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A preliminary study investigating the quantification of beat-to-beat in seismocardiogram signals

机译:调查地震动脉造影信号中搏动搏动量化的初步研究

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Ballistocardiography and seismocardiography are both non-invasive mechanical measurements of the vibrations of the body in response to the heartbeat. The ballistocardiogram (BCG) signal represents the movements of the whole body in response to cardiac ejection of blood into the vasculature; the seismocardiogram (SCG) corresponds to local vibrations of the chest wall associated with sub-audible tissue and blood movement and audio frequency heart-valve closure dynamics. This paper focuses on methods for quantifying “signal consistency”—a quantitative measure of how morphologically similar each heartbeat in a patient's recording is compared to the ensemble average taken over the recording. Before comparing each beat to the average, known physiological sources of inconsistency—such as respiratory amplitude and timing variability—are removed, then the remaining inconsistency is quantified. Previously described methods for BCG signals are expanded to fit the high-frequency (> 20 Hz) components of the SCG. The use of this method in future work could help enable proactive management of heart disease in extra-clinical settings.
机译:芭蕾舞动画和地震动态造影是对心跳响应身体振动的非侵入力机械测量。滚珠衫(BCG)信号代表整个身体的运动,以应对血液中的心脏喷射到脉管系统;地震心动图(SCG)对应于与子可听组织和血液运动相关的胸壁的局部振动和音频心瓣闭合动力学。本文侧重于量化“信号一致性”的方法 - 将患者记录中的每个心跳的形态学相似的定量测量相比,与记录上采取的集合平均值进行比较。在将每个节拍比较到平均值之前,除去了呼吸振幅和定时变异性的已知生理源 - 被除去,然后量化剩余的不一致。以前描述的BCG信号的方法被扩展以适合SCG的高频(> 20Hz)组件。在未来的工作中使用这种方法可以帮助在临床外部环境中进行心脏病的主动管理。

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