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Simultaneous Wireless Electrophysiological and Neurochemical Monitoring

机译:同时无线电生理和神经化学监测

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Information processing and propagation in the central nervous system is mostly electrical in nature. At synapses, the insulating gaps between neurons, electrical signals cause the release of chemical messengers called neurotrans-mitters which travel across the synapse and modulate the postsynaptic neuron electrical activity. The interrelated nature of these signals and their implication in several clinical and basic neural pathways motivate their simultaneous monitoring. We present an integrated system for continuous acquisition of both data modalities in awake behaving rats. It features one channel each of a configurable electrophysiological and a neurochemical acquisition system. The electrophysiological system comprises of a 40 dB gain fully differential amplifier with tunable bandwidth from 140 to 8200 Hz. The amplifier offers noise below 2 μV_(rms) for all bandwidth settings. The neurochemical module features a picoampere sensitivity potentiostat with a dynamic range spanning 6 decades from picoamperes to micoamperes. Both systems have independent on-chip configurable ΔΣ 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 clock for ADC operation and telemeter out the data at up to 32 kbps over 4 cm with a bit error rate (BER) < 10~(-5). Characterization and experimental results from both the electrophysiological and neurochemical modules as well as the full system are presented.
机译:本质上,中枢神经系统中的信息处理和传播主要是电子的。在突触中,神经元之间的绝缘间隙,电信号导致释放称为神经递质的化学信使,该信使穿过突触并调节突触后神经元的电活动。这些信号的相互关联性质及其在几种临床和基本神经通路中的作用促使它们同时进行监测。我们提出了一个完整的系统,用于在清醒行为的大鼠中连续获取两种数据模式。它具有一个通道,每个通道都可配置一个电生理和神经化学采集系统。电生理系统包括一个40 dB增益的全差分放大器,其带宽在140至8200 Hz之间可调。对于所有带宽设置,该放大器的噪声均低于2μV_(rms)。神经化学模块具有皮安电流敏感的恒电位仪,其动态范围从皮安电流到微安时,范围长达6年。两种系统均具有独立的片上可配置ΔΣADC,具有可编程的数字增益和分辨率。该系统还与无线供电和遥测模块接口,该模块能够为电路加电,为ADC操作提供时钟,并在4 cm内以高达32 kbps的速率遥测数据,误码率(BER)<10〜( -5)。介绍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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