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Analysis of cardiac micro-acceleration signals for the estimation of systolic and diastolic time intervals in cardiac resynchronization therapy

机译:心脏微观加速信号分析心脏重新同步治疗中收缩系舒张时间间隔的估算

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Heart sounds, measured via cardiac micro-acceleration (CMA), carry valuable information about the mechanical and hemodynamic function of the heart. The aim of the present study is to estimate systolic and diastolic time intervals from CMA features, extracted by segmentation of the first two heart sounds, i.e. onset, maximum energy and end instants. CMA, ECG and echocardiographic audio signals were acquired simultaneously on 60 patients under different hemodynamic conditions. Linear models, fitted between CMA features and echo timings, were evaluated with their correlation coefficient, model error and coefficient stability. Models for mitral valve closing, aortic valve closing and opening instants showed satisfactory results, whereas the estimation of the opening instant of the mitral valve was more difficult. This work suggests the potential utility of CMA for monitoring cardiac function and defining optimal, adaptive pacing configurations.
机译:通过心脏微观加速度(CMA)测量的心脏声音,携带有关心脏机械和血液动力学功能的宝贵信息。本研究的目的是估计来自CMA特征的收缩和舒张时间间隔,通过前两个心脏声音的分割提取,即发作,最大能量和最终时刻。在不同血液动力学条件下,在60名患者同时获得CMA,ECG和超声心动图音频信号。通过它们的相关系数,模型误差和系数稳定性评估CMA特征和回声定时之间的线性模型。二尖瓣关闭模型,主动脉瓣关闭和开放瞬间表现出令人满意的结果,而二尖瓣的开口瞬间的估计更加困难。这项工作表明CMA用于监测心功能并定义最佳,自适应起搏配置的潜在效用。

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