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An implantable integrated low-power amplifier-microelectrode array for Brain-Machine Interfaces

机译:用于脑机接口的可植入集成式低功耗放大器-微电极阵列

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One of the important challenges in designing Brain-Machine Interfaces (BMI) is to build implantable systems that have the ability to reliably process the activity of large ensembles of cortical neurons. In this paper, we report the design, fabrication, and testing of a polyimide-based microelectrode array integrated with a low-power amplifier as part of the Florida Wireless Integrated Recording Electrode (FWIRE) project at the University of Florida developing a fully implantable neural recording system for BMI applications. The electrode array was fabricated using planar micromachining MEMS processes and hybrid packaged with the amplifier die using a flip-chip bonding technique. The system was tested both on bench and in-vivo. Acute and chronic neural recordings were obtained from a rodent for a period of 42 days. The electrode-amplifier performance was analyzed over the chronic recording period with the observation of a noise floor of 4.5 µVrms, and an average signal-to-noise ratio of 3.8.
机译:设计脑机接口(BMI)的重要挑战之一是构建具有可靠处理大型皮质神经元活动的能力的可植入系统。在本文中,我们报告了佛罗里达大学佛罗里达无线综合记录电极(FWIRE)项目中开发的具有低功率放大器的聚酰亚胺基微电极阵列的设计,制造和测试,该项目开发了完全可植入的神经用于BMI应用程序的记录系统。电极阵列是使用平面微机械加工MEMS工艺制造的,并使用倒装芯片键合技术与放大器管芯混合封装。该系统已在工作台和体内进行了测试。从啮齿动物获得了42天的急性和慢性神经记录。在长期记录期间分析了电极放大器的性能,观察到本底噪声为4.5 µVrms,平均信噪比为3.8。

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