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A Three-Dimensional Neural Recording Microsystem With Implantable Data Compression Circuitry

机译:具有植入数据压缩电路的三维神经记录微系统

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摘要

A 256-site, fully implantable, 3-D neural recording microsystem has been developed. The microsystem incorporates four active neural probes with integrated circuitry for site selection, amplification, and multiplexing. The probes drive an embedded data-compression ASIC that successfully detects neural spikes in the presence of neural and circuit noise. The spike detection ASIC achieves a factor of 12 bandwidth reduction while preserving the key features of the action potential waveshape necessary for spike discrimination. This work extends the total number of neural channels that can be recorded across a transcutaneous inductively coupled wireless link from 25 to 312. When a spike is detected, this ASIC serially shifts the 5-bit amplitude and 5-bit address of the spike off of the chip over a single 2.5 Mb/s wired or wireless line. The spike detection ASIC occupies 6 mm{sup}2 in 0.5 μm features and consumes 2.6 mW while the entire microsystem consumes 5.4 mW of power from a 3-V supply.
机译:已经开发了一个256位,完全可植入的3-D神经记录微系统。该微系统将四个有源神经探针与用于位点选择,扩增和多路复用的集成电路相结合。探针驱动嵌入式数据压缩ASIC,该集成电路可在存在神经和电路噪声的情况下成功检测神经尖峰。峰值检测ASIC的带宽减少了12倍,同时保留了峰值识别所需的动作电位波形的关键特征。这项工作将经皮电感耦合无线链路上可记录的神经通道总数从25条扩展到312条。当检测到尖峰时,此ASIC会将尖峰的5位幅度和5位地址依次移出通过一条2.5 Mb / s的有线或无线线路连接芯片。尖峰检测ASIC在0.5μm的功能中占6 mm {sup} 2,功耗为2.6 mW,而整个微系统从3 V电源消耗的功率为5.4 mW。

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