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The Design of Low-power Wireless Neural Signal Acquisition Module
Electronic Science and Technology
2019, 32 (1):
16-20.
DOI: 10.16180/j.cnki.issn1007-7820.2019.01.004
In this paper, RF radio frequency principle is used to design a pure analog low power wireless neural signal acquisition module suitable for small animals. Compared with digital-analog hybrid scheme, the pure analog implementation had the advantages of small size, low power consumption and simple structure. The acquisition module were divided into two parts including analog front-end amplification and wireless data transmission. With the use of low-power, low-noise instrumentation amplifier INA333 and OPA333 op amp analog front-end amplifier, a two-stage amplifier structure was formed and the power consumption and size of the circuit was reduced. The feedback enhancement effect achieved by adding a feedback inductor reduced the power consumption of the Colpitts oscillator. The FM modulation of the oscillator used the inter-polar capacitance of the transistor to form a pure analog wireless data transmission circuit, so that the acquisition module had the advantages of small size, low power consumption and wireless data transmission features. Circuit simulation and experimental test results both showed that the module could complete the wireless acquisition of animal neural signals and had a certain practicality.
Figure 12.
Photograph of experiment setup of bumblebee’s neural signal acquisition experiment
Extracts from the Article
为进一步测试本文设计的低功耗动物神经信号无线采集模块的采集性能,对熊蜂进行了神经信号采集实验,实验环境如图12所示。采集时,熊蜂神经信号经由神经电极引出,进入低功耗无线动物神经信号采集电路进行采集放大,得到的信号经过FM调制,从采集板的发射天线发出,最终在接收端被接收天线接收,并在终端将神经信号解调还原出来。
为进一步测试本文设计的低功耗动物神经信号无线采集模块的采集性能,对熊蜂进行了神经信号采集实验,实验环境如 A TinyOS-based wireless neural interface 1 2004 ... Performance comparison of neural signal acquisition module
为进一步测试本文设计的低功耗动物神经信号无线采集模块的采集性能,对熊蜂进行了神经信号采集实验,实验环境如 Wireless multichannel biopotential recording using an integrated FM telemetry circuit 1 2005 ... Performance comparison of neural signal acquisition module
为进一步测试本文设计的低功耗动物神经信号无线采集模块的采集性能,对熊蜂进行了神经信号采集实验,实验环境如 /
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