⚡ 本页包含 AI 生成的分析内容,仅供参考
本文提出了一种电感供电的32通道无线神经记录系统级芯片,用于神经科学研究。该系统通过无线供电和数据传输,解决了传统有线神经记录设备在长期植入和动物实验中的局限性,实现了可扩展的多通道神经信号采集。
technology for interfacing with the central nervous system in laboratory animals and humans [1-2]. Even though these efforts have led to marvelous technological advancements in circuits and systems, some of the resulting devices may find little use in their application domain, because the specifics of the targeted applications or the realistic needs of the end users may not be taken into account. Neural interfacing technology can be applied to two major areas: neurological diseases (clinical) and neurosciences (research). Devices that target the former, i.e. neuroprostheses, need to be chronically implantable, extremely safe, and highly reliable to be used in humans as part of a therapeutic procedure. Size, power consumption, and carrier frequency are highly constrained due to implantation requirements. Cochlear implants and deep-brain stimulators (DBS) are
Seung Bae Lee, Hyung-Min Lee, Mehdi Kiani, Uei-Ming Jow, Maysam Ghovanloo
Georgia Institute of Technology, Atlanta, GA There has been considerable effort devoted to developing