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Updated: Apr 28, 2026

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Locally optimal extracellular stimulation for chaotic desynchronization of neural populations
1Department of Mechanical Engineering, University of California, Santa Barbara, CA, 93106, USA, dan.d.wilson8@gmail.com.
Abstract:
We use optimal control theory to design a methodology to find locally optimal stimuli for desynchronization of a model of neurons with extracellular stimulation. This methodology yields stimuli which lead to positive Lyapunov exponents, and hence desynchronizes a neural population. We analyze this methodology in the presence of interneuron coupling to make predictions about the strength of stimulation required to overcome synchronizing effects of coupling. This methodology suggests a powerful alternative to pulsatile stimuli for deep brain stimulation as it uses less energy than pulsatile stimuli, and could eliminate the time consuming tuning process.
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