Abstract
Magnetogenetics is a new field that utilizes electromagnetic fields to remotely control cellular activity. In addition to the development of the biological genetic tools, this approach requires designing hardware with a specific set of demands for the electromagnets used to provide the desired stimulation for electrophysiology and imaging experiments. Here, we present a universal stimulus delivery system comprising four magnet designs compatible with electrophysiology, fluorescence and luminescence imaging, microscopy, and freely behaving animal experiments. The overall system includes a low-cost stimulation controller that enables rapid switching between active and sham stimulation trials as well as precise control of stimulation delivery thereby enabling repeatable and reproducible measurements.
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Ashbaugh, R. C., Udpa, L., Israeli, R. R., Gilad, A. A., & Pelled, G. (2021). Bioelectromagnetic platform for cell, tissue, and in vivo stimulation. Biosensors, 11(8). https://doi.org/10.3390/bios11080248
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