A Linear Regression Model with Dynamic Pulse Transit Time Features for Noninvasive Blood Pressure Prediction

被引:0
作者
Hsieh, Yi-Yen [1 ]
Wu, Ching-Da [1 ]
Lu, Shey-Shi [1 ]
Tsao, Yu [2 ]
机构
[1] Natl Taiwan Univ, Dept Elect Engn, Taipei, Taiwan
[2] Acad Sinica, Res Ctr Informat Technol Innovat, Taipei, Taiwan
来源
PROCEEDINGS OF 2016 IEEE BIOMEDICAL CIRCUITS AND SYSTEMS CONFERENCE (BIOCAS) | 2016年
关键词
blood pressure; pulse transit time; dynamic feature; blood pressure oscillations;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Cardiovascular diseases (CVDs) have become the leading cause of death globally (as reported by the World Health Organization, June 2016). An effective method of preventing CVDs is to measure and monitor blood pressure (BP), which serves as a physiological indicator for cardiovascular systems. A previous research has proposed the use of pulse transit time (PTT) information to compute the BP measure. We propose herein a novel method based on a linear regression model that incorporates static and dynamic PTT features to predict BP measures more accurately. Moreover, the proposed model considers the estimated systolic blood pressure (SBP) when estimating the diastolic blood pressure (DBP). Experimental results first show that the proposed method can predict the BP more accurately than conventional methods, with notably higher correlation scores and lower mean square errors. These results confirm the effectiveness of incorporating dynamic PTT features for accurate BP predictions. Next, our experimental results demonstrate that the proposed method attains a better DBP prediction capability, showing that the estimated SBP provides useful information for the DBP prediction.
引用
收藏
页码:604 / 607
页数:4
相关论文
共 50 条
[31]   Development of a Continuous Blood Pressure Monitoring System based on Pulse Transit Time and Hemodynamic Covariates [J].
Zhang, Yiming ;
Zhou, Congcong ;
Huang, Zhongyi ;
Ye, Xuesong .
BIODEVICES: PROCEEDINGS OF THE 13TH INTERNATIONAL JOINT CONFERENCE ON BIOMEDICAL ENGINEERING SYSTEMS AND TECHNOLOGIES, VOL 1: BIODEVICES, 2020, 2020, :33-39
[32]   Towards Ubiquitous Blood Pressure Monitoring in an Armband using Pulse Transit Time [J].
Toreyin, Hakan ;
Javaid, Abdul Q. ;
Ashouri, Hazar ;
Ode, Oludotun ;
Inan, Omer T. .
2015 IEEE BIOMEDICAL CIRCUITS AND SYSTEMS CONFERENCE (BIOCAS), 2015, :560-563
[33]   Blood Pressure Measurement from Photo-plethysmography to Pulse Transit Time [J].
Myint, C. Z. ;
Lim, King Hann ;
Wong, Kiing Ing ;
Gopalai, Alpha Agape ;
Oo, Min Zin .
2014 IEEE CONFERENCE ON BIOMEDICAL ENGINEERING AND SCIENCES (IECBES), 2014, :496-501
[34]   Pulse transit time: validation of blood pressure measurement under positive airway pressure ventilation [J].
Schmalgemeier, Heidi ;
Bitter, Thomas ;
Bartsch, Stephan ;
Bullert, Kevin ;
Fischbach, Thomas ;
Eckert, Siegfried ;
Horstkotte, Dieter ;
Oldenburg, Olaf .
SLEEP AND BREATHING, 2012, 16 (04) :1105-1112
[35]   Pulse transit time: validation of blood pressure measurement under positive airway pressure ventilation [J].
Heidi Schmalgemeier ;
Thomas Bitter ;
Stephan Bartsch ;
Kevin Bullert ;
Thomas Fischbach ;
Siegfried Eckert ;
Dieter Horstkotte ;
Olaf Oldenburg .
Sleep and Breathing, 2012, 16 :1105-1112
[36]   Modeling of pulse transit time under the effects of hydrostatic pressure for cuffless blood pressure measurements [J].
Poon, Carmen C. Y. ;
Zhang, Yuan-Ting ;
Liu, Yinbo .
2006 3RD IEEE/EMBS INTERNATIONAL SUMMER SCHOOL ON MEDICAL DEVICES AND BIOSENSORS, 2006, :65-+
[37]   An examination of calibration intervals required for accurately tracking blood pressure using pulse transit time algorithms [J].
McCarthy, B. M. ;
Vaughan, C. J. ;
O'Flynn, B. ;
Mathewson, A. ;
Mathuna, C. O. .
JOURNAL OF HUMAN HYPERTENSION, 2013, 27 (12) :744-750
[38]   Smartphone Video-based Blood Pressure Estimation via Pulse Transit Time and Machine Learning [J].
Roha, Vishal Singh ;
Gendy, Maggie Ezzat Gaber ;
Yuce, Mehmet R. .
2024 IEEE SENSORS, 2024,
[39]   Cuff-Less Continuous Blood Pressure Monitoring System Using Pulse Transit Time Techniques [J].
Zaki, Wan Suhaimizan Wan ;
Correia, Ricardo ;
Korposh, Serhiy ;
Hayes-Gill, Barrie R. ;
Morgan, Stephen P. .
INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING, 2016, 8 (01) :51-57
[40]   An examination of calibration intervals required for accurately tracking blood pressure using pulse transit time algorithms [J].
B M McCarthy ;
C J Vaughan ;
B O'Flynn ;
A Mathewson ;
C Ó Mathúna .
Journal of Human Hypertension, 2013, 27 :744-750