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硅基中央模式发生器控制体内运动。

A silicon central pattern generator controls locomotion in vivo.

出版信息

IEEE Trans Biomed Circuits Syst. 2008 Sep;2(3):212-22. doi: 10.1109/TBCAS.2008.2001867.

Abstract

We present a neuromorphic silicon chip that emulates the activity of the biological spinal central pattern generator (CPG) and creates locomotor patterns to support walking. The chip implements ten integrate-and-fire silicon neurons and 190 programmable digital-to-analog converters that act as synapses. This architecture allows for each neuron to make synaptic connections to any of the other neurons as well as to any of eight external input signals and one tonic bias input. The chip's functionality is confirmed by a series of experiments in which it controls the motor output of a paralyzed animal in real-time and enables it to walk along a three-meter platform. The walking is controlled under closed-loop conditions with the aide of sensory feedback that is recorded from the animal's legs and fed into the silicon CPG. Although we and others have previously described biomimetic silicon locomotor control systems for robots, this is the first demonstration of a neuromorphic device that can replace some functions of the central nervous system in vivo.

摘要

我们提出了一种神经形态硅芯片,该芯片模拟了生物脊髓中枢模式发生器 (CPG) 的活动,并产生了支持行走的运动模式。该芯片实现了十个积分-点火硅神经元和 190 个可编程数模转换器,充当突触。这种架构允许每个神经元与其他任何神经元以及八个外部输入信号和一个紧张性偏置输入进行突触连接。该芯片的功能通过一系列实验得到了证实,在这些实验中,它实时控制瘫痪动物的运动输出,并使动物能够沿着一个三米长的平台行走。行走是在闭环条件下进行控制的,借助于从动物腿部记录并反馈到硅 CPG 的感觉反馈。虽然我们和其他人以前已经描述过用于机器人的仿生硅运动控制系统,但这是第一个可以在体内替代中枢神经系统某些功能的神经形态设备的演示。

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