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A highly-integrated biomedical multiprocessor system for portable brain-heart monitoring

机译:高度集成的生物医学多处理器系统,用于便携式脑心监护

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In this paper, a highly-integrated multiprocessor chip design enabling the real-time processing of biomedical signals in portable brain-heart monitoring systems is presented. The architecture comprises a novel diffuse optical tomography (DOT) processor for taking brain imaging, an independent component analysis (ICA) processor for removing artifacts of brain electroencephalogram (EEG) signals, and a heart rate variability (HRV) analysis processor for monitoring heart electrocardiogram (ECG) signals. The multiprocessor chip implemented in 65nm CMOS technology comprises 368k gates and occupies a core area of 462k µm2. Simulated power consumption using a full operation test case reports 3.6mW under the condition of 1.0V core supply voltage and 24MHz clock operating frequency.
机译:在本文中,提出了一种高度集成的多处理器芯片设计,可以在便携式脑部心脏监测系统中实时处理生物医学信号。该架构包括用于进行大脑成像的新型漫射光学断层扫描(DOT)处理器,用于去除脑电图(EEG)信号伪影的独立成分分析(ICA)处理器以及用于监视心脏心电图的心率变异性(HRV)分析处理器(ECG)信号。采用65nm CMOS技术实现的多处理器芯片包含368k栅极,并占据了462k µm 2 的核心面积。在1.0V内核电源电压和24MHz时钟工作频率的条件下,使用完整工作测试案例进行的模拟功耗报告为3.6mW。

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