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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >Wireless Neural/EMG Telemetry Systems for Small Freely Moving Animals
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Wireless Neural/EMG Telemetry Systems for Small Freely Moving Animals

机译:小型自由移动动物的无线神经/ EMG遥测系统

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We have developed miniature telemetry systems that capture neural, EMG, and acceleration signals from a freely moving insect or other small animal and transmit the data wirelessly to a remote digital receiver. The systems are based on custom low-power integrated circuits (ICs) that amplify, filter, and digitize four biopotential signals using low-noise circuits. One of the chips also digitizes three acceleration signals from an off-chip microelectromechanical-system accelerometer. All information is transmitted over a wireless ${sim} $900-MHz telemetry link. The first unit, using a custom chip fabricated in a 0.6- $mu$m BiCMOS process, weighs 0.79 g and runs for two hours on two small batteries. We have used this system to monitor neural and EMG signals in jumping and flying locusts as well as transdermal potentials in weakly swimming electric fish. The second unit, using a custom chip fabricated in a 0.35-$mu$ m complementary metal–oxide semiconductor CMOS process, weighs 0.17 g and runs for five hours on a single 1.5-V battery. This system has been used to monitor neural potentials in untethered perching dragonflies.
机译:我们已经开发了微型遥测系统,可以捕获自由移动的昆虫或其他小动物的神经,肌电图和加速度信号,并将数据无线传输到远程数字接收器。该系统基于定制的低功耗集成电路(IC),该集成电路使用低噪声电路对四个生物电势信号进行放大,滤波和数字化处理。其中一个芯片还可以数字化来自芯片外微机电系统加速度计的三个加速度信号。所有信息都是通过无线$ {sim} $ 900-MHz遥测链路传输的。第一单元使用定制的芯片,该芯片采用0.6-μm的BiCMOS工艺制造,重量为0.79 g,在两个小电池上运行两个小时。我们已经使用此系统来监视跳跃和飞蝗中的神经和EMG信号以及弱电游泳鱼中的透皮电位。第二个单元使用定制的芯片,该芯片采用0.35-μm的互补金属氧化物半导体CMOS工艺制造,重量为0.17 g,可在单个1.5 V电池上运行5个小时。该系统已用于监控无系带栖息的蜻蜓中的神经电势。

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