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Elucidating the Hemodynamic Origin of Ballistocardiographic Forces: Toward Improved Monitoring of Cardiovascular Health at Home

机译:阐明心搏描记力的血流动力学起源:改善在家中心血管健康的监测

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摘要

The ballistocardiogram (BCG), a signal describing the reaction forces of the body to cardiac ejection of blood, has recently gained interest in the research community as a potential tool for monitoring the mechanical aspects of cardiovascular health for patients at home and during normal activities of daily living. An important limitation in the field of BCG research is that while the BCG signal measures the forces of the body, the information desired (and understood) by clinicians and caregivers, regarding mechanical health of the cardiovascular system, is typically expressed as blood pressure or flow. This paper aims to explore, using system identification tools, the mathematical relationship between the BCG signal and the better-understood impedance cardiography (ICG) and arterial blood pressure (ABP) waveforms, with a series of human subject studies designed to asynchronously modulate cardiac output and blood pressure and with different magnitudes. With this approach, we demonstrate for 19 healthy subjects that the BCG waveform more closely maps to the ICG (flow) waveform as compared with the finger-cuff-based ABP (pressure) waveform, and that the BCG can provide a more accurate estimate of stroke volume (, ) as compared with pulse pressure changes (). We also examined, as a feasibility study, for one subject, the ability to calibrate the BCG measurement tool with an ICG measurement on the first day, and then track changes in stroke volume on subsequent days. Accordingly, we conclude that the BCG is a signal more closely related to blood flow than pressures, and that a key health parameter for titrating care—stroke volume—can potentially be accurately measured with BCG signals at home using unobtrusive and inexpensive hardware, such as a modified weighing scale, as compared with the state-of-the-art ICG and ABP devices, which are expensive and obtrusive for use at home.
机译:描记心动描记图(BCG)是一种描述身体对心脏血液喷射的反作用力的信号,近来引起了研究界的关注,作为监测患者在家中和正常活动期间心血管健康的机械方面的潜在工具。日常生活。 BCG研究领域的一个重要局限性在于,虽然BCG信号可以测量身体的力量,但临床医生和护理人员所希望(和了解)的有关心血管系统机械健康的信息通常表示为血压或血流。本文旨在使用系统识别工具探索BCG信号与更好理解的阻抗心动图(ICG)和动脉血压(ABP)波形之间的数学关系,并进行了一系列旨在异步调制心输出量的人体研究和血压,幅度不同。通过这种方法,我们证明了针对19位健康受试者的BCG波形与基于手指套的ABP(压力)波形相比,更紧密地映射到ICG(流量)波形,并且BCG可以提供更准确的估算搏动量(,)与脉压变化()的比较。作为一项可行性研究,我们还检查了一个受试者在第一天用ICG测量校准BCG测量工具,然后在随后几天跟踪中风量变化的能力。因此,我们得出的结论是,卡介苗信号是与血流比压力更密切相关的信号,并且在家中使用卡介苗信号可以使用不引人注目的廉价硬件(例如,与最先进的ICG和ABP设备相比,它具有改进的称重功能,后者既昂贵又笨重,无法在家中使用。

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