Minimally invasive, high-bandwidth brain-computer-interface (BCI) devices can revolutionize human applications. With orders-of-magnitude improvements in volumetric efficiency over other BCI technologies, we developed a 50-μm-thick, mechanically flexible micro-electrocorticography (μECoG) BCI, integrating a 256Ã256 array of electrodes, signal processing, data telemetry, and wireless powering on a single complementary metal-oxide-semiconductor (CMOS) substrate containing 65,536 recording channels, from which we can simultaneously record a selectable subset of up to 1024 channels at a given time. Fully implanted below the dura, our chip is wirelessly powered, communicating bi-directionally with an external relay station outside the body. We demonstrated chronic, reliable recordings for up to two weeks in pigs and up to two months in behaving non-human primates from somatosensory, motor, and visual cortices, decoding brain signals at high spatiotemporal resolution.
Stable, chronic in-vivo recordings from a fully wireless subdural-contained 65,536-electrode brain-computer interface device.
来自完全无线硬膜下植入的 65,536 电极脑机接口设备的稳定、慢性体内记录
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作者:Jung Taesung, Zeng Nanyu, Fabbri Jason D, Eichler Guy, Li Zhe, Zabeh Erfan, Das Anup, Willeke Konstantin, Wingel Katie E, Dubey Agrita, Huq Rizwan, Sharma Mohit, Hu Yaoxing, Ramakrishnan Girish, Tien Kevin, Mantovani Paolo, Parihar Abhinav, Yin Heyu, Oswalt Denise, Misdorp Alexander, Uguz Ilke, Shinn Tori, Rodriguez Gabrielle J, Nealley Cate, Sanborn Sophia, Gonzales Ian, Roukes Michael, Knecht Jeffrey, Yoshor Daniel, Canoll Peter, Spinazzi Eleonora, Carloni Luca P, Pesaran Bijan, Patel Saumil, Jacobs Joshua, Youngerman Brett, Cotton R James, Tolias Andreas, Shepard Kenneth L
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Mar 9 |
| doi: | 10.1101/2024.05.17.594333 | ||
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