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A Fully Passive Wireless Microsystem for Recording of Neuropotentials Using RF Backscattering Methods

机译:使用射频反向散射方法记录神经电势的全被动无线微系统

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The ability to safely monitor neuropotentials is essential in establishing methods to study the brain. Current research focuses on the wireless telemetry aspect of implantable sensors in order to make these devices ubiquitous and safe. Chronic implants necessitate superior reliability and durability of the integrated electronics. The power consumption of implanted electronics must also be limited to within several milliwatts to microwatts to minimize heat trauma in the human body. In order to address these severe requirements, we developed an entirely passive and wireless microsystem for recording neuropotentials. An external interrogator supplies a fundamental microwave carrier to the microsystem. The microsystem comprises varactors that perform nonlinear mixing of neuropotential and fundamental carrier signals. The varactors generate third-order mixing products that are wirelessly backscattered to the external interrogator where the original neuropotential signals are recovered. Performance of the neurorecording microsystem was demonstrated by wireless recording of emulated and in vivo neuropotentials. The obtained results were wireless recovery of neuropotentials as low as approximately 500 microvolts peak-to-peak ($muhbox{V}_{rm pp}$) with a bandwidth of 10 Hz to 3 kHz (for emulated signals) and with 128 epoch signal averaging of repetitive signals (for in vivo signals).$hfill$ [2010-0338]
机译:安全地监视神经电势的能力对于建立研究大脑的方法至关重要。当前的研究集中在植入式传感器的无线遥测方面,以使这些设备无处不在且安全。长期植入物需要集成电子设备具有卓越的可靠性和耐用性。植入式电子设备的功耗也必须限制在几毫瓦至微瓦之间,以最大程度地减少对人体的热损伤。为了满足这些严格的要求,我们开发了一种完全无源的无线微系统来记录神经电势。外部询问器向微系统提供基本的微波载体。该微系统包括变容二极管,其执行神经电势和基本载波信号的非线性混合。变容二极管产生三阶混合产物,这些产物被无线反向散射到外部询问器,在外部询问器中恢复原始的神经电势信号。通过无线记录模拟和体内神经电势来证明神经记录微系统的性能。获得的结果是无线电位峰-峰值低至约500微伏($ muhbox {V} _ {rm pp} $),带宽为10 Hz至3 kHz(对于仿真信号),并具有128个历元重复信号的平均信号(用于体内信号)。$ hfill $ [2010-0338]

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