Odor Plume Tracking

Odor plume tracking is the process of locating an odor source by interpreting how chemical signals spread through air or water, a strategy that helps animals navigate complex environments. Because turbulence breaks odor into intermittent filaments, organisms sample odor concentration over time and combine encounters with wind or water-flow direction to adjust their movement, often alternating up-current travel with cross-stream searching. In biology, this behavior supports mate finding, host seeking, predator avoidance, and foraging in insects, crustaceans, and other animals. Studying odor plume tracking links sensory biology with ecology and can inform models of animal navigation and biologically inspired search systems.

Odor Plume Tracking - Related Videos

Research

JoVE Journal - Biology

Visually Mediated Odor Tracking During Flight in Drosophila

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Cited by 8 •

2009

Here we describe how to optimize the acquired video image for an olfactory magnetic-tether (OMT) apparatus. We also describe two sample experimental protocols for studying visuo-olfactory fusion.

Insect-controlled Robot: A Mobile Robot Platform to Evaluate the Odor-tracking Capability of an Insect

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Cited by 18 •

2016

The capability to localize an odor source is necessary for insect survival and is expected to be applicable to artificial odor-tracking. The insect-controlled robot is driven by an actual silkmoth and enables us to evaluate the odor-tracking capability of insects through a robotic platform.

Miniscope Recording Calcium Signals at Hippocampus of Mice Navigating an Odor Plume

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Cited by 2 •

2024

This protocol investigates the brain-behavior relationship in hippocampal CA1 in mice navigating an odor plume. We provide a step-by-step protocol, including surgery to access imaging of the hippocampus, behavioral training, miniscope GCaMP6f recording and processing of the brain, and behavioral data to decode the mouse position from ROI neural activity.

High-resolution Measurement of Odor-Driven Behavior in Drosophila Larvae

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Cited by 24 •

2008

In this video article, we describe a new method allowing the construction of odorant gradients with stable and controllable geometries. We briefly illustrate how these gradients can be used to screen for olfactory defects (full and partial anosmia) and to study more subtle features of chemotaxis behavior.

Testing for Odor Discrimination and Habituation in Mice

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Cited by 66 •

2015

This manuscript describes a protocol to examine the olfactory system of rodents. The olfactory habituation/dishabituation test will allow investigators to determine whether a mouse habituates to a repeatedly presented odor and whether the mouse demonstrates dishabituation when presented a novel odor.

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