Olfactory Response

Olfactory response is the nervous system’s detection and interpretation of airborne chemical signals, enabling organisms to identify odors and respond to their environment. In the nasal epithelium, odorant molecules bind specific receptors on olfactory sensory neurons, activating a G protein–coupled pathway that increases cyclic AMP, opens ion channels, and generates electrical signals transmitted to the olfactory bulb and higher brain regions. Neuroscience research uses olfactory response to study sensory coding, neural circuits, memory, emotion, and behavior. Measuring changes in odor detection or discrimination can also provide insight into brain function and neurological disorders.

Olfactory Response - Related Videos

Research

JoVE Journal - Neuroscience

Odorant-induced Responses Recorded from Olfactory Receptor Neurons using the Suction Pipette Technique

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Cited by 13 •

2012

Olfactory receptor neurons (ORNs) convert odor signals first into a receptor current that in turn triggers action potentials that are conveyed to second order neurons in the olfactory bulb. Here we describe the suction pipette technique to record simultaneously the odorant-induced receptor current and action potentials from mouse ORNs.

Using Single Sensillum Recording to Detect Olfactory Neuron Responses of Bed Bugs to Semiochemicals

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Cited by 3 •

2016

Bed bugs rely on olfactory receptor neurons housed in their antennal olfactory sensilla to detect semiochemicals in the environment. Utilizing single sensillum recording, we demonstrate a method to evaluate bed bug response to semiochemicals and explore the coding process involved.

Research

JoVE Journal - Neuroscience
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Analyzing Responses of Mouse Olfactory Sensory Neurons Using the Air-phase Electroolfactogram Recording

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Cited by 34 •

2010

The electroolfactogram (EOG) recording is an informative, easy-to-conduct, and reliable way of assessing olfactory function at the level of the olfactory epithelium. This protocol describes a recording setup, mouse tissue preparation, data collection, and basic data analysis.

Navigational Behavior of Drosophila Larvae in Response to Optogenetic Stimulation of Olfactory Sensory Neurons

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2025

This video demonstrates a study of the navigational behavior of Drosophila larvae in response to optogenetic stimulation of olfactory sensory neurons (ORNs). Transgenic Drosophila larvae expressing light-sensitive ion channels in the ORNs are placed on agarose within a behavior arena. Optogenetic stimulation with light opens the channels, causing a cation influx that triggers the transmission of the signal to the brain, and the navigation behavior is recorded.

Drosophila Y-maze Assay: A Method to Assess Olfactory Responses in Flies

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2023

This video describes a method to test olfactory exploratory behavior in the fruit fly, called the Y-maze. The featured protocol clip demonstrates how to set up and conduct the assay.

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