Brain-computer interfaces (BCIs), invasive or non-invasive, have projected unparalleled vision and promise for assisting patients in need to better their interaction with the surroundings. Inspired by the BCI-based rehabilitation technologies for nerve-system impairments and amputation, we propose an electromagnetic brain-computer-metasurface (EBCM) paradigm, regulated by human's cognition by brain signals directly and non-invasively. We experimentally show that our EBCM platform can translate human's mind from evoked potentials of P300-based electroencephalography to digital coding information in the electromagnetic domain non-invasively, which can be further processed and transported by an information metasurface in automated and wireless fashions. Directly wireless communications of the human minds are performed between two EBCM operators with accurate text transmissions. Moreover, several other proof-of-concept mind-control schemes are presented using the same EBCM platform, exhibiting flexibly-customized capabilities of information processing and synthesis like visual-beam scanning, wave modulations, and pattern encoding.
翻译:在基于BCI的神经系统损伤和截肢康复技术的启发下,我们提议采用电磁脑-计算机-光表(EBCM)模式,由直接和非侵入性脑信号的人类认知调节。我们实验性地显示,我们的EBCM平台可以将人类的心智从P300基电子脑phalalogy的发回潜力转变为电磁域非侵入性的数字编码信息,这种信息可以进一步处理和通过自动和无线方式的信息元表进行传输。人类心灵的直接无线通信由两个有准确文本传输的EBCM操作者进行。此外,还利用同样的EBCMM平台展示了其他的受控思想控制方案,展示了像视觉扫描、波调制调和模式编码等信息处理和合成的灵活定制能力。