Liu Ziyi, Zhou Congcong, Wang Hongwei, He Yong
College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, China.
Guangdong Transtek Medical Electronics Co., Ltd., Zhongshan, China.
Front Med (Lausanne). 2022 Aug 26;9:851172. doi: 10.3389/fmed.2022.851172. eCollection 2022.
Blood pressure is one of the basic physiological parameters of human physiology. Frequent and repeated measurement of blood pressure along with recording of environmental or other physiological parameters when measuring blood pressure may reveal important cardiovascular risk factors that can predict occurrence of cardiovascular events. Currently, wearable non-invasive blood pressure measurement technology has attracted much research attention. Several different technical routes have been proposed to solve the challenge between portability or continuity of measurement methods and medical level accuracy of measurement results. The accuracy of blood pressure measurement technology based on auscultation and oscillography has been clinically verified, while majority of other technical routes are being explored at laboratory or multi-center clinical demonstration stage. Normally, Blood pressure measurement based on oscillographic method outside the hospital can only be measured at intervals. There is a need to develop techniques for frequent and high-precision blood pressure measurement under natural conditions outside the hospital. In this paper, we discussed the current status of blood pressure measurement technology and development trends of blood pressure measurement technology in different scenarios. We focuses on the key technical challenges and the latest advances in the study of miniaturization devices based on oscillographic method at wrist and PTT related method at finger positions as well as technology processes. This study is of great significance to the application of high frequency blood pressure measurement technology.
血压是人体生理学的基本生理参数之一。在测量血压时,频繁且重复地测量血压并记录环境或其他生理参数,可能会揭示出能够预测心血管事件发生的重要心血管危险因素。目前,可穿戴式无创血压测量技术已引起了众多研究关注。人们提出了几种不同的技术路线来解决测量方法的便携性或连续性与测量结果的医学级准确性之间的挑战。基于听诊和示波法的血压测量技术的准确性已得到临床验证,而其他大多数技术路线正处于实验室或多中心临床示范阶段。通常,在医院外基于示波法的血压测量只能间隔进行。有必要开发在医院外自然条件下进行频繁且高精度血压测量的技术。在本文中,我们讨论了血压测量技术的现状以及不同场景下血压测量技术的发展趋势。我们重点关注了基于手腕示波法和手指位置的PTT相关方法的小型化设备研究中的关键技术挑战和最新进展以及技术流程。本研究对高频血压测量技术的应用具有重要意义。