基于颈动脉和脚趾光容积图脉搏传递时间的无袖带连续血压测量。

Q3 Engineering Journal of Medical Engineering and Technology Pub Date : 2022-10-01 Epub Date: 2022-07-08 DOI:10.1080/03091902.2022.2077998
Aws Zuhair Sameen, Rosmina Jaafar, Edmond Zahedi, Gan Kok Beng
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引用次数: 1

摘要

血压(BP)是一个重要的健康参数,在一天中会发生变化。由于单一的高血压读数可能并不表明高血压,因此医生通常建议持续监测血压以确认高血压的诊断。在过去的几十年里,研究人员研究了基于脉冲传递时间(PTT)的无套管连续BP测量。本研究的主要目的是利用从颈动脉和脚趾采集的两个PPG信号,建立一个基于自回归(ARX)系统识别(SI)的PTT计算模型。这些信号来自65名年龄在20到60岁之间的受试者。研究结果分两个阶段得到验证。第一次验证包括使用SI的PTT估计的血压与使用袖带法测量的血压对所有受试者进行比较。采用该方法测得的血压与采用标准袖带法测得的血压相比,与收缩压(R2 = 0.8132)和舒张压(R2 = 0.8357)高度相关。第二次验证包括将使用系统识别的PTT值与由ECG-PPG方法得出的PTT结果进行比较。结果表明,两种方法高度相关(R2 = 0.7808),两种方法之间无显著差异(p < 0.05)
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Cuff-less and continuous blood pressure measurement based on pulse transit time from carotid and toe photoplethysmograms.

Blood pressure (BP) is a vital health parameter that varies throughout the day. As a single reading of high BP may not indicate hypertension, continuous monitoring of BP is usually recommended by medical doctors to confirm the diagnosis of hypertension. In the last few decades, researchers have investigated cuff-less and continuous BP measurements based on pulse transit time (PTT). The main purpose of this research is to develop an autoregressive (ARX) system identification (SI)-based PTT calculation model using two PPG signals acquired from carotid and toe. The signals were recorded from 65 subjects with an age range between 20 and 60 years. The results of the study have been validated in two stages. The first validation comprised the estimated BP from PTT using SI compared to the measured BP using the cuff-based method for all subjects. The results of the estimated BP using the proposed method compared to the measured BP obtained using the standard BP cuff measurement method are highly correlated to both systolic blood pressure (R2 = 0.8132) and diastolic blood pressure (R2 = 0.8357). The second validation consisted of comparing PTT values using system identification to the results of the PTT derived from the ECG-PPG method. The results showed that both methods are highly correlated (R2 = 0.7808), and there is no significant difference between them (p < 0.05) with a slightly better PTT estimation related to DBP in the proposed method. Our results have proven that the PTT obtained from the carotid PPG and toe PPG using the system identification approach yielded SBP and DBP estimations that are consistent with the values of the conventional BP cuff method. The newly proposed method has the advantage of being cuff-less and able to provide continuous BP measurements.

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来源期刊
Journal of Medical Engineering and Technology
Journal of Medical Engineering and Technology Engineering-Biomedical Engineering
CiteScore
4.60
自引率
0.00%
发文量
77
期刊介绍: The Journal of Medical Engineering & Technology is an international, independent, multidisciplinary, bimonthly journal promoting an understanding of the physiological processes underlying disease processes and the appropriate application of technology. Features include authoritative review papers, the reporting of original research, and evaluation reports on new and existing techniques and devices. Each issue of the journal contains a comprehensive information service which provides news relevant to the world of medical technology, details of new products, book reviews, and selected contents of related journals.
期刊最新文献
News and product update. News and product update. Comparative study of DCNN and image processing based classification of chest X-rays for identification of COVID-19 patients using fine-tuning. An idea for redo median sternotomy. Synthetic photoplethysmogram (PPG) signal generation using a genetic programming-based generative model.
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