一种灵活的基于张力动脉造影的身体传感器网络,用于动脉血压的无箍测量

Xiaorong Ding, Wenxuan Dai, Ningqi Luo, Jing Liu, Ni Zhao, Yuan-ting Zhang
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引用次数: 13

摘要

最近在不引人注目的传感技术方面的进展,特别是在柔性、可拉伸和可打印传感方面的进展,已经产生了各种新的信号采集方式,如可拉伸表皮心电图(ECG)、有机光电体积脉搏图(PPG)和柔性血管造影(TAG),这是一种无袖带连续记录动脉血压(BP)的技术。随着可穿戴计算和无线通信技术的快速发展,所有这些模式都可以集成到一个身体传感器网络(BSN)中进行远程生理多参数监测。在本文中,我们提出了一种基于TAG的BSN,用于不引人注目的BP测量,并可能实现自动无套BP校准,我们的工作重点是姿势变化对由TAG, ECG和PPG传感器组成的不同BSN节点计算的各种脉冲传递时间(PTT)的影响。具体来说,在不同的姿势下,不同的ptt与参考连续BP的相关性被检查。本研究结果表明,与ECG和PPG传感器相比,ECG和TAG传感器的PTT与参考BP具有更高的相关性,这表明柔性TAG传感器不仅可以用于无空校准,而且可以作为BSN中的替代节点进行连续的无空BP测量,并且精度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A flexible tonoarteriography-based body sensor network for cuffless measurement of arterial blood pressure
Recent advances in unobtrusive sensing technology, especially those in flexible, stretchable, and printable sensing, have given rise to various novel signal acquisition modalities, such as stretchable epidermal electrocardiography (ECG), organic photoplethysmography (PPG), and flexible tonoarteriography (TAG) which is the cuffless and continuous recording of arterial blood pressure (BP). With the fast development of wearable computing and wireless communication technologies, all these modalities can be integrated into a body sensor network (BSN) for remote physiological multi-parameter monitoring. In this paper, we propose a TAG-based BSN for unobtrusive BP measurement with possible automatic cuffless BP calibration, and our efforts focus on the effect of posture change on the various pulse transit time (PTT) calculated from different BSN nodes consisting of TAG, ECG, and PPG sensors. Specifically, correlations of different PTTs with reference continuous BP at different postures are examined. The results of this study demonstrate that the PTT from ECG and TAG sensors has higher correlation with the reference BP as compared to that from ECG and PPG sensors, which suggests that flexible TAG sensor may potentially be utilized not only for cuffless calibration, but also as an alternative node in the BSN for continuous, cuffless BP measurement with better accuracy.
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