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An Implantable Neural Sensing Microsystem with Fiber-Optic Data Transmission and Power Delivery

机译:具有光纤数据传输和功率传输的可植入神经传感微系统

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We have developed a prototype cortical neural sensing microsystem for brain implantable neuroengineering applications. Its key feature is that both the transmission of broadband, multichannel neural data and power required for the embedded microelectronics are provided by optical fiber access. The fiber-optic system is aimed at enabling neural recording from rodents and primates by converting cortical signals to a digital stream of infrared light pulses. In the full microsystem whose performance is summarized in this paper, an analog-to-digital converter and a low power digital controller IC have been integrated with a low threshold, semiconductor laser to extract the digitized neural signals optically from the implantable unit. The microsystem also acquires electrical power and synchronization clocks via optical fibers from an external laser by using a highly efficient photovoltaic cell on board. The implantable unit employs a flexible polymer substrate to integrate analog and digital microelectronics and on-chip optoelectronic components, while adapting to the anatomical and physiological constraints of the environment. A low power analog CMOS chip, which includes preamplifier and multiplexing circuitry, is directly flip-chip bonded to the microelectrode array to form the cortical neurosensor device.
机译:我们已经开发了用于大脑植入神经工程应用的皮质神经传感微系统原型。它的关键特征是宽带接入,多通道神经数据传输和嵌入式微电子设备所需的功率均由光纤接入提供。该光纤系统旨在通过将皮层信号转换为红外光脉冲的数字流,实现对啮齿动物和灵长类动物的神经记录。在本文概述的整个微系统中,模拟-数字转换器和低功耗数字控制器IC已与低阈值半导体激光器集成在一起,以从植入式单元中光学提取数字化的神经信号。该微系统还通过使用板载高效光伏电池,通过光纤从外部激光器获取电源和同步时钟。可植入单元采用柔性聚合物基板,以集成模拟和数字微电子学以及芯片上的光电组件,同时适应环境的解剖和生理限制。将包括前置放大器和多路复用电路的低功耗模拟CMOS芯片直接倒装芯片连接至微电极阵列,以形成皮层神经传感器设备。

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