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可穿戴无线血压计:用于血压估计的灵活可移动工具。

Wearable Wireless-Enabled Oscillometric Sphygmomanometer: A Flexible Ambulatory Tool for Blood Pressure Estimation.

出版信息

IEEE Trans Biomed Circuits Syst. 2020 Dec;14(6):1287-1298. doi: 10.1109/TBCAS.2020.3026992. Epub 2020 Dec 31.

Abstract

This article presents the design of an unobtrusive and wireless-enabled blood pressure (BP) monitoring system that is suitable for ambulatory use. By adopting low-profile electromechanical actuators and a compact printed circuit board design, this lightweight device can be worn directly on the occlusive cuff, therefore eliminating the need of a long and obtrusive tubing interconnect between the device and the cuff, as seen in traditional ambulatory BP monitors (ABPM). Instead of executing the BP estimation algorithm directly on the device, the proposed design rather sends the raw oscillometric signal through a Bluetooth Low Energy link, thus granting any Bluetooth-enabled device to gather and process the signal using a dedicated application. This in turn allows to assess several BP estimation algorithms found in the literature without being limited by the device resources. Three of them were tested with the designed prototype and validated with a reference equipment on 11 subjects. Overall, two of the algorithms revealed a mean absolute difference with the reference equipment of less than 5 mmHg and almost zero bias along with a standard deviation of less than 6 mmHg. Reproducibility results shown a mean difference between successive measurements of less than 3.1 mmHg and a standard deviation of less than 2.4 mmHg. The assembled prototype dimensions are 63.8 × 134.8 × 24.8 mm and features an autonomy of 63.1 hours. Comparison with commercial ABPM devices shown that the proposed design is 18% to 33% smaller volume-wise, 5% to 27% weight-wise and height is reduced by 17% to 25%.

摘要

这篇文章提出了一种设计,用于制作一种轻便、无线的血压(BP)监测系统,适用于日常使用。通过采用低轮廓机电致动器和紧凑的印刷电路板设计,这个轻便的设备可以直接佩戴在加压袖带上,因此无需使用传统的动态血压监测仪(ABPM)中在设备和袖带之间的长而突兀的管连接。与直接在设备上执行 BP 估计算法不同,所提出的设计通过蓝牙低能耗链路发送原始示波法信号,从而允许任何支持蓝牙的设备使用专用应用程序来采集和处理信号。这反过来又允许评估文献中找到的几种 BP 估计算法,而不受设备资源的限制。其中三种算法在设计的原型上进行了测试,并在 11 个对象上用参考设备进行了验证。总的来说,其中两种算法与参考设备的平均绝对差值小于 5mmHg,几乎没有偏差,标准差小于 6mmHg。再现性结果显示连续测量之间的平均差值小于 3.1mmHg,标准差小于 2.4mmHg。组装原型的尺寸为 63.8×134.8×24.8mm,自主性为 63.1 小时。与商业 ABPM 设备的比较表明,所提出的设计在体积上缩小了 18%至 33%,重量上缩小了 5%至 27%,高度缩小了 17%至 25%。

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