Department of Electronic Engineering, The Chinese University of Hong Kong, Hong Kong, China.
Department of Medicine and Therapeutics, The Chinese University of Hong Kong, Hong Kong, China.
Sci Rep. 2017 Sep 14;7(1):11554. doi: 10.1038/s41598-017-11507-3.
Cuffless technique enables continuous blood pressure (BP) measurement in an unobtrusive manner, and thus has the potential to revolutionize the conventional cuff-based approaches. This study extends the pulse transit time (PTT) based cuffless BP measurement method by introducing a new indicator - the photoplethysmogram (PPG) intensity ratio (PIR). The performance of the models with PTT and PIR was comprehensively evaluated in comparison with six models that are based on sole PTT. The validation conducted on 33 subjects with and without hypertension, at rest and under various maneuvers with induced BP changes, and over an extended calibration interval, respectively. The results showed that, comparing to the PTT models, the proposed methods achieved better accuracy on each subject group at rest state and over 24 hours calibration interval. Although the BP estimation errors under dynamic maneuvers and over extended calibration interval were significantly increased for all methods, the proposed methods still outperformed the compared methods in the latter situation. These findings suggest that additional BP-related indicator other than PTT has added value for improving the accuracy of cuffless BP measurement. This study also offers insights into future research in cuffless BP measurement for tracking dynamic BP changes and over extended periods of time.
无袖带技术能够以非侵入式的方式连续测量血压(BP),因此有可能彻底改变传统的袖带式方法。本研究通过引入新的指标 - 光体积描记图(PPG)强度比(PIR),扩展了基于脉搏传输时间(PTT)的无袖带 BP 测量方法。与仅基于 PTT 的六个模型相比,综合评估了具有 PTT 和 PIR 的模型的性能。该验证在 33 名患有和不患有高血压的受试者中进行,分别在休息状态和各种诱导血压变化的操作下以及在延长的校准间隔下进行。结果表明,与 PTT 模型相比,在休息状态和 24 小时校准间隔下,对于每个受试者组,所提出的方法在每个受试者组中都实现了更好的准确性。尽管在动态操作下和在延长的校准间隔下,所有方法的 BP 估计误差都显著增加,但在所研究的后期情况下,所提出的方法仍然优于比较方法。这些发现表明,除了 PTT 之外,其他与血压相关的指标对于提高无袖带 BP 测量的准确性具有附加价值。本研究还为未来研究无袖带 BP 测量提供了一些思路,以跟踪动态血压变化和延长的时间段。