Lux Capital Management, New York, NY 10017, USA.
IEEE Trans Neural Syst Rehabil Eng. 2010 Apr;18(2):134-41. doi: 10.1109/TNSRE.2009.2039606. Epub 2010 Jan 12.
To create a wireless neural recording system that can benefit from the continuous advancements being made in embedded microcontroller and communications technologies, an embedded-system-based architecture for wireless neural recording has been designed, fabricated, and tested. The system consists of commercial-off-the-shelf wireless-enabled processor modules (motes) for communicating the neural signals, and a back-end database server and client application for archiving and browsing the neural signals. A neural-signal-acquisition application has been developed to enable the mote to either acquire neural signals at a rate of 4000 12-bit samples per second, or detect and transmit spike heights and widths sampled at a rate of 16670 12-bit samples per second on a single channel. The motes acquire neural signals via a custom low-noise neural-signal amplifier with adjustable gain and high-pass corner frequency that has been designed, and fabricated in a 1.5-microm CMOS process. In addition to browsing acquired neural data, the client application enables the user to remotely toggle modes of operation (real-time or spike-only), as well as amplifier gain and high-pass corner frequency.
为了利用嵌入式微控制器和通信技术的不断进步,设计、制造和测试了一种基于嵌入式系统的无线神经记录架构,以创建无线神经记录系统。该系统由商用现货(COTS)的无线处理器模块( mote)组成,用于传输神经信号,以及后端数据库服务器和客户端应用程序,用于归档和浏览神经信号。已经开发了一个神经信号采集应用程序,使 mote 能够以每秒 4000 个 12 位样本的速率采集神经信号,或者以每秒 16670 个 12 位样本的速率检测和传输单个通道上的尖峰高度和宽度。mote 通过定制的低噪声神经信号放大器采集神经信号,该放大器具有可调增益和高通截止频率,已经在 1.5 微米 CMOS 工艺中设计和制造。除了浏览采集的神经数据外,客户端应用程序还使用户能够远程切换操作模式(实时或仅尖峰)以及放大器增益和高通截止频率。