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Ultra-low power, miniature electrophysiological electronics
Starfish
Our overall goals for this chip center on minimal size and low power, while maintaining functionality similar to existing general-purpose headstage designs capable of both recording (spikes and LFP) and stimulating. At the same time, we are also actively developing tiny, low-power electronics for reliably and robustly transmitting power and data through tissue, and expect to have more to share on that progress in the future. At this early stage, we’re especially interested in collaborators for whom this technology would pair well with their existing work in fields such as wireless power delivery and communication, or those designing custom implanted neural interfaces.
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