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A wearable heart monitor at the ear using ballistocardiogram (BCG) and electrocardiogram (ECG) with a nanowatt ECG heartbeat detection circuit

机译:使用心冲击描记图(BCG)和心电图(ECG)以及纳瓦级心电图心跳检测电路的耳朵可穿戴式心脏监护仪

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摘要

This work presents a wearable heart monitor at the ear that uses the ballistocardiogram (BCG) and the electrocardiogram (ECG) to extract heart rate, stroke volume, and pre-ejection period (PEP) for the application of continuous heart monitoring. Being a natural anchoring point, the ear is demonstrated as a viable location for the integrated sensing of physiological signals. The source of periodic head movements is identified as a type of BCG, which is measured using an accelerometer. The head BCG's principal peaks (J-waves) are synchronized to heartbeats. Ensemble averaging is used to obtain consistent J-wave amplitudes, which are related to stroke volume. The ECG is sensed locally near the ear using a single-lead configuration. When the BCG and the ECG are used together, an electromechanical duration called the RJ interval can be obtained. Because both head BCG and ECG have low signal-to-noise ratios, cross-correlation is used to statistically extract the RJ interval. The ear-worn device is wirelessly connected to a computer for real time data recording. A clinical test involving hemodynamic maneuvers is performed on 13 subjects. The results demonstrate a linear relationship between the J-wave amplitude and stroke volume, and a linear relationship between the RJ interval and PEP. While the clinical device uses commercial components, a custom integrated circuit for ECG heartbeat detection is designed with the goal of reducing power consumption and device size. With 58nW of power consumption, the ECG circuit replaces the traditional instrumentation amplifier, analog-to-digital converter, and signal processor with a single chip solution. The circuit demonstrates a topology that takes advantage of the ECG's characteristics to extract R-wave timings at the chest and the ear in the presence of baseline drift, muscle artifact, and signal clipping.
机译:这项工作提出了一种可穿戴式心脏监护仪,用于耳部,该监护仪使用心动描记图(BCG)和心电图(ECG)提取心率,中风量和射血前期(PEP),以进行连续心脏监护。作为自然的固定点,耳朵被证明是生理信号综合感测的可行场所。头部周期性运动的源被识别为BCG类型,它是使用加速度计测量的。头部BCG的主峰(J波)与心跳同步。集合平均用于获得与笔画音量相关的一致的J波振幅。使用单导联配置可在耳朵附近局部感应ECG。当BCG和ECG一起使用时,可以获得称为RJ间隔的机电持续时间。由于头部BCG和ECG均具有较低的信噪比,因此使用互相关来统计地提取RJ间隔。耳戴式设备无线连接到计算机以进行实时数据记录。对13名受试者进行了涉及血液动力学操作的临床测试。结果表明,J波振幅与行程量之间呈线性关系,RJ间隔与PEP之间呈线性关系。尽管临床设备使用商用组件,但旨在降低功耗和设备尺寸的目标是设计用于ECG心跳检测的定制集成电路。 ECG电路功耗仅为58nW,用单芯片解决方案替代了传统的仪表放大器,模数转换器和信号处理器。该电路演示了一种拓扑结构,该拓扑结构利用ECG的特性在存在基线漂移,肌肉伪影和信号削波的情况下提取胸部和耳朵的R波时间。

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    He David Da;

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  • 年度 2013
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