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Integrated circuits design for neural recording sensor interface

机译:神经记录传感器接口的集成电路设计

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Neural signal recording is attracting more and more attention, as it provides an necessary approach to read brain activities, understand the brain operation and restore the lost motor function of the body. One of the most important modules in the neural recording system is the sensor interface IC, which captures, amplifies, filters, and digitizes the weak neural signal. In order to preserve free movement of the subject under testing and minimize the risk of infection, the sensor interface IC is usually implanted under the skin or skull with wireless transmission. The nature of the neural signal and its recording scenarios impose rigid design specifications to the sensor interface IC, such as low noise, low power, low cut-off frequency and minimum chip size. Many designs have been reported recently to tackle these challenges in neural recording system. In this paper, design techniques for neural recording sensor interface IC will be introduced, including the design of system architecture and neural amplifier. Methods to realize low power, low noise and low cut-off frequency are investigated. In addition, the methods to achieve system power and area optimization are also discussed.
机译:神经信号记录吸引了越来越多的关注,因为它提供了一种读取大脑活动,了解大脑操作并恢复身体丧失的运动功能的必要方法。神经记录系统中最重要的模块之一是传感器接口IC,它可以捕获,放大,过滤和数字化微弱的神经信号。为了保持受测对象的自由移动并最大程度地减少感染的风险,通常将传感器接口IC通过无线传输植入皮肤或颅骨下方。神经信号的性质及其记录场景对传感器接口IC施加了严格的设计规范,例如低噪声,低功耗,低截止频率和最小芯片尺寸。最近报道了许多设计来解决神经记录系统中的这些挑战。本文将介绍神经记录传感器接口IC的设计技术,包括系统架构和神经放大器的设计。研究了实现低功耗,低噪声和低截止频率的方法。此外,还讨论了实现系统功耗和面积优化的方法。

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