A Real-Time DSP-Based Biohybrid MEA System for Seizure Detection In Vitro

J. Ahmadi-Farsani, Davide Caron, G. Panuccio, B. Linares-Barranco, T. Serrano-Gotarredona
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引用次数: 1

Abstract

This paper presents a biohybrid arrangement made of a commercial microelectrode array (MEA) system for seizure-like activity detection in brain slices. The set-up takes advantage of an embedded fixed-point digital signal processor (DSP) to implement a neuron model and a field-potential to spike converter (FP2SP). The neuron model is biologically plausible and capable of generating various firing modalities. Based on a three-step algorithm, FP2SP extracts spikes from the epileptiform activity generated by brain slices. The seizure detector system is developed by connecting the FP2SP to the model neuron and properly tuning the FP2SP parameters. The results show that all the blocks of this system can operate properly in real-time mode and recognize seizure-like activity.
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基于实时dsp的体外癫痫发作检测生物杂交MEA系统
本文介绍了一种由商用微电极阵列(MEA)系统组成的生物混合排列,用于脑切片的类癫痫活动检测。该装置利用嵌入式定点数字信号处理器(DSP)实现神经元模型和场电位-尖峰转换器(FP2SP)。神经元模型在生物学上是可信的,并且能够产生各种放电模式。基于三步算法,FP2SP从大脑切片产生的癫痫样活动中提取峰值。通过将FP2SP连接到模型神经元上,并适当调整FP2SP参数,开发了癫痫检测系统。结果表明,该系统各模块均能在实时模式下正常运行,并能识别类癫痫活动。
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