Abstract
Abstract
Objective: Seismocardiography is the measurement of vibration waves caused by the beating heart with accelerometer(s) placed on the chest. Investigating the nature and the behavior of these vibration waves, by comparing measurements from multiple sites, would help to understand the heart’s mechanical contraction activity. Approach: Using newly designed multichannel seismocardiogram equipment, it was possible to investigate the vibration waves with 16 three-axis sensors. The equipment performed well with highly precise synchronization rate over 10 min, linear frequency response and high signal quality. The vibration waves were analyzed using the sagittal axis, a single cardiac cycle and focusing on four fiducial points. Two of the fiducial point where the negative and positive peaks associated with aorta valve opening, along with peaks associated with aorta valve closing. Main results: The respective average centers of mass of the four fiducial points in 13 subjects were at (frontal axis: 35 mm, vertical axis: 5 mm), (31, 6), (26, 24), and (4, −2), relative to the Xiphoid Process. Similar patterns among the subjects were identified for the propagation of the waves across the chest for the four fiducial points. Significance: The multichannel seismocardiogram equipment successfully revealed a general pattern present in chest surface vibration maps.
Subject
Physiology (medical),Biomedical Engineering,Physiology,Biophysics
Reference25 articles.
1. Low noise, low drift, low power, 3-axis MEMS accelerometers ADXL354/ADXL355,2016
2. Development of a cardiac acoustic mapping system;Cozic;Med. Biol. Eng. Comput.,1998
3. Relationship between seismocardiogram and echocardiogram for events in the cardiac cycle;Crow;Am. J. Noninvasive Cardiol.,1994
4. A new technological platform for the multisite assessment of 3D seismocardiogram and pulse transit time in cardiac patients;Di Rienzo,2016
5. SeisMote: a multi-sensor wireless platform for cardiovascular monitoring in laboratory, daily life, and telemedicine;Di Rienzo;Sensors,2020
Cited by
12 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献