无线集成电压和安培生物传感

M. Mollazadeh, K. Murari, C. Sauer, M. Stanaćević, N. Thakor, G. Cauwenberghs
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引用次数: 2

摘要

中枢神经系统(CNS)利用不同形态信号之间的相互作用来传递和处理信息。神经事件的特点是神经化学物质浓度和神经元电活动的变化。电生理和神经化学事件是高度相关的,因为一个导致另一个,反之亦然。同时记录电和化学活动的能力具有相当大的研究和诊断重要性。在这里,我们提出了一个硬件实现,用于无线电源和时钟传输,以及通过一个射频链路从传感器串行传输数字化神经化学和电生理数据。这个想法可以扩展到具有不同数据速率的不同模式的传感器。神经化学数据从定制的多通道超大规模集成(VLSI)恒电位器芯片实时获取,频率为5 Hz。在400 Hz下采样场电位数据。一个定制的VLSI芯片上电,并提供时钟的恒电位器和遥测的多路复用数据。所有芯片均采用AMI 3M-2P 0.5mu CMOS工艺制作。我们演示了该系统在无线供电和多路数据遥测方面的成功运行
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireless Integrated Voltametric and Amperometric Biosensing
Central nervous system (CNS) uses the interplay between signals of different modalities to transfer and process information. Neurological events are characterized by changes in both neurochemical concentrations and the electrical activity of neurons. Electrophysiological and neurochemical events are highly correlated as one causes the other and vice-versa. The ability to simultaneously record electrical and chemical activity is of considerable research and diagnostic importance. Here, we present a hardware implementation for wireless power and clock transfer to and serial transmission of digitized neurochemical and electrophysiological data from sensors over one RF link. The idea can be extended to sensors of different modalities having widely different data rates. Neurochemical data are acquired in real-time from a custom multichannel very large scale integrated (VLSI) potentiostat chip at 5 Hz. Field potential data were sampled at 400 Hz. A custom VLSI chip powers up and supplies clocks to the potentiostat and telemeters the multiplexed data. All the chips were fabricated in AMI 3M-2P 0.5mu CMOS process. We demonstrate successful operation of the system with wireless powering and telemetry of the multiplexed data
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