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Low-Power Communication for an Implanted Intracortical Visual Prosthesis

机译:植入式皮质内视觉假体的低功耗通信

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Assisting visually impaired people to see again using technology is quite challenging, especially for cases where most of the visual pathway is damaged. The only viable option is to stimulate the visual cortex directly. Sending the stimulation data to electrodes on the visual cortex is preferably done wirelessly to avoid infections and to ease mobility. The receiver on the implant poses a challenge in design, as the power supply is limited. In this paper, vital system requirements for this communication link are discussed. A low power system-level approach is presented which seeks to avoid power hungry components. This leads to the consideration of a bandpass sampled phase shift keying scheme via an inductive link. We propose a non-coherent digital demodulator, which relaxes the need for low phase noise oscillators which consume more power and, also avoids the use of phase locks loops. The overall communication system has a potential to deliver stimulation data to the implant side in the presence of simultaneous power transfer and reception of recorded data from the brain.
机译:协助视障人士再次使用技术是一项艰巨的任务,特别是在大多数视线受损的情况下。唯一可行的选择是直接刺激视觉皮层。优选地以无线方式将刺激数据发送到视觉皮层上的电极,以避免感染并减轻活动性。植入物上的接收器在设计上面临挑战,因为电源受到限制。在本文中,讨论了此通信链接的关键系统要求。提出了一种低功耗的系统级方法,该方法旨在避免耗电的组件。这导致考虑通过感应链路的带通采样相移键控方案。我们提出了一种非相干数字解调器,它可以放宽对消耗更多功率的低相位噪声振荡器的需求,并且还避免使用锁相环。整个通信系统具有在同时进行功率传输和从大脑接收记录数据的同时将刺激数据传递到植入物一侧的潜力。

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