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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >The 128-Channel Fully Differential Digital Integrated Neural Recording and Stimulation Interface
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The 128-Channel Fully Differential Digital Integrated Neural Recording and Stimulation Interface

机译:128通道全差分数字集成神经记录和刺激接口

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We present a fully differential 128-channel integrated neural interface. It consists of an array of 8$,times,$ 16 low-power low-noise signal–recording and generation circuits for electrical neural activity monitoring and stimulation, respectively. The recording channel has two stages of signal amplification and conditioning with and a fully differential 8-b column-parallel successive approximation (SAR) analog-to-digital converter (ADC). The total measured power consumption of each recording channel, including the SAR ADC, is 15.5 $mu$W. The measured input-referred noise is 6.08 $mu {hbox {V}}_{rm rms}$ over a 5-kHz bandwidth, resulting in a noise efficiency factor of 5.6. The stimulation channel performs monophasic or biphasic voltage-mode stimulation, with a maximum stimulation current of 5 mA and a quiescent power dissipation of 51.5 $mu$ W. The design is implemented in 0.35- $mu$m complementary metal–oxide semiconductor technology with the channel pitch of 200 $mu$m for a total die size of 3.4 mm$,times,$2.5 mm and a total power consumption of 9.33 mW. The neural interface was validated in in vitro recording of a low-Mg$^{2+}$/high-K$^{+}$ epileptic seizure model in an intact hippocampus of a mouse.
机译:我们提出了一个完全差分的128通道集成神经接口。它由8个,×16个低功率低噪声信号记录和生成电路组成,分别用于神经电活动监测和刺激。记录通道具有两级信号放大和调理,以及一个全差分8位列并行逐次逼近(SAR)模数转换器(ADC)。每个记录通道(包括SAR ADC)的总测量功耗为15.5μmu$ W。在5 kHz带宽上,测得的输入等效噪声为6.08μmu{hbox {V}} _ {rm rms} $,噪声效率系数为5.6。激励通道执行单相或双相电压模式激励,最大激励电流为5 mA,静态功耗为51.5μμW。该设计采用0.35μμm互补金属氧化物半导体技术实现,具有通道间距为200μm,总裸片尺寸为3.4mm×2.5mm,总功耗为9.33mW。在小鼠完整海马体中低Mg $ ^ {2 +} $ /高K $ ^ {+} $癫痫发作模型的体外记录中验证了神经接口。

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