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Estimation of the Aortic Pressure Waveform from a Radial Artery Pressure Waveform via an Adaptive Transfer Function: Feasibility Demonstration in Swine

机译:通过自适应传递函数估计从径向动脉压波形的主动脉压力波形:猪中的可行性演示

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We previously proposed a new technique to estimate the physiologically and clinically more relevant central aortic pressure (AP) waveform from a conveniently and safely measured peripheral artery pressure (PAP) waveform distorted by wave reflections. In contrast to conventional generalized transfer function (GTF) techniques, the technique is able to adapt the transfer function relating PAP to AP to the inter-patient and temporal variability of the arterial tree by defining it through a tube model and invoking the fact that aortic flow is negligible during diastole to estimate the unknown model parameters. We conducted feasibility testing of this adaptive transfer function technique here with respect to radial artery pressure (RAP) waveforms, for the first time, as well as femoral artery pressure (FAP) waveforms from four swine instrumented with AP catheters during several hemodynamic conditions. Our results showed that the AP waveforms estimated by the technique from the RAP and FAP waveforms were in superior agreement to the measured AP waveforms (overall respective errors of 4.1 and 4.8 mmHg) than the two unprocessed PAP waveforms (9.1 and 8.1 mmHg) and a previous GTF technique trained on a subset of the same data (5.0 and 5.8 mmHg).
机译:我们先前提出从方便,安全地测量外周动脉压(PAP)波形由波反射失真估计生理和临床更相关的中心动脉压(AP)波形的新技术。与传统的广义传递函数(GTF)的技术,该技术能够通过定义它通过管道模型并调用的事实,主动脉,以适应与PAP到AP到动脉树的相互患者和时间上的变化的传递函数流是舒张估计未知模型参数时可以忽略不计。我们进行这里该自适应传递函数技术的可行性测试相对于桡动脉压(RAP)的波形,用于在第一时间,以及股动脉压(FAP)波形从四个猪在几个血流动力学条件与AP导管仪表。我们的研究结果表明,通过从RAP和FAP波形的技术中所估计的AP波形是在所测量的AP波形(4.1和4.8毫米汞柱的整体各个误差)比两个未处理PAP波形(9.1和8.1毫米汞柱)和优异的协议先前训练对相同的数据(5.0和5.8毫米汞柱)的一个子集GTF技术。

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