Thin, soft, wearable system for continuous wireless monitoring of artery blood pressure

Author:

Li JianORCID,Jia HuilingORCID,Zhou JingkunORCID,Huang XingcanORCID,Xu Long,Jia ShengxinORCID,Gao Zhan,Yao KuanmingORCID,Li DengfengORCID,Zhang Binbin,Liu YimingORCID,Huang YaORCID,Hu Yue,Zhao Guangyao,Xu Zitong,Li Jiyu,Yiu Chun Ki,Gao Yuyu,Wu MenggeORCID,Jiao YanliORCID,Zhang Qiang,Tai XuechengORCID,Chan Raymond H.,Zhang YuantingORCID,Ma Xiaohui,Yu XingeORCID

Abstract

AbstractContinuous 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.

Funder

Innovation and Technology Commission

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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