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Estimation of cardiac output and peripheral resistance using square-wave-approximated aortic flow signal

机译:使用方波近似主动脉血流信号估算心输出量和周围阻力

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摘要

This paper presents a model-based approach to estimation of cardiac output (CO) and total peripheral resistance (TPR). In the proposed approach, the response of cardiovascular system (CVS), described by the windkessel model, is tuned to the measurements of systolic, diastolic and mean arterial blood pressures (BP) so as to yield optimal individual- and time-specific system time constant that is used to estimate CO and TPR. Unique aspects of the proposed approach are that it approximates the aortic flow as a train of square waves and that it also assumes pressure-dependent arterial compliance, as opposed to the traditional windkessel model in which aortic flow is approximated as a train of impulses and constant arterial compliance is assumed. It was shown that the proposed model encompasses the standard windkessel model as a limiting case, and that it also yields more realistic BP waveform response than the standard windkessel model. The proposed approach has potential to outperform its standard counterpart by treating systolic, diastolic, and mean BP as independent features in estimating CO and TPR, rather than solely resorting to pulse pressure as in the case of the standard windkessel model. Experimental results from in-vivo data collected from a number of animal subjects supports the viability of the proposed approach in that it could achieve approximately 29% and 24% reduction in CO and TPR errors when compared with its standard counterpart.
机译:本文提出了一种基于模型的方法来估计心输出量(CO)和总外周阻力(TPR)。在所提出的方法中,将通过windkessel模型描述的心血管系统(CVS)的响应调整为测量收缩压,舒张压和平均动脉血压(BP),以产生最佳的特定于个人和特定时间的系统时间用于估算CO和TPR的常数。所提出方法的独特之处在于,它将主动脉流量近似为一列方波,并且还假定了与压力有关的动脉顺应性,这与传统的风铃模型不同,在传统的风帆模型中,主动脉流量近似为一列冲量和恒定量。假定动脉顺应性。结果表明,所提出的模型将标准的风帆模型作为极限情况包含在内,并且与标准的风帆模型相比,它还产生了更逼真的BP波形响应。通过将收缩压,舒张压和均值BP作为估计CO和TPR的独立特征,而不是像标准风帆模型那样仅依靠脉压,拟议的方法有可能优于标准方法。从许多动物受试者收集的体内数据得出的实验结果证明了该方法的可行性,因为与标准方法相比,该方法可将CO和TPR错误减少约29%和24%。

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