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Adaptive Deep Brain Stimulation System Based on ADS1292

机译:基于ADS1292的自适应深部脑刺激系统

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In order to monitor the development of Parkinson's disease for a long time and to study the mechanism of deep brain stimulation for Parkinson's disease, an adaptive deep brain stimulation system based on ADS1292 was designed for Parkinson's rats. The system consists of a main control unit, an acquisition module, a stimulation module and a wireless communication module, the system uses high-performance, low-power MSP430 as the main control chip. The high resolution, low noise analog to digital conversion chip ADS1292 acquires local field potential (LFP) signals. The stimulus module uses the DAC8532 to output a square wave with adjustable amplitude, frequency, and pulse width. At the same time, the wireless communication module uses the Bluetooth to transmit the LFP signal to the upper computer for processing and receive the control command from the upper computer for achieving adaptive adjustment of the stimulus parameters. Through verification, the system completes the generation of stimulation signals and the acquisition of weak bioelectric signals. The system is light in weight, small in size and low in power consumption, and is very suitable for small animal experiments such as rats.
机译:为了长期监测帕金森氏病的发展并研究帕金森氏病的深部脑刺激机制,针对帕金森氏病大鼠设计了一种基于ADS1292的自适应深部脑刺激系统。该系统由一个主控制单元,一个采集模块,一个刺激模块和一个无线通信模块组成,该系统使用高性能,低功耗的MSP430作为主控制芯片。高分辨率,低噪声模数转换芯片ADS1292采集本地场电势(LFP)信号。激励模块使用DAC8532输出幅度,频率和脉冲宽度可调的方波。同时,无线通信模块使用蓝牙将LFP信号发送到上位计算机进行处理,并从上位计算机接收控制命令,以实现对刺激参数的自适应调整。通过验证,该系统完成了刺激信号的生成和微弱生物电信号的采集。该系统重量轻,尺寸小,功耗低,非常适合诸如老鼠之类的小型动物实验。

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