DocumentCode :
264130
Title :
Incident and reflected wave analyzer using blood pressure and volume pulse
Author :
Hernandez, Eder ; Manzo, Alain ; Cardenas, Edgar ; Casimiro, Edgar ; Gonzalez, Rodolfo
Author_Institution :
Dept. de Ing. Electron., Inst. Tecnol. de Morelia, Morelia, Mexico
fYear :
2014
fDate :
5-7 Nov. 2014
Firstpage :
1
Lastpage :
4
Abstract :
Cardiovascular disease is a serious problem worldwide, are among the leading causes of morbidity and mortality in men and women of all ages. The increased number of deaths from cardiovascular disease is because the western way of life, obesity, diabetes and the traditional methods are not able to predict or detect risk factors in individuals with asymptomatic or early stage disease. Obtaining wave reflection parameters is one of the techniques to detect risk factors using a non-invasive biomedical equipment. The aim of this project is to develop a device of non-invasive biomedical instrumentation that allows separating the incident and reflected wave pulse from the measurement of blood pressure and volume using independent component analysis (ICA) as a tool to help physicians predict cardiovascular disease asymptomatic or early stage. ICA is a statistical technique for decomposing multivariate signals into their underlying source components assuming linear mixing of the sources at the sensors. ICA provides and alternative approach for the study of pressure and volume in the cardiovascular system. It is carried out in the time domain and so it is easy to relate the results of the analysis to particular times in the cardiac cycle. The results have shown that the independent component analysis is an appropriate method for incident and reflected waves separation using blood pressure and volume pulse. In conclusion this prototype would help to physician realize a better cardiovascular disease diagnosis.
Keywords :
biomedical equipment; blood pressure measurement; cardiovascular system; diseases; independent component analysis; medical signal processing; reflection; risk analysis; source separation; time-domain analysis; volume measurement; wave propagation; ICA; asymptomatic cardiovascular disease prediction; blood pressure measurement; blood pressure pulse; blood volume measurement; blood volume pulse; cardiac cycle time; cardiovascular disease diagnosis; cardiovascular system; diabetes; early stage cardiovascular disease prediction; incident wave analyzer; incident wave pulse separation; incident wave separation; independent component analysis; linear source mixing; morbidity; mortality; multivariate signal decomposition; noninvasive biomedical equipment development; noninvasive biomedical instrumentation; obesity; prototype; reflected wave analyzer; reflected wave pulse separation; reflected wave separation; risk factor detection; risk factor prediction; source component; statistical technique; time domain analysis; wave reflection parameter; western life; Blood pressure; Cardiovascular diseases; Hardware; Independent component analysis; Reflection; Sensors; Software; Incident wave; blood pressure; diastolic phase; independent component analysis; reflected wave; systolic phase; volume pulse;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power, Electronics and Computing (ROPEC), 2014 IEEE International Autumn Meeting on
Conference_Location :
Ixtapa
Type :
conf
DOI :
10.1109/ROPEC.2014.7036295
Filename :
7036295
Link To Document :
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