Faculty of Electrical Engineering, University of Ljubljana, 1000 Ljubljana, Slovenia.
Sensors (Basel). 2023 Oct 9;23(19):8340. doi: 10.3390/s23198340.
There is a worldwide need to improve blood pressure (BP) measurement error in order to correctly diagnose hypertension. Cardiovascular diseases cause 17.9 million deaths annually and are a substantial monetary strain on healthcare. The current measurement uncertainty of 3 mmHg should be improved upon. Dynamic pressure measurement standards are lacking or non-existing. In this study we propose a novel method of measuring air pressure inside the sphygmomanometer tubing during BP measurement using a condenser microphone. We designed, built, and tested a system that uses a radiofrequency (RF) modulation method to convert changes in capacitance of a condenser microphone into pressure signals. We tested the RF microphone with a low-frequency (LF) sound source, BP simulator and using a piezoresistive pressure sensor as a reference. Necessary tests were conducted to assess the uncertainty budget of the system. The RF microphone prototype has a working frequency range from 0.5 Hz to 280 Hz in the pressure range from 0 to 300 mmHg. The total expanded uncertainty (k = 2, = 95.5%) of the RF microphone was 4.32 mmHg. The proposed method could establish traceability of BP measuring devices to acoustic standards described in IEC 61094-2 and could also be used in forming dynamic BP standards.
全世界都需要提高血压(BP)测量误差的准确性,以便正确诊断高血压。心血管疾病每年导致 1790 万人死亡,给医疗保健带来了巨大的经济负担。目前 3mmHg 的测量不确定度应该得到改善。动态压力测量标准缺乏或不存在。在这项研究中,我们提出了一种使用电容式麦克风测量血压测量时血压计管内气压的新方法。我们设计、制造和测试了一种使用射频(RF)调制方法将电容式麦克风电容变化转换为压力信号的系统。我们使用低频(LF)声源、BP 模拟器和压阻式压力传感器对 RF 麦克风进行了测试作为参考。进行了必要的测试来评估系统的不确定度预算。RF 麦克风原型在 0 至 300mmHg 的压力范围内具有 0.5Hz 至 280Hz 的工作频率范围。RF 麦克风的总扩展不确定度(k = 2, = 95.5%)为 4.32mmHg。该方法可以将血压测量设备的可追溯性建立到 IEC 61094-2 中描述的声学标准,并可用于形成动态血压标准。