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Backscattering Neural Tags for Wireless Brain-Machine Interface Systems

机译:无线脑机接口系统的反向散射神经标签

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Brain-machine interface (BMI) technology has tremendous potential to revolutionize healthcare by greatly improving the quality of life of millions of people suffering from a wide variety of neurological conditions. Radio-frequency identification (RFID)-inspired backscattering is a promising approach for wireless powering of miniature neural sensors required in BMI interfaces. We analyze the functionality of millimeter-size loop antennas in the wireless powering of miniature cortical implants through measurements in a human head equivalent liquid phantom and in the head of a postmortem pig. For the first time, we present the design and measurement of a miniature backscattering device based on a cubic loop connected with an RFID integrated circuit (IC). Our measurement results show that this very small loop receives sufficient electromagnetic power to activate the IC when the device is implanted in a pig's head. This demonstrates the feasibility of extremely small implant antennas in challenging wireless biomedical systems.
机译:脑机接口(BMI)技术具有极大的潜力,可通过极大地改善数百万患有多种神经系统疾病的人们的生活质量来革新医疗保健。受射频识别(RFID)启发的反​​向散射是为BMI接口所需的微型神经传感器无线供电的一种有前途的方法。我们通过在人头等效液体体模和死后猪的头部中进行测量,分析了毫米尺寸环形天线在微型皮质植入物无线供电中的功能。首次,我们介绍了基于与RFID集成电路(IC)连接的立方回路的微型反向散射设备的设计和测量。我们的测量结果表明,当将这种设备植入猪头时,这个很小的环路接收到足够的电磁功率来激活IC。这证明了极小的植入物天线在具有挑战性的无线生物医学系统中的可行性。

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