Title :
Separating Arterial and Venous-Related Components of Photoplethysmographic Signals for Accurate Extraction of Oxygen Saturation and Respiratory Rate
Author :
Yousefi, Rasoul ; Nourani, Mehrdad
Author_Institution :
Quality of Life Technol. Lab., Univ. of Texas at Dallas, Richardson, TX, USA
Abstract :
We propose an algorithm for separating arterial and venous-related signals using second-order statistics of red and infrared signals in a blind source separation technique. The separated arterial signal is used to compute accurate arterial oxygen saturation. We have also introduced an algorithm for extracting the respiratory pattern from the extracted venous-related signal. In addition to real-time monitoring, respiratory rate is also extracted. Our experimental results from multiple subjects show that the proposed separation technique is extremely useful for extracting accurate arterial oxygen saturation and respiratory rate. Specifically, the breathing rate is extracted with average root mean square deviation of 1.89 and average mean difference of $-$0.69.
Keywords :
blind source separation; blood vessels; medical signal processing; patient monitoring; photoplethysmography; pneumodynamics; arterial components; arterial oxygen saturation; arterial signal separation; blind source separation; breathing rate; infrared signals; photoplethysmographic signals; real-time monitoring; respiratory pattern; respiratory rate; root mean square deviation; second-order statistics; venous-related components; venous-related signal extraction; venous-related signal separation; Blood; Covariance matrices; Joints; Optical pulses; Optical saturation; Optical sensors; Veins; Approximate joint diagonalization; PPG; blind source separation; photoplethysmography; pulse oximetry; respiratory rate; second-order statistics;
Journal_Title :
Biomedical and Health Informatics, IEEE Journal of
DOI :
10.1109/JBHI.2014.2334697