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Design of In-Vivo Communications that Allow Multiple Active Implants

机译:允许多个活动植入物的体内通信设计

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Stimulation and Recording of peripheral neurons allowing haptic sensation of prosthetics is only one of many applications targeted by DARPA [7]. One challenge is the use of multiple electrode arrays in multiple fascicles of multiple nerves, making up to hundreds of electrode sites. In this paper, an in-vivo optimized serial communications approach is implemented which allows minimal wiring starting from a central hub to multiple smart tiny active modules with "city" addresses, each containing smart mixed signal custom ASICs with "city street" addresses and electrode sites with "house" addresses.
机译:刺激和记录允许假体的触觉的周围神经元只是DARPA靶向治疗的众多应用之一[7]。挑战之一是在多条神经的多个束中使用多个电极阵列,最多可形成数百个电极部位。在本文中,实现了一种体内优化的串行通信方法,该方法允许从中央集线器到具有“城市”地址的多个智能微型有源模块的最少布线,每个模块都包含具有“城市街道”地址和电极的智能混合信号定制ASIC。具有“房屋”地址的网站。

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