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Miniscope Zero: a fully wireless, single-cell-resolution miniature microscope for imaging neural dynamics in freely behaving animals

Preprint Created on 11 Sep 2026 bioRxiv

Imaging neural fluorescence dynamics during unconstrained behavior remains a major challenge in neuroscience. Head-mounted miniature one-photon microscopes enable in vivo recordings from freely behaving animals. Still, their power and data requirements typically necessitate tethers or heavy batteries, which constrain experiments and may introduce behavioral artifacts. We present Miniscope Zero, a fully wireless miniature microscope platform combining quasistatic cavity resonance (QSCR) wireless power transfer with a high-bandwidth optical data link. The system delivers >500 mW of receiver power across a 2,500 cm2 behavioral arena and streams imaging data at 8 Mbps, supporting real-time data acquisition. Miniscope Zero provides a typical field of view of 600 m x 600 m and a 2.6-fold higher light-collection efficiency than the UCLA Miniscope v4. We demonstrate wireless CA1 GCaMP6f recordings during open-field navigation, enclosed-maze exploration, simultaneous multi-animal imaging, and extended three-dimensional behavior, enabling long-duration cellular-resolution imaging without tether-induced constraints.

Sasatani, T., Brosch, M., Dong, Z., Saunders, J., Zhao, P., Sehgal, M., Oesch, L. T., Sangiuliano Jimka, F., Semwal, H., Guha, A., Chorsi, H., Keus, K., Madruga, B. A., Silva, A. J., Churchland, A. K., Golshani, P., Aharoni, D.

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