Title :
Three dimensional Ballistocardiogram and Seismocardiogram: What do they have in common?
Author :
Migeotte, P.-F. ; Lejeune, L. ; Deliere, Q. ; Caiani, E. ; Casellato, C. ; Tank, J. ; Funtova, I. ; Baevsky, R. ; Prisk, G.K. ; van de Borne, P.
Author_Institution :
Cardiology Dept. of the Erasmus Hosp., Univ. libre de Bruxelles, Brussels, Belgium
Abstract :
3D-body accelerations, i.e. Ballistocardiograms (BCG) and Seismocardiograms (SCG), ECG and Impedance-cardiograms (ICG) were recorded on healthy volunteers participating to the European Space Agency (ESA) 59th parabolic flight campaign. In the present paper we document the similarities and differences that can be seen in the seismo-and ballisto-cardiogram signals in different positions (standing and supine) under normal gravity condition as well as during the weightlessness phases (0G) of a parabolic flight. Our results demonstrate that SCG and BCG both present a similar three dimensional (3D) nature, with components of the BCG having lower frequency content than the SCG. The recordings performed in the 0G environment are the one with the smoothest shape and largest maximum magnitude of the Force vector. The differences seen between SCG and BCG stress further the importance for the need of using different nomenclature for the identification of peaks in both signals.
Keywords :
aerospace; bioelectric potentials; electrocardiography; 3D-body accelerations; ECG recording; force vector magnitude; impedance-cardiogram recording; parabolic flight campaign; three dimensional ballistocardiogram signals; three dimensional seismocardiogram signals; Electrocardiography; Gravity; Heart beat; Sensors; Vectors;
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.2014.6945017