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A Bidirectional Neuromodulation Technology for Nerve Recording and Stimulation

机译:一种用于神经记录和刺激的双向神经调节技术

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摘要

Electrical nerve recording and stimulation technologies are critically needed to monitor and modulate nerve activity to treat a variety of neurological diseases. However, current neuromodulation technologies presented in the literature or commercially available products cannot support simultaneous recording and stimulation on the same nerve. To solve this problem, a new bidirectional neuromodulation system-on-chip (SoC) is proposed in this paper, which includes a frequency-shaping neural recorder and a fully integrated neural stimulator with charge balancing capability. In addition, auxiliary circuits consisting of power management and data transmission circuits are designed to provide the necessary power supply for the SoC and the bidirectional data communication between the SoC and an external computer via a universal serial bus (USB) interface, respectively. To achieve sufficient low input noise for sensing nerve activity at a sub-10 μ V range, several noise reduction techniques are developed in the neural recorder. The designed SoC was fabricated in a 0.18 μ m high-voltage Bipolar CMOS DMOS (BCD) process technology that was described in a previous publication and it has been recently tested in animal experiments that demonstrate the proposed SoC is capable of achieving reliable and simultaneous electrical stimulation and recording on the same nerve.
机译:神经电记录和刺激技术极为需要监测并调节神经活动,以治疗各种神经系统疾病。然而,目前的神经调节技术在文献中提出的或市售的产品不能支持同时记录和刺激在同一个神经。为了解决这个问题,新的双向神经调节系统级芯片(SoC)在本文中,其中包括一个频率整形神经记录器,并用电荷平衡功能的完全集成的神经刺激器,提出了。此外,由电源管理和数据传输电路的辅助电路被设计以提供在SoC必要的电源,并通过通用串行总线(USB)接口的SoC和外部计算机之间的双向数据通信,分别。为了实现用于在子10μV范围内感测的神经活动足够低的输入噪声,若干噪声降低技术在神经记录器开发的。所设计的SoC在0.18μ米高压双极CMOS DMOS(BCD)的过程,在先前的出版物中描述的技术制造,并且它已经在动物实验中证明了该SoC的能够实现的最近测试可靠和同时电刺激和记录在相同的神经。

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