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  • Thin, soft, wearable system...
    Li, Jian; Jia, Huiling; Zhou, Jingkun; Huang, Xingcan; Xu, Long; Jia, Shengxin; Gao, Zhan; Yao, Kuanming; Li, Dengfeng; Zhang, Binbin; Liu, Yiming; Huang, Ya; Hu, Yue; Zhao, Guangyao; Xu, Zitong; Li, Jiyu; Yiu, Chun Ki; Gao, Yuyu; Wu, Mengge; Jiao, Yanli; Zhang, Qiang; Tai, Xuecheng; Chan, Raymond H; Zhang, Yuanting; Ma, Xiaohui; Yu, Xinge

    Nature communications, 08/2023, Letnik: 14, Številka: 1
    Journal Article

    Abstract Continuous monitoring of arterial blood pressure (BP) outside of a clinical setting is crucial for preventing and diagnosing hypertension related diseases. However, current continuous BP monitoring instruments suffer from either bulky systems or poor user-device interfacial performance, hampering their applications in continuous BP monitoring. Here, we report a thin, soft, miniaturized system (TSMS) that combines a conformal piezoelectric sensor array, an active pressure adaptation unit, a signal processing module, and an advanced machine learning method, to allow real wearable, continuous wireless monitoring of ambulatory artery BP. By optimizing the materials selection, control/sampling strategy, and system integration, the TSMS exhibits improved interfacial performance while maintaining Grade A level measurement accuracy. Initial trials on 87 volunteers and clinical tracking of two hypertension individuals prove the capability of the TSMS as a reliable BP measurement product, and its feasibility and practical usability in precise BP control and personalized diagnosis schemes development.