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无线微功率仪器,用于电和化学神经活动的多模式采集。

Wireless micropower instrumentation for multimodal acquisition of electrical and chemical neural activity.

出版信息

IEEE Trans Biomed Circuits Syst. 2009 Dec;3(6):388-97. doi: 10.1109/TBCAS.2009.2031877.

Abstract

The intricate coupling between electrical and chemical activity in neural pathways of the central nervous system, and the implication of this coupling in neuropathologies, such as Parkinson's disease, motivates simultaneous monitoring of neurochemical and neuropotential signals. However, to date, neurochemical sensing has been lacking in integrated clinical instrumentation as well as in brain-computer interfaces (BCI). Here, we present an integrated system capable of continuous acquisition of data modalities in awake, behaving subjects. It features one channel each of a configurable neuropotential and a neurochemical acquisition system. The electrophysiological channel is comprised of a 40-dB gain, fully differential amplifier with tunable bandwidth from 140 Hz to 8.2 kHz. The amplifier offers input-referred noise below 2 muV rms for all bandwidth settings. The neurochemical module features a picoampere sensitivity potentiostat with a dynamic range spanning six decades from picoamperes to microamperes. Both systems have independent on-chip, configurable DeltaSigma analog-to-digital converters (ADCs) with programmable digital gain and resolution. The system was also interfaced to a wireless power harvesting and telemetry module capable of powering up the circuits, providing clocks for ADC operation, and telemetering out the data at up to 32 kb/s over 3.5 cm with a bit-error rate of less than 10(-5). Characterization and experimental results from the electrophysiological and neurochemical modules as well as the full system are presented.

摘要

中枢神经系统神经通路中电活动和化学活动的复杂耦合,以及这种耦合在神经病理学中的意义,如帕金森病,促使我们同时监测神经化学和神经电位信号。然而,迄今为止,神经化学传感在综合临床仪器以及脑机接口(BCI)中都缺乏应用。在这里,我们提出了一个能够在清醒、行为的实验动物中连续采集数据模态的集成系统。它具有一个可配置的神经电位和神经化学采集系统,每个系统各有一个通道。电生理通道由一个 40dB 增益、全差分放大器组成,带宽可调,从 140Hz 到 8.2kHz。对于所有带宽设置,放大器的输入参考噪声均低于 2μVrms。神经化学模块具有皮安灵敏度的电势差计,动态范围跨越六个数量级,从皮安到微安。这两个系统都有独立的片上、可配置的∆Σ模数转换器(ADC),具有可编程的数字增益和分辨率。该系统还与无线功率采集和遥测模块接口,能够为电路供电,为 ADC 操作提供时钟,并以高达 32kb/s 的速度通过 3.5cm 传输数据,误码率低于 10^(-5)。本文展示了电生理和神经化学模块以及整个系统的特性和实验结果。

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