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使用集成调频遥测电路的无线多通道生物电位记录

Wireless multichannel biopotential recording using an integrated FM telemetry circuit.

作者信息

Mohseni Pedram, Najafi Khalil, Eliades Steven J, Wang Xiaoqin

机构信息

Center for Wireless Integrated MicroSystems (WIMS), Department of Electrical Engineering, University of Michigan, Ann Arbor, MI 48109-2122, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2005 Sep;13(3):263-71. doi: 10.1109/TNSRE.2005.853625.

DOI:10.1109/TNSRE.2005.853625
PMID:16200750
Abstract

This paper presents a four-channel telemetric microsystem featuring on-chip alternating current amplification, direct current baseline stabilization, clock generation, time-division multiplexing, and wireless frequency-modulation transmission of microvolt- and millivolt-range input biopotentials in the very high frequency band of 94-98 MHz over a distance of approximately 0.5 m. It consists of a 4.84-mm2 integrated circuit, fabricated using a 1.5-microm double-poly double-metal n-well standard complementary metal-oxide semiconductor process, interfaced with only three off-chip components on a custom-designed printed-circuit board that measures 1.7 x 1.2 x 0.16 cm3, and weighs 1.1 g including two miniature 1.5-V batteries. We characterize the microsystem performance, operating in a truly wireless fashion in single-channel and multichannel operation modes, via extensive benchtop and in vitro tests in saline utilizing two different micromachined neural recording microelectrodes, while dissipating approximately 2.2 mW from a 3-V power supply. Moreover, we demonstrate successful wireless in vivo recording of spontaneous neural activity at 96.2 MHz from the auditory cortex of an awake marmoset monkey at several transmission distances ranging from 10 to 50 cm with signal-to-noise ratios in the range of 8.4-9.5 dB.

摘要

本文介绍了一种四通道遥测微系统,其具有片上交流放大、直流基线稳定、时钟生成、时分复用功能,能够在94 - 98 MHz的甚高频频段以无线调频方式传输微伏和毫伏级别的输入生物电位,传输距离约为0.5 m。该微系统由一个4.84平方毫米的集成电路组成,采用1.5微米的双多晶硅双金属n阱标准互补金属氧化物半导体工艺制造,在一个定制设计的印刷电路板上仅与三个片外组件相连,该印刷电路板尺寸为1.7×1.2×0.16立方厘米,包括两节微型1.5伏电池在内重1.1克。我们通过在盐水中使用两种不同的微机械神经记录微电极进行广泛的台式和体外测试,对该微系统在单通道和多通道操作模式下以真正无线方式运行的性能进行了表征,同时从3伏电源汲取约2.2毫瓦的功率。此外,我们还展示了在96.2 MHz频率下,在10至50厘米的多个传输距离处,成功从清醒的狨猴听觉皮层进行无线体内自发神经活动记录,信噪比在8.4 - 9.5分贝范围内。

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