bioRxiv · 10.1101/257691
Microfluidics for Electrophysiology, Imaging, and Behavioral Analysis of Hydra
Abstract
The cnidarian Hydra vulgaris provides an exciting opportunity to discover the relationship between animal behavior and the activity of every neuron in highly plastic, diffuse network of spiking cells. However, Hydras deformable and contractile body makes it difficult to manipulate the local environment while recording neural activity. Here, we present a suite of microfluidic technologies capable of simultaneous electrical, chemical, and optical interrogation of these soft, deformable organisms. Specifically, we demonstrate devices that can immobilize Hydra for hours-long simultaneous electrical and optical recording, and chemical stimulation of behaviors revealing neural activity during muscle contraction. We further demonstrate quantitative locomotive and behavioral tracking made possible by confining the animal to quasi-two-dimensional micro-arenas. Together, these proof-of-concept devices show that microfluidics provide a platform for scalable, quantitative cnidarian neurobiology. The experiments enabled by this technology may help reveal how highly plastic networks of neurons provide robust control of animal behavior.
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Badhiwala, K., Gonzales, D. L., Vercosa, D. G., Avants, B., Robinson, J.. 2018-01-31. Microfluidics for Electrophysiology, Imaging, and Behavioral Analysis of Hydra. https://doi.org/10.1101/257691
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