Title :
Classification of acute stress using linear and non-linear heart rate variability analysis derived from sternal ECG
Author :
Tanev, George ; Saadi, Dorthe B. ; Hoppe, Karsten ; Sorensen, Helge Bjarup Dissing
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. of Denmark, Lyngby, Denmark
Abstract :
Chronic stress detection is an important factor in predicting and reducing the risk of cardiovascular disease. This work is a pilot study with a focus on developing a method for detecting short-term psychophysiological changes through heart rate variability (HRV) features. The purpose of this pilot study is to establish and to gain insight on a set of features that could be used to detect psychophysiological changes that occur during chronic stress. This study elicited four different types of arousal by images, sounds, mental tasks and rest, and classified them using linear and non-linear HRV features from electrocardiograms (ECG) acquired by the wireless wearable ePatch® recorder. The highest recognition rates were acquired for the neutral stage (90%), the acute stress stage (80%) and the baseline stage (80%) by sample entropy, detrended fluctuation analysis and normalized high frequency features. Standardizing non-linear HRV features for each subject was found to be an important factor for the improvement of the classification results.
Keywords :
cardiovascular system; electrocardiography; entropy; medical signal detection; physiology; psychology; signal classification; acute stress classification; acute stress stage; arousal; baseline stage; cardiovascular disease risk; chronic stress detection; detrended fluctuation analysis; electrocardiogram; heart rate variability features; images; mental tasks; neutral stage; nonlinear HRV features; nonlinear heart rate variability analysis; normalized high frequency features; recognition rates; rest; sample entropy; short-term psychophysiological change detection; sounds; sternal ECG; wireless wearable ePatch® recorder; Educational institutions; Electrocardiography; Entropy; Heart rate variability; Standards; Stress; Videos;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
DOI :
10.1109/EMBC.2014.6944349