Multicellular Behavior Tracking

Multicellular Behavior Tracking is the systematic observation and analysis of how groups of cells move, interact, organize, and change over time. In biology, researchers typically combine time-lapse microscopy with image analysis to follow individual cells, quantify migration, division, shape changes, and cell-cell contacts, and relate these behaviors to signals within the surrounding tissue. This approach reveals how coordinated cellular activities produce tissue formation, repair, development, and disease-related changes. Tracking multicellular behavior can also support comparisons between experimental conditions, clarify mechanisms of collective movement, and improve models of tissue dynamics.

Multicellular Behavior Tracking - Related Videos

Research

JoVE Journal - Neuroscience

C. elegans Tracking and Behavioral Measurement

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Cited by 14 •

2012

We have developed a video-rate tracking microscope system that can record and quantify C. elegans behavior at high resolution and high speeds. We have also developed computational methods to reduce the dimensionality of the worm images to a fundamental set of measurements that completely describe the shape of the worm.

Recording Multicellular Behavior in Myxococcus xanthus Biofilms using Time-lapse Microcinematography

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Cited by 8 •

2010

To study Myxococcus xanthus swarm behavior, we have designed a time-lapse microcinematography protocol that can be modified for different assays. It employs standard growth conditions adapted for microscopy, and yields reproducible results by the use of inexpensive, reusable silicone gaskets. We have used this method to quantify multicellular chemotaxis.

Olfactory Behaviors Assayed by Computer Tracking Of Drosophila in a Four-quadrant Olfactometer

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Cited by 4 •

2016

We describe here a behavioral setup and data analysis method for assaying olfactory responses of up to 100 vinegar flies (Drosophila melanogaster). This system may be used with single or multiple olfactory stimuli, and adaptable for optogenetic activation or silencing of neuronal subsets.

Long-term Behavioral Tracking of Freely Swimming Weakly Electric Fish

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Cited by 15 •

2014

We describe a set of techniques for studying spontaneous behavior of freely swimming weakly electric fish over an extended period of time, by synchronously measuring the animal's electric organ discharge timing, body position and posture both accurately and reliably in a specially designed aquarium tank inside a sensory isolation chamber.

A System for Tracking the Dynamics of Social Preference Behavior in Small Rodents

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Cited by 33 •

2019

Described here is a novel automated experimental system that offers an alternative to the three-chamber test and also solves several caveats. This system supplies multiple behavioral parameters that enable rigorous analysis of small rodent behavioral dynamics during the social preference and social novelty preference tests.

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