Department of Electronic Science and Technology, Huazhong University of Science and Technology, Wuhan, People's Republic of China.
J Neural Eng. 2012 Oct;9(5):056010. doi: 10.1088/1741-2560/9/5/056010. Epub 2012 Sep 6.
Neurostimulation of the spinal cord or brain has been used to inhibit nociceptive signals in pain management applications. Nevertheless, most of the current neurostimulation models are based on open-loop system designs. There is a lack of closed-loop systems for neurostimulation in research with small freely-moving animals and in future clinical applications. Based on our previously developed analog wireless system for closed-loop neurostimulation, a digital wireless system with real-time feedback between recorder and stimulator modules has been developed to achieve multi-channel communication. The wireless system includes a wearable recording module, a wearable stimulation module and a transceiver connected to a computer for real-time and off-line data processing, display and storage. To validate our system, wide dynamic range neurons in the spinal cord dorsal horn have been recorded from anesthetized rats in response to graded mechanical stimuli (brush, pressure and pinch) applied in the hind paw. The identified nociceptive signals were used to automatically trigger electrical stimulation at the periaqueductal gray in real time to inhibit their own activities by the closed-loop design. Our digital wireless closed-loop system has provided a simplified and efficient method for further study of pain processing in freely-moving animals and potential clinical application in patients.
脊髓或大脑的神经刺激已被用于抑制疼痛管理应用中的伤害性信号。然而,大多数当前的神经刺激模型基于开环系统设计。在小型自由移动动物的研究和未来的临床应用中,神经刺激缺乏闭环系统。基于我们之前开发的用于闭环神经刺激的模拟无线系统,已经开发出具有记录器和刺激器模块之间实时反馈的数字无线系统,以实现多通道通信。该无线系统包括一个可穿戴的记录模块、一个可穿戴的刺激模块和一个与计算机相连的收发器,用于实时和离线数据处理、显示和存储。为了验证我们的系统,已经从麻醉大鼠的脊髓背角记录了宽动态范围神经元,以响应施加在后爪上的分级机械刺激(刷、压和捏)。识别出的伤害性信号被用于实时自动触发电刺激,通过闭环设计抑制自身活动。我们的数字无线闭环系统为进一步研究自由移动动物的疼痛处理以及患者的潜在临床应用提供了一种简化和高效的方法。