Title :
Adaptive Beat-to-Beat Heart Rate Estimation in Ballistocardiograms
Author :
Brüser, Christoph ; Stadlthanner, Kurt ; De Waele, Stijn ; Leonhardt, Steffen
Author_Institution :
Helmholtz-Inst. for Biomed. Eng., RWTH Aachen Univ., Aachen, Germany
Abstract :
A ballistocardiograph records the mechanical activity of the heart. We present a novel algorithm for the detection of individual heart beats and beat-to-beat interval lengths in ballistocardiograms (BCGs) from healthy subjects. An automatic training step based on unsupervised learning techniques is used to extract the shape of a single heart beat from the BCG. Using the learned parameters, the occurrence of individual heart beats in the signal is detected. A final refinement step improves the accuracy of the estimated beat-to-beat interval lengths. Compared to many existing algorithms, the new approach offers heart rate estimates on a beat-to-beat basis. The agreement of the proposed algorithm with an ECG reference has been evaluated. A relative beat-to-beat interval error of 1.79% with a coverage of 95.94% was achieved on recordings from 16 subjects.
Keywords :
biomechanics; cardiology; medical signal detection; medical signal processing; ECG reference; adaptive beat-to-beat heart rate estimation; automatic training step; ballistocardiograms; beat-to-beat interval lengths; healthy subjects; individual heart beats; mechanical activity; single heart beat; unsupervised learning techniques; Estimation; Heart beat; Reliability; Training; Valves; Ballistocardiography (BCG); beat-to-beat heart rate estimation; clustering; Adaptation, Physiological; Algorithms; Electrocardiography; Heart Rate; Humans;
Journal_Title :
Information Technology in Biomedicine, IEEE Transactions on
DOI :
10.1109/TITB.2011.2128337