we explore contralateral tactile masking between the forearms in which tactile detection thresholds are modulated by vibration applied to a remote site. The details of which remote sites have an effect can tell us about how the body is represented in the brain.

A Magnetic Tether System to Investigate Visual and Olfactory Mediated Flight Control in Drosophila

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Cited by 32 •

2008

Here we describe how to tether a fly in an olfactory magnetic-tether (OMT) apparatus. We describe how to align the rare-earth magnets and odor ports, and how to set mass flow rates for both the stimulus delivery and vacuum suction to achieve optimal odor tracking.

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