材料科学
血压
可穿戴计算机
脉搏(音乐)
压电
声学
压电传感器
脉冲波
脉冲波速
软件可移植性
压力传感器
连续波
生物医学工程
电子工程
计算机科学
物理
医学
工程类
电信
光学
嵌入式系统
内科学
机械工程
程序设计语言
激光器
抖动
探测器
作者
Zhiran Yi,Zhaoxu Liu,Wenbo Li,Tao Ruan,Xiang Chen,Jingquan Liu,Bin Yang,Wenming Zhang
标识
DOI:10.1002/adma.202110291
摘要
Piezoelectric arterial pulse wave dynamics are traditionally considered to be similar to those of typical blood pressure waves. However, achieving accurate continuous blood pressure wave monitoring based on arterial pulse waves remains challenging, because the correlation between piezoelectric pulse waves and their related blood pressure waves is unclear. To address this, the correlation between piezoelectric pulse waves and blood pressure waves is first elucidated via theoretical, simulation, and experimental analysis of these dynamics. Based on this correlation, the authors develop a wireless wearable continuous blood pressure monitoring system, with better portability than conventional systems that are based on the pulse wave velocity between multiple sensors. They explore the feasibility of achieving wearable continuous blood pressure monitoring without motion artifacts, using a single piezoelectric sensor. These findings eliminate the controversy over the arterial pulse wave piezoelectric response, and can potentially be used to develop a portable wearable continuous blood pressure monitoring device for the early prevention and daily control of hypertension.
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