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Stable, chronic in-vivo recordings from a fully wireless subdural-contained 65,536-electrode brain-computer interface device.
Jung T, Zeng N, Fabbri JD, Eichler G, Li Z, Willeke K, Wingel KE, Dubey A, Huq R, Sharma M, Hu Y, Ramakrishnan G, Tien K, Mantovani P, Parihar A, Yin H, Oswalt D, Misdorp A, Uguz I, Shinn T, Rodriguez GJ, Nealley C, Gonzales I, Roukes M, Knecht J, Yoshor D, Canoll P, Spinazzi E, Carloni LP, Pesaran B, Patel S, Youngerman B, Cotton RJ, Tolias A, Shepard KL. Jung T, et al. Among authors: shepard kl. bioRxiv [Preprint]. 2024 May 17:2024.05.17.594333. doi: 10.1101/2024.05.17.594333. bioRxiv. 2024. PMID: 38798494 Free PMC article. Preprint.
A Wireless, Mechanically Flexible, 25μm-Thick, 65,536-Channel Subdural Surface Recording and Stimulating Microelectrode Array with Integrated Antennas.
Zeng N, Jung T, Sharma M, Eichler G, Fabbri J, Cotton RJ, Spinazzi E, Youngerman B, Carloni L, Shepard KL. Zeng N, et al. Among authors: shepard kl. 2023 IEEE Symp VLSI Technol Circuits (2023). 2023 Jun;2023:10.23919/vlsitechnologyandcir57934.2023.10185321. doi: 10.23919/vlsitechnologyandcir57934.2023.10185321. Epub 2023 Jul 24. 2023 IEEE Symp VLSI Technol Circuits (2023). 2023. PMID: 37671168 Free PMC article.
300 results