School of Electrical Engineering and Computer Science, University of Ottawa, Ottawa, ON, Canada.
IEEE Trans Biomed Eng. 2012 Mar;59(3):608-18. doi: 10.1109/TBME.2011.2180019. Epub 2012 Feb 10.
Accurate automatic noninvasive assessment of blood pressure (BP) presents a challenge due to conditions like arrhythmias, obesity, and postural changes that tend to obfuscate arterial amplitude pulsations sensed by the cuff. Researchers tried to overcome this challenge by analyzing oscillometric pulses with the aid of a higher fidelity signal-the electrocardiogram (ECG). Moreover, pulse transit time (PTT) was employed to provide an additional method for BP estimation. However, these methods were not fully developed, suitably integrated, or tested. To address these issues, we present a novel method whereby ECG-assisted oscillometric and PTT (measured between ECG R-peaks and maximum slope of arterial pulse peaks) analyses are seamlessly integrated into the oscillometric BP measurement paradigm. The method bolsters oscillometric analysis (amplitude modulation) with more reliable ECG R-peaks provides a complementary measure with PTT analysis (temporal modulation) and fuses this information for robust BP estimation. We have integrated this technology into a prototype that comprises a BP cuff with an embedded conductive fabric ECG electrode, associated hardware, and algorithms. A pilot study has been undertaken on ten healthy subjects (150 recordings) to validate the performance of our prototype against United States Food and Drug Administration approved Omron oscillometric monitor (HEM-790IT). Our prototype achieves mean absolute difference of less than 5 mmHg and grade A as per the British Hypertension Society protocol for estimating BP, with the reference Omron monitor.
由于心律失常、肥胖和体位变化等情况会干扰袖带感知到的动脉幅度脉动,因此准确的自动无创血压评估是一个挑战。研究人员试图通过借助更高保真度信号-心电图(ECG)来分析示波脉搏,以克服这一挑战。此外,脉搏传导时间(PTT)也被用于提供另一种血压估计方法。然而,这些方法并未得到充分的开发、适当的整合或测试。为了解决这些问题,我们提出了一种新方法,即将 ECG 辅助示波和 PTT(在 ECG R 波峰值和动脉脉搏峰值最大斜率之间测量)分析无缝集成到示波血压测量范式中。该方法通过更可靠的 ECG R 波峰值增强了示波分析(幅度调制),通过 PTT 分析(时间调制)提供了补充测量,并融合了这些信息以实现稳健的血压估计。我们已经将这项技术集成到一个原型中,该原型包括一个带有嵌入式导电织物 ECG 电极的血压袖带、相关硬件和算法。我们已经在 10 名健康受试者(150 次记录)上进行了一项试点研究,以验证我们的原型与美国食品和药物管理局批准的欧姆龙示波监测器(HEM-790IT)相比的性能。我们的原型在根据英国高血压学会协议评估血压时,其平均绝对差值小于 5mmHg,且达到 A 级,与参考的欧姆龙监测器相当。