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Low-Power, High Data Rate Transceiver System for Implantable Prostheses

机译:用于植入式假体的低功耗,高数据速率收发器系统

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Wireless telemetry is crucial for long-term implantable neural recording systems. RF-encoded neurological signals often require high data-rates to transmit information from multiple electrodes with a sufficient sampling frequency and resolution. In this work, we quantify the effects of interferers and tissue attenuation on a wireless link for optimal design of future systems. The wireless link consists of an external receiver capable of demodulating FSK/OOK transmission at speeds up to 8 Mbps, with <1e-5 bit-error rate (BER) without error correction, and a fully implanted transmitter consuming about 1.05 mW. The external receiver is tested with the transmitterin vivoto show demodulation efficacy of the transcutaneous link at high data-rates. Transmitter/Receiver link BER is quantified in typical and controlled RF environments for ex vivo andin vivoperformance.
机译:无线遥测对于长期植入式神经记录系统至关重要。 RF编码的神经信号通常需要高数据速率,以足够的采样频率和分辨率从多个电极传输信息。在这项工作中,我们将量化干扰和组织衰减对无线链路的影响,以优化未来系统。无线链路包括一个外部接收机,该接收机能够以高达8µMbps的速度解调FSK / OOK传输,具有小于1e-5的误码率(BER),无需纠错,以及一个完全植入的发射机,功耗约为1.05µmW。外部接收器在体内用发射器进行测试,以显示经皮链路在高数据速率下的解调功效。发射机/接收机链路BER在典型的受控RF环境中进行了定量,以实现离体和体内性能。

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